# Best Civil Engineering Design Software - Page 7

## How Many Civil Engineering Design Software Products Does G2 Track?

**Total Products under this Category:** 112

### Category Stats (Aug 2026)

- **Average Rating:** 4.41/5 The average rating of products in this category, based on all submitted ratings
- **Top Trending Product:** GeoHECHMS (+0.11%) - Among all products in this category, GeoHECHMS recorded the largest rating increase compared to last month

_Last updated: August 01, 2026_

## How Does G2 Rank Civil Engineering Design Software Products?

**Why You Can Trust G2's Software Rankings:**

- 30 Analysts and Data Experts
- 2,300+ Authentic Reviews
- 112+ Products
- Unbiased Rankings

G2's software rankings are built on verified user reviews, rigorous moderation, and a consistent research methodology maintained by a team of analysts and data experts. Each product is measured using the same transparent criteria, with no paid placement or vendor influence. While reviews reflect real user experiences, which can be subjective, they offer valuable insight into how software performs in the hands of professionals. Together, these inputs power the G2 Score, a standardized way to compare tools within every category.

## G2 Grid® for Civil Engineering Design Software
 ![G2 Grid® for Civil Engineering Design Software plotting products by satisfaction and market presence](https://www.g2.com/categories/civil-engineering-design/grids.png?focus%5B%5D=2994&focus%5B%5D=39302&focus%5B%5D=2981&focus%5B%5D=2993&focus%5B%5D=159791&focus%5B%5D=1383725&focus%5B%5D=40915&focus%5B%5D=104642)

Highlighted products: MicroStation, GeoHECRAS, ZWCAD, Civil 3D, GeoHECHMS, GeoSTORM, OpenRoads Designer, and Tekla Tedds.

Underlying data: [Grid® JSON](https://www.g2.com/categories/civil-engineering-design/grids.json?focus%5B%5D=microstation&focus%5B%5D=geohecras&focus%5B%5D=zwcad&focus%5B%5D=civil-3d&focus%5B%5D=geohechms&focus%5B%5D=geostorm&focus%5B%5D=openroads-designer&focus%5B%5D=tekla-tedds)

### [OpenRoads ConceptStation](https://www.g2.com/products/openroads-conceptstation/reviews)

OpenRoads ConceptStation enables you to create conceptual road and bridge designs to evaluate more options during the planning and pre-bid stage of your project. You can design more efficiently, identify high-risk items, and minimize costs. Easily visualize and analyze real-world traffic patterns leveraging design-time visualization with 3D modeling and traffic analysis, as OpenRoads ConceptStation provides interoperability with VISSIM. Accelerate Data Collection Assemble contextual data rapidly from a variety of sources, such as point clouds, 3D reality meshes, terrain data, images, and geospatial information, to bring real-world settings to your project. Simplify 3D Modeling Draw roads, ramps, bridges, guardrails, and streetlights in hours, not days, using engineering-friendly drawing capabilities. Understand Financial Implications Early Generate project estimates that dynamically update as design modifications are made. Identifying potential risk early to produce better, more cost-effective design options.

#### Who Is the Company Behind OpenRoads ConceptStation?

- **Seller:** [Bentley Systems](https://www.g2.com/sellers/bentley-systems)
- **Year Founded:** 1984
- **HQ Location:** Exton, PA
- **Twitter:** @BentleySystems  
17,564 Twitter followers
- **LinkedIn® Page:** [www.linkedin.com](https://www.g2.com/external_clickthroughs/record?secure%5Bsource_type%5D=product_profile&secure%5Btoken%5D=3dcf7c9e5c41323034d72c8b4aaa7d0fc90f77668995d474f35466baaee4ef4b&secure%5Burl%5D=https%3A%2F%2Fwww.linkedin.com%2Fcompany%2F4929%2F&secure%5Burl_type%5D=linkedin_company_website)  
5,621 employees on LinkedIn®
- **Ownership:** NASDAQ: BSY

### [OpenTunnel Designer](https://www.g2.com/products/opentunnel-designer/reviews)

OpenTunnel Designer is the first and only purpose-built software for tunnel modeling and design. Get the right tools for the job and say goodbye to unnecessary rework and time delays with all team members now working in one intuitive application.

#### Who Is the Company Behind OpenTunnel Designer?

- **Seller:** [Bentley Systems](https://www.g2.com/sellers/bentley-systems)
- **Year Founded:** 1984
- **HQ Location:** Exton, PA
- **Twitter:** @BentleySystems  
17,564 Twitter followers
- **LinkedIn® Page:** [www.linkedin.com](https://www.g2.com/external_clickthroughs/record?secure%5Bsource_type%5D=product_profile&secure%5Btoken%5D=3dcf7c9e5c41323034d72c8b4aaa7d0fc90f77668995d474f35466baaee4ef4b&secure%5Burl%5D=https%3A%2F%2Fwww.linkedin.com%2Fcompany%2F4929%2F&secure%5Burl_type%5D=linkedin_company_website)  
5,621 employees on LinkedIn®
- **Ownership:** NASDAQ: BSY

### [PROFIS Engineering Suite](https://www.g2.com/products/profis-engineering-suite/reviews)

Hilti PROFIS Engineering Suite is a user-friendly, cloud-based software that makes designing structural connections faster and easier in construction projects with time saving productivity features. Design connections for multiple base materials and applications. Design anchors in multiple base materials such as concrete, masonry, and concrete over metal. Not just for anchors, PROFIS Engineering designs post-installed rebar, base plates, and diaphragm shear fasteners for metal deck attachments. Help save time with productivity features such as Smart Design anchor layout, import loads, running multiple load combinations and developing design templates. New to PROFIS Engineering? Sign up for a free 30-day trial of the premium version or try the free standard version.

