The Complexity of Virtual Reality Technology in the Simulation and Modeling of Civil Mathematical Models

Because civil engineering structures include stressed structural members and unstressed non-structural members, it isn’t easy to obtain the true parameters of the model when modeling. The article uses a virtual reality fuzzy random modeling to establish a steel bearing force model in civil engineeri...

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Main Authors: Bai Qunxing, Salama Mohamed
Format: Article
Language:English
Published: Sciendo 2023-01-01
Series:Applied Mathematics and Nonlinear Sciences
Subjects:
Online Access:https://doi.org/10.2478/amns.2022.2.0052
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author Bai Qunxing
Salama Mohamed
author_facet Bai Qunxing
Salama Mohamed
author_sort Bai Qunxing
collection DOAJ
description Because civil engineering structures include stressed structural members and unstressed non-structural members, it isn’t easy to obtain the true parameters of the model when modeling. The article uses a virtual reality fuzzy random modeling to establish a steel bearing force model in civil engineering operations. We determined the relevant bearing capacity parameters based on the corrosion of steel bars in civil engineering. The research found that the numerical simulation method determined in this paper has grasped the essence of stress rate, concrete material properties, and dynamic load effect to a considerable extent.
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spelling doaj.art-95ab116be21843d39949b72d61bdc5892023-09-11T07:01:08ZengSciendoApplied Mathematics and Nonlinear Sciences2444-86562023-01-018166167010.2478/amns.2022.2.0052The Complexity of Virtual Reality Technology in the Simulation and Modeling of Civil Mathematical ModelsBai Qunxing0Salama Mohamed11School of Urban Construction, Hainan Vocational University of Science and Technology, Haikou, 571126, China2College of Engineering, Applied Science University, BahrainBecause civil engineering structures include stressed structural members and unstressed non-structural members, it isn’t easy to obtain the true parameters of the model when modeling. The article uses a virtual reality fuzzy random modeling to establish a steel bearing force model in civil engineering operations. We determined the relevant bearing capacity parameters based on the corrosion of steel bars in civil engineering. The research found that the numerical simulation method determined in this paper has grasped the essence of stress rate, concrete material properties, and dynamic load effect to a considerable extent.https://doi.org/10.2478/amns.2022.2.0052virtual reality technologycivil engineeringsimulation modelingbond modelloading ratebond bearing capacity60j20
spellingShingle Bai Qunxing
Salama Mohamed
The Complexity of Virtual Reality Technology in the Simulation and Modeling of Civil Mathematical Models
Applied Mathematics and Nonlinear Sciences
virtual reality technology
civil engineering
simulation modeling
bond model
loading rate
bond bearing capacity
60j20
title The Complexity of Virtual Reality Technology in the Simulation and Modeling of Civil Mathematical Models
title_full The Complexity of Virtual Reality Technology in the Simulation and Modeling of Civil Mathematical Models
title_fullStr The Complexity of Virtual Reality Technology in the Simulation and Modeling of Civil Mathematical Models
title_full_unstemmed The Complexity of Virtual Reality Technology in the Simulation and Modeling of Civil Mathematical Models
title_short The Complexity of Virtual Reality Technology in the Simulation and Modeling of Civil Mathematical Models
title_sort complexity of virtual reality technology in the simulation and modeling of civil mathematical models
topic virtual reality technology
civil engineering
simulation modeling
bond model
loading rate
bond bearing capacity
60j20
url https://doi.org/10.2478/amns.2022.2.0052
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AT salamamohamed complexityofvirtualrealitytechnologyinthesimulationandmodelingofcivilmathematicalmodels