Structural Simulation Software by Finite Element Method
ZWSim Structural is a powerful simulation software developed by ZWSOFT, leveraging the Finite Element Method (FEM) for structural and thermal analysis. It provides an integrated environment for modeling and simulation, which facilitates seamless data transfer and numerical simulations, making it ideal for complex industrial problems.
Key Feature
Linear Analysis
Robust and accurate linear analysis includes static, modal, transient, harmonic, spectral response, buckling, and random vibration, enabling the assessment of a structure’s strength, stiffness, stability, and vibration response.
Nonlinear Analysis
Supports nonlinear analysis capabilities that can handle complex contact problems, geometric nonlinear problems, and nonlinear materials, allowing users to effectively and accurately address the intricate challenges of modern engineering.
Thermal Analysis
Supports thermal analysis, which can be used to study the behavior of objects or structures under thermal loading (such as temperature changes).
Fatigue Analysis
Supports fatigue analysis with constant amplitude, variable amplitude, time step, harmonic, and random vibration. These analyses can be used to evaluate the life and performance of materials or structures under repeated loadings.
Drop Test
Supports explicit dynamics analysis to simulate problems of dropping electronics or other devices.
Advanced Matrix-Solving Algorithms
Provides various matrix-solving algorithms, including the Lanczos eigenvalue, PCG (preconditioned conjugate gradient), and multifrontal solving methods. It also supports multi-thread parallelization to improve overall performance.
HPC Technology
Supports CPU and GPU parallel computing, which dramatically reduces the solving time. It is also available for remote computing on a deployed server.
Reliable and User-Friendly Software for Structural Engineering