#### Who Is the Company Behind PROFIS Engineering Suite?

- **Seller:** [Hilti](https://www.g2.com/sellers/hilti)
- **Year Founded:** 1941
- **HQ Location:** Plano, US
- **LinkedIn® Page:** [www.linkedin.com](https://www.g2.com/external_clickthroughs/record?secure%5Bsource_type%5D=product_profile&secure%5Btoken%5D=35e80d87117f645b616dfdbcf550722f964cf86976ca25aedad93de3871a46a5&secure%5Burl%5D=https%3A%2F%2Fwww.linkedin.com%2Fcompany%2Fhilti-usa%2F&secure%5Burl_type%5D=linkedin_company_website)  
3,203 employees on LinkedIn®

### [RIB Civil](https://www.g2.com/products/rib-civil/reviews)

RIB Civil is one of the most modern CAD software solutions for civil engineering, road construction and sewer construction. It uses intelligent, integrated workflows to improve the predictability, productivity and profitability of civil engineering projects. RIB civil allows true model-oriented, project-accompanying work until project completion. This BIM 5D method offers a wide range of advantages in every project phase and, overall, shorter lead times with above-average transparency and quality.

#### Who Is the Company Behind RIB Civil?

- **Seller:** [RIB Software](https://www.g2.com/sellers/rib-software)
- **Year Founded:** 1961
- **HQ Location:** Stuttgart, DE
- **Twitter:** @RIB\_Global  
1,214 Twitter followers
- **LinkedIn® Page:** [www.linkedin.com](https://www.g2.com/external_clickthroughs/record?secure%5Bsource_type%5D=product_profile&secure%5Btoken%5D=8179bca752e6e793d16419635048c00482de304bcea9b867ee66c8c56ea51cf0&secure%5Burl%5D=https%3A%2F%2Fwww.linkedin.com%2Fcompany%2Frib-software%2F&secure%5Burl_type%5D=linkedin_company_website)  
1,556 employees on LinkedIn®
- **Ownership:** ETR:RIB

### [SAFI Bridge Structural Analysis, Design and Evaluation Software](https://www.g2.com/products/safi-bridge-structural-analysis-design-and-evaluation-software/reviews)

SAFI's Bridge Structural Engineering (BSE™) software is a comprehensive 3D analysis, design, and evaluation tool tailored for various bridge types, including steel, reinforced concrete, composite, prestressed girder, and steel-wood bridges. Designed with an intuitive ribbon-based interface, BSE™ streamlines the modeling process, enhancing workflow efficiency for engineering professionals. Key Features and Functionality: - Advanced Structural Analysis: Employs state-of-the-art methods such as Finite Element Analysis (FEA) with plate and shell elements, P-Delta, linear and nonlinear analyses, buckling analysis, and dynamic time-history analysis. - Comprehensive Design Tools: Supports the design and evaluation of various bridge components, including prestressed girder bridges, adhering to standards like the Canadian Highway Bridge Code (CSA S6). - User-Friendly Interface: Features a ribbon-based interface that organizes tools and commands into accessible tabs and groups, facilitating effortless navigation and operation. - Structural Insights Animation: Allows users to animate analysis results, providing clear visualizations of displacements, internal forces, stresses, reactions, mode shapes, and time-history data. - Automated Design Processes: Offers automated tools for the design and evaluation of steel girder bridges with wood decks, streamlining the engineering workflow. Primary Value and User Solutions: BSE™ addresses the complexities of bridge engineering by integrating robust analysis capabilities with user-friendly design tools. It enables engineers to efficiently model, analyze, and design diverse bridge structures, ensuring compliance with industry standards. The software's automation and intuitive interface reduce manual effort, minimize errors, and accelerate project timelines, ultimately enhancing productivity and project outcomes.

#### Who Is the Company Behind SAFI Bridge Structural Analysis, Design and Evaluation Software?

- **Seller:** [Safi](https://www.g2.com/sellers/safi)
- **Year Founded:** 1986
- **HQ Location:** Toronto, CA
- **LinkedIn® Page:** [www.linkedin.com](https://www.g2.com/external_clickthroughs/record?secure%5Bsource_type%5D=product_profile&secure%5Btoken%5D=f45443feeecbeff6d10ccca90a2fab620493c2b07f91ecd0444dab77848f5c1f&secure%5Burl%5D=https%3A%2F%2Fwww.linkedin.com%2Fcompany%2Fsafi-quality-software-inc%2F&secure%5Burl_type%5D=linkedin_company_website)  
5 employees on LinkedIn®

### [SAFI Concrete Calculator Software](https://www.g2.com/products/safi-concrete-calculator-software/reviews)

The SAFI Concrete Calculator™ is an essential engineering tool designed to streamline the analysis and design of reinforced concrete beams, slabs, columns, and footings. It enables structural engineers to perform precise calculations without the need for comprehensive 3D structural models, making it ideal for quick validations and efficient design processes. Key Features and Functionality: - Comprehensive Analysis and Design: Facilitates the evaluation and design of reinforced concrete sections, including beams, slabs, columns, and footings. - Support for Multiple Design Codes: Complies with various international standards, such as ACI 318, CSA A23.3, ECP 203-2018, and Eurocode 2-2004, ensuring versatility across different regions. - User-Friendly Interface: Offers an intuitive platform that simplifies the input of design parameters and interpretation of results, enhancing user experience. - Efficient Validation Tool: Serves as a quick verification resource for specific elements within complex structural models, eliminating the need for full 3D analysis. - Integration Capabilities: Can function as a standalone application or integrate seamlessly with the GSE™ Concrete program, part of the GSE™ General Structural Engineering software suite. Primary Value and Problem Solving: The SAFI Concrete Calculator™ addresses the need for rapid and accurate design and analysis of reinforced concrete components without the complexity of full structural modeling. By supporting multiple design codes and offering a user-friendly interface, it enhances productivity and ensures compliance with international standards. This tool is particularly valuable for structural engineers seeking efficient solutions for both routine and complex design challenges.

