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Advanced engineering, drafting, and architectural building software

Advanced engineering, drafting, and architectural building software

Vote: (3 votes)

Program license: Demo

Developer: ENGISSOL

Version: 2

Works under: Windows

Vote:

Program license

(3 votes)

Demo

Developer

Version

ENGISSOL

2

Works under:

Windows

Pros

  • Extensive static and dynamic analysis options
  • User-friendly interface that streamlines processes
  • Flexibility in modeling a variety of structural elements
  • Modal analysis and eigenvalues estimation capabilities
  • Supports an unlimited number of nodes and beams

Cons

  • May be complex for beginners in structural analysis
  • Premium features might come at a higher cost

Comprehensive Structural Analysis and Design Solution

2D Frame Analysis by Engissol is a sophisticated engineering software aimed at professionals and students within the civil and structural engineering fields. This versatile tool provides an array of functionalities for the static and dynamic analysis of beams, trusses, and frames. Leveraging on a highly flexible finite element method, the software offers both accuracy and ease-of-use for complex engineering calculations.

The interface of 2D Frame Analysis is designed for efficiency, prioritizing user experience without compromising on the depth of features available. This approach ensures that users can quickly model and analyze various static systems, translating into significant time savings during project development phases.

Robust Analysis Features

At the heart of 2D Frame Analysis is its robust finite element analysis engine. This enables users to perform both static and dynamic calculations on a variety of structures. Whether analyzing multi-span beams, 2D trusses, or 2D frames, the software manages to strike an impressive balance between flexibility and user-friendliness.

Modal analysis and eigenvalues estimation are crucial features supporting the dynamic analysis capabilities. With these, users can ascertain vibrational modes and frequencies, which are essential in assessing the reliability and safety of structures under various load conditions.

Implementation of the mode superposition method facilitates the calculation of dynamic responses, allowing for precise predictions of how structures will behave when subjected to time-varying loads. Additionally, Engissol's patented automatic creation of a consistent mass matrix adds to the dynamic analysis precision.

For projects that involve dynamic loads changing over time, 2D Frame Analysis excels with its multi-step dynamic analysis. The user interface here accommodates a high degree of customization, granting engineers the control to dictate step and time parameters that suit their specific needs. This feature is complemented by the ability to define time-dependent loading on both elements and nodes within the software.

User-Centric Design and Interface

Reflecting on its ethos of user-centric design, this software stands out with its intuitive and interactive interface. Navigation within the program is streamlined to ensure that even users new to the software can grasp its operation without a steep learning curve. The time saving during modeling and analyzing any type of static system does not come at the expense of the depth of the analysis, which remains thorough and detailed.

Boundaries and support conditions are critical in structural analysis, and 2D Frame Analysis delivers considerable flexibility here, including support for all major measure units. Whether dealing with fixed supports, rollers, or various other boundary conditions, the software provides an accurate modeling environment. It even accounts for translational and rotational spring supports, as well as prescribed displacements and velocities.

Unlimited numbers of nodes and beams, along with the allowance for 3 degrees of freedom per node and 6 per beam, ensure that the structural models can be as complex as required by any project.

Conclusion

Engissol's 2D Frame Analysis stands as a powerful contender in the realm of structural analysis software. Its myriad of features combined with an intuitive interface make it an appealing choice for civil and structural engineers, mechanical engineers, students, and researchers alike who require a reliable and efficient tool for their work.

Pros

  • Extensive static and dynamic analysis options
  • User-friendly interface that streamlines processes
  • Flexibility in modeling a variety of structural elements
  • Modal analysis and eigenvalues estimation capabilities
  • Supports an unlimited number of nodes and beams

Cons

  • May be complex for beginners in structural analysis
  • Premium features might come at a higher cost