#### Who Is the Company Behind SAFI Concrete Calculator Software?

- **Seller:** [Safi](https://www.g2.com/sellers/safi)
- **Year Founded:** 1986
- **HQ Location:** Toronto, CA
- **LinkedIn® Page:** [www.linkedin.com](https://www.g2.com/external_clickthroughs/record?secure%5Bsource_type%5D=product_profile&secure%5Btoken%5D=f45443feeecbeff6d10ccca90a2fab620493c2b07f91ecd0444dab77848f5c1f&secure%5Burl%5D=https%3A%2F%2Fwww.linkedin.com%2Fcompany%2Fsafi-quality-software-inc%2F&secure%5Burl_type%5D=linkedin_company_website)  
5 employees on LinkedIn®

### [SAFI Highway Sign Structural Engineering Software](https://www.g2.com/products/safi-highway-sign-structural-engineering-software/reviews)

HSE™ Software is an advanced structural engineering solution tailored for the modeling, analysis, design, and evaluation of overhead sign structures, traffic signal supports, and high-mast lighting towers (HMLT). Developed by SAFI™, this software caters specifically to the needs of Departments of Transportation (DOTs) and engineering firms across the United States, ensuring compliance with standards such as AASHTO LTS-13 ASD (6th edition), AASHTO LTS-15 LRFD (1st edition), and CAN/CSA S6. Key Features and Functionality: - Comprehensive Structural Design Capabilities: HSE™ facilitates the design of various structures, including overhead sign structures, traffic signal supports, and HMLTs. It accounts for factors like wind, ice, and gravity loads, and supports multiple structural configurations such as latticed columns with different beam types and cantilever arms. - Automated Structural Models: The software offers a range of pre-defined structural models, enabling users to efficiently create structures like gantries, cantilevers, and high-mast lighting towers. - Robust Structural Analysis: HSE™ employs advanced analysis methods, including Finite Element Analysis (FEA), P-Delta Analysis, Linear and Nonlinear Analysis, Buckling Analysis, and Seismic and Dynamic Time-History Analysis. - Support for Tubular Polygonal Sections: Users can utilize various tubular polygonal sections, such as 18-sided, 16-sided, 12-sided, 8-sided, and 6-sided tubes, enhancing design flexibility. - Structural Insights Animation: The software provides animation of analysis results, offering clear visualization of displacements, internal forces, stresses, reactions, mode shapes, and time-history data. - Advanced Custom Reporting: HSE™ enables the creation of tailored, professional reports with customizable layouts, editable titles, and options to export to Microsoft Word and Excel. - Intuitive Graphical Interface: Featuring a ribbon-based interface powered by DirectX 11 and OpenGL 2.0, the software ensures efficient modeling and analysis of complex structures. - Efficient Modeling Tools: HSE™ offers versatile tools for creating various structures, including local coordinate systems, construction lines, and automated commands like move, rotate, extrude, and subdivide. Primary Value and User Solutions: HSE™ Software streamlines the structural engineering process for overhead sign structures and related installations by automating complex calculations and ensuring compliance with industry standards. Its user-friendly interface and comprehensive analysis capabilities enhance productivity, reduce design time, and improve the accuracy and reliability of structural designs. By providing a robust platform for modeling and analysis, HSE™ addresses the critical needs of engineers and DOTs, facilitating the efficient design and evaluation of essential infrastructure components.

#### Who Is the Company Behind SAFI Highway Sign Structural Engineering Software?

- **Seller:** [Safi](https://www.g2.com/sellers/safi)
- **Year Founded:** 1986
- **HQ Location:** Toronto, CA
- **LinkedIn® Page:** [www.linkedin.com](https://www.g2.com/external_clickthroughs/record?secure%5Bsource_type%5D=product_profile&secure%5Btoken%5D=f45443feeecbeff6d10ccca90a2fab620493c2b07f91ecd0444dab77848f5c1f&secure%5Burl%5D=https%3A%2F%2Fwww.linkedin.com%2Fcompany%2Fsafi-quality-software-inc%2F&secure%5Burl_type%5D=linkedin_company_website)  
5 employees on LinkedIn®

### [SAFI Petroleum Structural Engineering Software](https://www.g2.com/products/safi-petroleum-structural-engineering-software/reviews)

The Petroleum Structural Engineering® (PSE) software is a specialized 3D structural analysis and design tool tailored for offshore and onshore oil and gas drilling structures, including platforms, rigs, masts, and substructures. It ensures compliance with the API Specification 4F, 5th Edition, Drilling and Well Servicing Structures. Key Features and Functionality: - Comprehensive Structural Analysis: PSE offers advanced finite element analysis (FEA) capabilities, enabling precise modeling of complex structures. - Automated Wind Load Calculations: The software automatically computes wind loads and considers wind walls, streamlining the design process. - Unbraced Length Determination: PSE automates the calculation of member unbraced lengths, enhancing design accuracy. - Dynamic Analysis: It accounts for vessel movements and wave-induced forces, providing a realistic assessment of structural behavior under dynamic conditions. - User-Friendly Interface: Built on a ribbon-based interface, PSE organizes tools and commands into intuitive tabs and groups, facilitating effortless navigation and efficient workflow. Primary Value and User Solutions: PSE addresses the critical need for accurate and efficient structural analysis and design in the oil and gas industry. By integrating advanced analysis tools with automated design features, it reduces manual calculations, minimizes errors, and ensures compliance with industry standards. This leads to enhanced productivity, cost savings, and the development of safer, more reliable drilling structures.

#### Who Is the Company Behind SAFI Petroleum Structural Engineering Software?

- **Seller:** [Safi](https://www.g2.com/sellers/safi)
- **Year Founded:** 1986
- **HQ Location:** Toronto, CA
- **LinkedIn® Page:** [www.linkedin.com](https://www.g2.com/external_clickthroughs/record?secure%5Bsource_type%5D=product_profile&secure%5Btoken%5D=f45443feeecbeff6d10ccca90a2fab620493c2b07f91ecd0444dab77848f5c1f&secure%5Burl%5D=https%3A%2F%2Fwww.linkedin.com%2Fcompany%2Fsafi-quality-software-inc%2F&secure%5Burl_type%5D=linkedin_company_website)  
5 employees on LinkedIn®

### [SAFI Steel Calculator Software](https://www.g2.com/products/safi-steel-calculator-software/reviews)

The SAFI™ Steel Calculator is an essential tool for structural engineers and construction professionals, designed to streamline the verification, design, and optimization of steel beams and columns. By eliminating the need for complex 3D analysis models, it allows users to quickly validate design results for specific elements within intricate structures. The software supports multiple design standards, including American LRFD/ASD, Canadian S16, European Eurocode 3, and Indian IS 800, ensuring compliance across various international codes. Key Features and Functionality: - Comprehensive Design Standards: Supports American LRFD/ASD, Canadian S16, European Eurocode 3, and Indian IS 800 standards, facilitating versatile application in diverse engineering contexts. - Efficient Validation and Optimization: Enables rapid verification and optimization of steel beams and columns without the necessity for detailed 3D modeling, enhancing productivity and accuracy. - User-Friendly Interface: Features an intuitive graphical interface that allows real-time visualization of models, support conditions, and loads, simplifying the design process. - Extensive Section Libraries: Includes standard sections from CISC, AISC, and European databases, as well as parametric sections created using the GSE™ software, offering flexibility in design choices. - Automated Load Combinations: Generates load combinations automatically according to various codes, including NBCC, BOCA, UBC, ASCE 7, and Eurocode, reducing manual input and potential errors. - Detailed Reporting: Provides comprehensive reports with summaries and detailed analyses, including graphical or numerical visualization of results, aiding in thorough documentation and review. Primary Value and Problem Solving: The SAFI™ Steel Calculator addresses the need for a swift and reliable method to verify and optimize steel structural elements without the complexity of full-scale 3D modeling. By supporting multiple international design standards and offering an intuitive interface, it enhances productivity and ensures compliance with relevant codes. This tool is particularly valuable for professionals seeking to validate design results efficiently, optimize structural components, and maintain high standards of safety and performance in their projects.

#### Who Is the Company Behind SAFI Steel Calculator Software?

- **Seller:** [Safi](https://www.g2.com/sellers/safi)
- **Year Founded:** 1986
- **HQ Location:** Toronto, CA
- **LinkedIn® Page:** [www.linkedin.com](https://www.g2.com/external_clickthroughs/record?secure%5Bsource_type%5D=product_profile&secure%5Btoken%5D=f45443feeecbeff6d10ccca90a2fab620493c2b07f91ecd0444dab77848f5c1f&secure%5Burl%5D=https%3A%2F%2Fwww.linkedin.com%2Fcompany%2Fsafi-quality-software-inc%2F&secure%5Burl_type%5D=linkedin_company_website)  
5 employees on LinkedIn®

### [SAFI Steel-Wood Bridge (SWB) Software](https://www.g2.com/products/safi-steel-wood-bridge-swb-software/reviews)

The Steel-Wood Bridge (SWB) Software by SAFI is an automated engineering tool designed for the analysis, design, and evaluation of steel girder bridges with wood decks, adhering to the CSA S6 code, including Chapter 14 for bridge evaluation. This program facilitates the efficient assessment of one- and two-lane bridges, utilizing both standard and parametric steel section shapes. It incorporates extensive libraries of standard metric and imperial material properties, while also allowing for the creation of customized materials to meet specific project requirements. Key Features and Functionality: - Versatile Bridge Analysis: Supports the evaluation of one- and two-lane bridges using both standard and parametric steel section shapes. - Comprehensive Material Libraries: Includes extensive libraries of standard metric and imperial material properties, with the flexibility to create custom materials. - Advanced Load Analysis: Facilitates analysis with standard CL-625 and CL-625-ONT truck models for road classes A, B, and C, and allows for the definition of custom truck configurations. - Customizable Element Dimensions: Provides default values for transverse beam spacing and timber sizes, which can be easily edited to suit specific project needs. - Automated Design Process: Offers a fully automated design process based on user-defined parameters, optimizing bridge design and calculating the resistance of steel and wood elements with known dimensions. - Comprehensive Structural Analysis: Automatically determines element weight, skew angle effects, and the impact of lateral stiffener beams or diaphragms. - Evaluation and Analysis: Calculates the resistance of steel beams and wood components, including transverse shear and bearing capacity of transverse beams, and assesses deflection in bridge girders and elements. - Code-Compliant Evaluation: Evaluates existing steel-wood bridges in accordance with Chapter 14 of the CSA S6-19 code, incorporating specific equations from the Ministère des Transports du Québec (MTQ). - Detailed Reporting: Generates comprehensive reports compatible with Microsoft Word, including all relevant design and evaluation results, intermediate calculations, limit states, live load capacity factors, and visual representations of the bridge design. Primary Value and User Solutions: The SWB Software streamlines the complex process of designing and evaluating steel girder bridges with wood decks, significantly enhancing productivity for structural engineers. By automating intricate calculations and providing customizable parameters, it reduces manual effort and minimizes the potential for errors. The software's adherence to the CSA S6 code ensures compliance with industry standards, while its comprehensive analysis capabilities and detailed reporting equip engineers with the necessary tools to make informed decisions, ultimately leading to safer and more efficient bridge designs.

#### Who Is the Company Behind SAFI Steel-Wood Bridge (SWB) Software?

- **Seller:** [Safi](https://www.g2.com/sellers/safi)
- **Year Founded:** 1986
- **HQ Location:** Toronto, CA
- **LinkedIn® Page:** [www.linkedin.com](https://www.g2.com/external_clickthroughs/record?secure%5Bsource_type%5D=product_profile&secure%5Btoken%5D=f45443feeecbeff6d10ccca90a2fab620493c2b07f91ecd0444dab77848f5c1f&secure%5Burl%5D=https%3A%2F%2Fwww.linkedin.com%2Fcompany%2Fsafi-quality-software-inc%2F&secure%5Burl_type%5D=linkedin_company_website)  
5 employees on LinkedIn®

### [SAFI Telecom Structural Analysis and Design Software](https://www.g2.com/products/safi-telecom-structural-analysis-and-design-software/reviews)

SAFI™ Telecom Software is a comprehensive structural analysis and design solution tailored for steel telecommunication structures, including self-supporting towers, monopole towers, and guyed masts. It adheres to the ANSI/TIA-222-I and CSA S37-24 standards, ensuring compliance with industry regulations. The software features an intuitive ribbon-based interface, facilitating efficient modeling and design processes. Key functionalities include automatic calculation of wind and ice loads on various components, generation of dead, wind, ice, and thermal load cases, and automatic determination of drag coefficients and gust factors. By automating complex calculations and providing a user-friendly environment, SAFI™ Telecom Software enhances productivity and accuracy for engineers designing telecommunication structures.

#### Who Is the Company Behind SAFI Telecom Structural Analysis and Design Software?

- **Seller:** [Safi](https://www.g2.com/sellers/safi)
- **Year Founded:** 1986
- **HQ Location:** Toronto, CA
- **LinkedIn® Page:** [www.linkedin.com](https://www.g2.com/external_clickthroughs/record?secure%5Bsource_type%5D=product_profile&secure%5Btoken%5D=f45443feeecbeff6d10ccca90a2fab620493c2b07f91ecd0444dab77848f5c1f&secure%5Burl%5D=https%3A%2F%2Fwww.linkedin.com%2Fcompany%2Fsafi-quality-software-inc%2F&secure%5Burl_type%5D=linkedin_company_website)  
5 employees on LinkedIn®

### [SAFI Virtual Tower Structures Software](https://www.g2.com/products/safi-virtual-tower-structures-software/reviews)

Virtual Tower Structures® (VTS) is an advanced software solution designed to revolutionize the design, engineering, and construction of electrical substations and transmission towers. By integrating modeling, analysis, design, connection design, fabrication, and detailing into a single, cohesive platform, VTS streamlines the entire workflow from concept to fabrication, replacing traditional, fragmented processes with a unified, model-based environment. Key Features and Functionality: - Parametric Modeling: VTS offers parametric modeling capabilities for substations and transmission towers, enabling automated generation of geometry, bracing, joints, and connection details. - Comprehensive Engineering Tools: The software provides robust structural analysis and design functionalities, ensuring compliance with applicable codes and standards for substations and transmission towers. - Integrated Fabrication and Detailing: VTS seamlessly integrates fabrication and detailing processes, facilitating the creation of detailed fabrication drawings and NC file generation within the same environment. - Unified Operational Framework: The software operates on a framework that encompasses Modeling (M), Engineering (E), Fabrication (F), and Detailing (D), delivering an end-to-end solution in a single software environment. Primary Value and User Solutions: VTS addresses the inefficiencies inherent in traditional design and construction workflows for electrical substations and transmission towers. By consolidating multiple processes into one integrated platform, it enhances productivity, reduces errors, and accelerates project timelines. Engineers and designers benefit from a streamlined approach that ensures consistency and accuracy throughout the project lifecycle, ultimately leading to cost savings and improved project outcomes.

#### Who Is the Company Behind SAFI Virtual Tower Structures Software?

- **Seller:** [Safi](https://www.g2.com/sellers/safi)
- **Year Founded:** 1986
- **HQ Location:** Toronto, CA
- **LinkedIn® Page:** [www.linkedin.com](https://www.g2.com/external_clickthroughs/record?secure%5Bsource_type%5D=product_profile&secure%5Btoken%5D=f45443feeecbeff6d10ccca90a2fab620493c2b07f91ecd0444dab77848f5c1f&secure%5Burl%5D=https%3A%2F%2Fwww.linkedin.com%2Fcompany%2Fsafi-quality-software-inc%2F&secure%5Burl_type%5D=linkedin_company_website)  
5 employees on LinkedIn®

### [SAFI Wood Calculator Software](https://www.g2.com/products/safi-wood-calculator-software/reviews)

The SAFI™ Wood Calculator is an essential software tool designed for structural engineers to efficiently verify and design wood beams and columns composed of sawn lumber, timber, glulam, and structural composite lumber under both normal and fire conditions. By eliminating the need for complex 3D analysis models, it serves as an effective validation instrument for quickly assessing specific elements within intricate structural designs. Key Features and Functionality: - Design Code Compliance: Supports American NDS ASD/LRFD and Canadian CSA O86 standards, ensuring adherence to industry regulations. - Versatile Modeling Options: Offers predefined models for simple beams, continuous beams with up to four spans, cantilever beams, Gerber beams, and columns with offset loads. - Comprehensive Input Data: Allows selection of section shapes, definition of basic loads, specification of design parameters, deflection limits, and fire resistance properties. - Detailed Results Presentation: Provides summaries for reactions, internal deformations, and internal forces, facilitating thorough analysis. - Limit States Design Verification: Performs calculations for tension, compression, bending, shear, and combined forces under normal and fire conditions. - Extensive Material Libraries: Includes American and Canadian wood materials, with options to create custom materials and sections. - Automated Load Calculations: Generates load combinations based on various codes and considers permanent, live, wind, snow, and seismic loads. - Customizable Reports: Offers detailed and executive reports with graphical or numerical visualization of results, which can be printed or exported. Primary Value and User Solutions: The SAFI™ Wood Calculator streamlines the design and verification process for wood structural elements, significantly reducing manual calculations and the potential for errors. Its user-friendly interface and robust features enable engineers to efficiently validate and optimize designs, ensuring compliance with relevant standards. By simplifying complex analyses, the software enhances productivity and accuracy in structural engineering projects.

#### Who Is the Company Behind SAFI Wood Calculator Software?

- **Seller:** [Safi](https://www.g2.com/sellers/safi)
- **Year Founded:** 1986
- **HQ Location:** Toronto, CA
- **LinkedIn® Page:** [www.linkedin.com](https://www.g2.com/external_clickthroughs/record?secure%5Bsource_type%5D=product_profile&secure%5Btoken%5D=f45443feeecbeff6d10ccca90a2fab620493c2b07f91ecd0444dab77848f5c1f&secure%5Burl%5D=https%3A%2F%2Fwww.linkedin.com%2Fcompany%2Fsafi-quality-software-inc%2F&secure%5Burl_type%5D=linkedin_company_website)  
5 employees on LinkedIn®

### [SETAF 2018](https://www.g2.com/products/setaf-2018/reviews)

SETAF2018 is an advanced geotechnical analysis software designed for engineers who need reliable and efficient tools for geotechnical engineering projects. It is a modern geotechnical software solution—geotech software—that supports the full workflow of geotechnical analysis and design.

#### Who Is the Company Behind SETAF 2018?

- **Seller:** [Setaf2018](https://www.g2.com/sellers/setaf2018)
- **Year Founded:** 2009
- **HQ Location:** İstanbul, TR
- **LinkedIn® Page:** [www.linkedin.com](https://www.g2.com/external_clickthroughs/record?secure%5Bsource_type%5D=product_profile&secure%5Btoken%5D=cc3f115f60d0de783827efd90fed91e55a0fa492733eaa452b852651fc524a25&secure%5Burl%5D=https%3A%2F%2Fwww.linkedin.com%2Fcompany%2F109079213%2F&secure%5Burl_type%5D=linkedin_company_website)  
1 employees on LinkedIn®

### [Sewer3d](https://www.g2.com/products/sewer3d/reviews)

Sewer3D™ is an advanced software solution developed by SewerAI that revolutionizes sewer infrastructure management through precise 3D modeling. By utilizing affordable 360° action cameras, Sewer3D™ transforms standard manhole inspection videos into detailed, textured 3D models of sewer systems. This innovative approach enables accurate measurements, comprehensive geometry analysis, and seamless integration with CAD software, enhancing decision-making processes.

#### Who Is the Company Behind Sewer3d?

- **Seller:** [Sewer AI](https://www.g2.com/sellers/sewer-ai)
- **Year Founded:** 2019
- **HQ Location:** Walnut Creek, US
- **LinkedIn® Page:** [www.linkedin.com](https://www.g2.com/external_clickthroughs/record?secure%5Bsource_type%5D=product_profile&secure%5Btoken%5D=94775a3b1d93836649ae43fd2c57270c16aa765ed149d141cd6e0e647c9c843f&secure%5Burl%5D=https%3A%2F%2Fwww.linkedin.com%2Fcompany%2Fsewerai&secure%5Burl_type%5D=linkedin_company_website)  
86 employees on LinkedIn®

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[Browse Civil Engineering Design Themes](/categories/civil-engineering-design/themes)

 ![Daniel Rivera](/assets/transparent-ad5be28fbcd25b7b08d2cebe1d957125437fb5407d75ee717965ad22c8808791.gif "Daniel Rivera")
DR

Researched and written by [Daniel Rivera](https://research.g2.com/insights/author/daniel-rivera)

Updated March 5, 2025

Civil engineering design software are specialized computer programs that enable users to create, analyze, and optimize infrastructure planning. Civil engineering design solutions help draft complex [3D designs](https://www.g2.com/categories/3d-design) of municipal buildings and structures. These tools include functionality for railway modeling, road and highway design, and mapping—essentially assisting city infrastructure planning. These tools have the functionality to help in every stage of the design and construction process, including drafting, designing, visualizing, analyzing, and more.

Professionals across industries widely use civil engineering design software for project planning, determining costs, resourcing, and scheduling. Although they are intended for structural engineers, the [best civil engineering design software](https://learn.g2.com/best-civil-engineering-design-software) can be utilized by engineers in nearly every subset of the field. If they lack the specific functionality, these software solutions can typically integrate with [general-purpose CAD software](https://www.g2.com/categories/general-purpose-cad) and [3D modeling software](https://www.g2.com/categories/3d-modeling). These features facilitate efficiency, accuracy, and the overall success of civil engineering projects. The tools also help streamline workflows, make informed decisions, and deliver high-quality infrastructure solutions.

To qualify for inclusion in the Civil Engineering Design category, a product must:

- Provide users with the ability to modify 3D primitives
- Offer basic drawing tools like lines, circles and polygons
- Enable users to visualize their structures in 3D

Show More

* * *

## How Do You Choose the Right Civil Engineering Design Software?

### What You Should Know About Civil Engineering Design Software 

### Civil engineering design software overview 

Civil engineering design software revolutionizes infrastructure development, offering advanced tools for planning, modeling, and optimizing projects. These solutions empower engineers to create efficient, safe, and sustainable structures, from structural analysis to transportation and environmental design. Civil engineers use software for designing, constructing, and maintaining infrastructures such as roads, culverts, buildings, airports, railways, etc. The tool helps engineers draft technical drawings and view and analyze the designs to identify areas of improvement. [Engineering document management software](https://www.g2.com/categories/engineering-document-management) can also assist with the documentation process.&nbsp;

These tools help calculate costs associated with the construction and maintenance of infrastructure over a given period. These solutions can be used for creating simple and complex technical drawings.&nbsp;

### Who uses civil engineering design software?

The following personas most commonly use civil engineering software:

- **Civil engineers:** Civil engineering design software is most commonly used by those in the field of civil engineering itself. A civil engineer designs and maintains the construction of major public works projects, ranging from buildings to highways to airports. This software is helpful at every step of the construction process, from design to completion. Some civil engineers focus on a more niche function, such as transportation, structural, or geotechnical engineering.
- **Construction managers:** This tool aids in construction management by providing detailed information related to the project. The software offers functionalities to help them efficiently manage the entire construction lifecycle. Features such as cost estimation, budgeting, resource allocation, and progress monitoring allow them to coordinate better and control their projects.
- **Land surveyors:** In a construction project, responsibilities overlap between civil engineers and land surveyors. Both work together on construction projects to ensure the project reaches completion. Civil engineering design and[landscape design software](https://www.g2.com/categories/landscape-design) help surveyors examine a 3D landscape by collecting geological data, such as the distance between a series of points. The engineers then use this data to create blueprints for the project.

### Benefits of civil engineering design software&nbsp;

Civil engineering software provides several benefits to users, such as:

- **Effective collaboration:** Whether a project is small or large, users can leverage civil engineering design software to communicate better. 3D models stored on a cloud platform make them easily and simultaneously accessible to different stakeholders. This makes it easy for them to view infrastructure plans, survey observations, and work on modifications while maintaining a steady flow of communication. Since every team member views the same 3D design plan and the latest project data, they can work together as a well-integrated team.
- **Fast calculations:** An important aspect of civil engineering is that calculations must be exact so the constructed structures are safe and stable. With this software, such calculations can be made much more quickly. Structures often have to go through some variation of a redesign. Civil engineering design platforms allow engineers to accomplish that while maintaining high accuracy of the calculations quickly. Some tools have formulas built in to include safety standards.
- **High productivity:** The tool increases overall productivity by reducing the chances of errors in the design and construction process. It helps engineers estimate the materials required for production and their cost. 3D visualizations of the design make it easy to examine the various components and identify areas of improvement prior to production.

### Challenges with civil engineering design software

Civil engineering design software provides many benefits to users. However, it does come with its own set of challenges, such as:

- **Learning curve:** Civil engineering is a complicated field; therefore, various software functionalities can often be challenging to master. The learning curve may be tough for those new to this field.&nbsp;
- **Storage:** Those working with this software often create designs that need to be saved as large files. This means that civil engineering design platforms may take up a large portion of the memory on a user’s computer.
- **Cost:** The cost of this software is often high, making it too expensive for small businesses and individual users.&nbsp;

### Civil engineering design software features&nbsp;

The following are some core features within civil engineering platforms that can help users:

- **3D modeling:** The software helps with civil engineering design and construction documentation. Depending on the type of infrastructure project an engineer is working on, [3D models](https://www.g2.com/glossary/3d-model-definition)of structures can be created. In transportation engineering projects, these tools help produce digital models of transportation scenarios and aid in planning transportation systems. For geotechnical engineering projects, the tool helps in viewing and evaluating underground data and incorporating that data to create more realistic 3D representations of management systems. Hydraulic engineering projects would require the functionality to model and analyze drainage systems, stormwater, and sewer networks. Likewise, the tool is useful in various other engineering projects as it enables the project members to visualize the outcome in a real-world context.
- **Design modification:** This feature allows users to change the design easily. Various options are available to edit and adjust variables to meet client specifications. The software feature assists users in modifying the initial draft, and they do not need to start the work from scratch. Engineers can create replicas, rotate, resize, and crop the design to simplify the process.
- **Photorealistic rendering:** This feature takes a 3D model and places it into a fully realized 3D environment to provide users with visualizations of the final product.
- **Design automation:** It refers to the process of using engineering data for the automation of time-consuming, repetitive tasks such as modeling, designing, and analyzing structures. It makes the design process more efficient and reduces the chances of errors.

### Civil engineering design software pricing

The pricing varies based on several factors, such as features, capabilities, license models, the size of the organization, and more. Additionally, each software may offer different subscription plans depending on varying levels of functionality.&nbsp;

Some general considerations are:

- **Trial periods:** Several software providers offer free trial periods, allowing users to explore the software's features before making a purchase decision.
- **Subscription models** : Users have access to subscription models where users pay a recurring fee (monthly or annually) for access to certain features. Different subscription models may offer different features.
- **License types** : Brands offer different types of licenses, such as single-user licenses or multi-user licenses. The pricing structure may vary based on the number of users.
- **Student discounts** : Some software vendors offer discounted pricing for educational institutions or students, making it more accessible for academic purposes.
- **Customization:** Software that allows customization or integration with other tools may have additional costs associated with these features.

Due to the dynamic nature of the software market, it's advisable to check with the specific vendors for the most up-to-date pricing information. Be sure to consider the project's specific needs and the technical support the software vendor provides when evaluating pricing options.

### How to choose the best civil engineering design software

#### Requirements gathering (RFI/RFP) for civil engineering design software

If a company is just starting and looking to purchase its first civil engineering design software or needs to update a legacy system—wherever a business is in its buying process, [G2](https://www.g2.com/) can help select the best solution.

Users should think about the pain points and jot them down, and these should be used to help create a criteria checklist. The checklist is a detailed guide that includes necessary and nice-to-have features, budget, number of users, integrations, security requirements, cloud or on-premise solutions, etc.

Additionally, the buyer must determine the project scale—the larger the project, the more users will need to use this software. This would drive the number of licenses they are likely to buy. Depending on the deployment scope, it might be helpful to produce a request for information (RFI), a one-page list with a few bullet points describing what is needed from the tool.

#### Compare civil engineering design software products

**Create a long list**

Vendor evaluations are important during the software buying process, from meeting the project functionality needs to implementation. It helps prepare a consistent list of questions regarding specific requirements and concerns to ask each vendor. Buyers should start by creating a long list containing different civil engineering design tools keeping in mind the following considerations:

- **Type of application:** Depending on the project's purpose, the organization can determine specific features the software should have to suit functional requirements. There are different infrastructure projects for which a civil engineering design tool may be used, such as structural engineering, geotechnical engineering, transportation engineering, hydraulic engineering, environmental engineering, and more.&nbsp;For instance, hydraulic engineering projects would require software that helps create hydraulic schematics and design hydraulic systems. The organization may look for solutions that help simulate the hydrologic processes of watershed systems. Transportation simulation and analysis software will be ideal for transportation engineering, providing engineers with insights to build secure and efficient transportation systems.
- **User-friendly interface:** The user interface should be intuitive to allow engineers to easily create and modify the 3D design. A user-friendly interface helps in the effective analysis of different structures. It also facilitates communication across teams. Some solutions offer many built-in templates to help the engineer quickly start designing a model.
- **Deployment:** The tool may be cloud-based or an on-premises solution. If the organization opts for a cloud-based platform, it can be used anywhere and anytime. Engineers in different locations can share their work using cloud technology with contractors and receive real-time feedback. Some vendors may offer the capability to scale the solution from on-premises to the cloud.

**Create a short list**

From the long list of vendors, narrowing the list of contenders is pragmatic. Buyers must read user reviews, view ratings on the [G2 Grid](https://www.g2.com/categories/civil-engineering-design#grid)Ⓡ for the Civil Engineering Design software category, read useability ratings, and shorten the list of vendors in the G2 “My List” down to a handful_._

**Conduct demos**

Demos allow buyers to see how a civil engineering design platform works. While pre-recorded demonstrations and slide decks are available online, it is lucrative to request the vendor for a live demo of the software to dive deep into their technical capabilities.&nbsp;

#### Selection of civil engineering design software

**Choose a selection team**

Creating a team that will collaborate throughout the entire process, from identifying problem areas to deploying the tool, is essential. The selection team should consist of members with the right interests, skills, and time to contribute to this process. The software selection team should consist of three to five people who fill the required roles. This may include the civil engineering project manager, project planners, and senior civil engineers on the team.

They should compare data, facts, and analyses noted during the process, such as the availability of advanced capabilities suited to a particular civil engineering discipline, usability, and security features to optimize the software selection process.

**Negotiation**

It is important to discuss their pricing structure, subscription fees, and licensing costs with the vendor. For instance, the vendor may discount multi-year contracts or give discounts to recommend the tool to other users.

**Final decision**

Selecting a vendor with a product offering aligned with the company’s project requirements will accelerate growth. Before going all in, it is recommended to roll out a test run or pilot program to test adoption with a small sample size of users. If the tool is well used and received, the buyer can be confident that the selection is correct. If not, it might be time to evaluate other offerings.

### Software and services related to civil engineering design software

Related solutions that can be used together with civil engineering design software include:

- **Building information modeling (BIM):** BIM is a computer-aided design tool commonly used in architecture, engineering, and construction. It assists in creating digital representations of buildings used across various stages, such as construction planning, design, construction, and operations.&nbsp;Integration of [BIM software](https://www.g2.com/categories/building-design-and-building-information-modeling-bim) enhances the overall design process. Civil engineers can use this software to model workflows and share design information with project stakeholders to make better decisions. The tool can create accurate 3D models and simulate the infrastructure. This helps them view and detect potential design, construction, or operations flaws and reduce rework, saving time and money.&nbsp;
- **General-purpose CAD:** This software enables users to create 2D and 3D drawings and models of structures. Many civil engineering design solutions offer general-purpose CAD software functionalities to help users draft the basics of their designs.
- **Geographic information system (GIS):** Civil engineers can use [GIS software](https://www.g2.com/categories/gis) to gather and evaluate geospatial data. GIS software is useful in different disciplines. For instance, GIS mapping is useful in structural analysis, where 3D GIS maps are integrated with traditional design methods to enable engineers to evaluate a structural design. This helps them learn from past mistakes and make the design more efficient. GIS applications are also valuable for site examination as they help determine whether a particular location is suitable for infrastructure construction.
- [Construction project management software](https://www.g2.com/categories/construction-project-management) **:** Construction project management software assists engineers with project planning, scheduling, cost estimation, resource allocation, and monitoring. It also streamlines the flow of information among project stakeholders.

_Reviewed and edited by_ [_Sinchana Mistry_](https://www.linkedin.com/search/results/all/?fetchDeterministicClustersOnly=true&heroEntityKey=urn%3Ali%3Afsd_profile%3AACoAAC1dbjEB3lcJNusAFxvyIzscLliWvzy7fXg&keywords=sinchana%20mistry&origin=RICH_QUERY_SUGGESTION&position=0&searchId=63abd15b-56c9-41e7-9405-286b2e0ba318&sid=*.8&spellCorrectionEnabled=false)