Nonlinear Static Soil-Structure Interaction Analysis of Time-Dependent Soil Deformation Effects on RC Structures

Soil response and superstructure behavior are two major factors influencing the long-term performance of reinforced concrete (RC) structures. Maintaining the structural integrity of these structures over time is crucial due to the complex static interactions between the soil and the structure. This...

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Main Authors: Ayat Errahmane Remadna, Kamel Bezih, Rafik Demagh, Mohamed Saddek Remadna
Format: Article
Language:English
Published: Universidade Federal de Viçosa (UFV) 2024-06-01
Series:The Journal of Engineering and Exact Sciences
Subjects:
Online Access:https://periodicos.ufv.br/jcec/article/view/18942
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author Ayat Errahmane Remadna
Kamel Bezih
Rafik Demagh
Mohamed Saddek Remadna
author_facet Ayat Errahmane Remadna
Kamel Bezih
Rafik Demagh
Mohamed Saddek Remadna
author_sort Ayat Errahmane Remadna
collection DOAJ
description Soil response and superstructure behavior are two major factors influencing the long-term performance of reinforced concrete (RC) structures. Maintaining the structural integrity of these structures over time is crucial due to the complex static interactions between the soil and the structure. This study uses a finite element model to examine the stability of RC structures, considering the long-term static interactions between the nonlinear behavior of the soil and the structure. Numerical simulations are performed on real RC beam constructions at serviceability limit states (SLS) under various loading scenarios in both homogeneous and heterogeneous soil conditions. The parametric study's results indicate that soil heterogeneity and static soil-structure interactions significantly influence the design of RC structures. The nonlinear behavior of the soil over time intensifies these impacts further. This study shows how important it is to think about different types of soil and how they interact with structures when they are not moving. This is especially true when it comes to soil that is easily compressed and changes shape over time in a nonlinear way. By incorporating these factors, the research highlights the critical need to integrate soil heterogeneity and static interaction into the design process to ensure the stability and safety of RC structures. Ultimately, the results demonstrate that accounting for these complex interactions can greatly improve the durability and reliability of RC structures in diverse soil conditions.  
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institution Kabale University
issn 2527-1075
language English
publishDate 2024-06-01
publisher Universidade Federal de Viçosa (UFV)
record_format Article
series The Journal of Engineering and Exact Sciences
spelling doaj-art-3517bdc4556e415a96e007e0a1a0ca422025-02-02T19:53:39ZengUniversidade Federal de Viçosa (UFV)The Journal of Engineering and Exact Sciences2527-10752024-06-0110610.18540/jcecvl10iss6pp18942Nonlinear Static Soil-Structure Interaction Analysis of Time-Dependent Soil Deformation Effects on RC StructuresAyat Errahmane Remadna0Kamel Bezih1Rafik Demagh2Mohamed Saddek Remadna3LGC-ROI, Civil Engineering Department, Faculty of Technology University of Batna2, Batna 05000, AlgeriaLGC-ROI, Civil Engineering Department, Faculty of Technology University of Batna2, Batna 05000, AlgeriaLGC-ROI, Civil Engineering Department, Faculty of Technology University of Batna2, Batna 05000, AlgeriaNM2I2S Laboratory, Civil Engineering Department, Faculty of Technology University of Biskra, Biskra 07000, Algeria Soil response and superstructure behavior are two major factors influencing the long-term performance of reinforced concrete (RC) structures. Maintaining the structural integrity of these structures over time is crucial due to the complex static interactions between the soil and the structure. This study uses a finite element model to examine the stability of RC structures, considering the long-term static interactions between the nonlinear behavior of the soil and the structure. Numerical simulations are performed on real RC beam constructions at serviceability limit states (SLS) under various loading scenarios in both homogeneous and heterogeneous soil conditions. The parametric study's results indicate that soil heterogeneity and static soil-structure interactions significantly influence the design of RC structures. The nonlinear behavior of the soil over time intensifies these impacts further. This study shows how important it is to think about different types of soil and how they interact with structures when they are not moving. This is especially true when it comes to soil that is easily compressed and changes shape over time in a nonlinear way. By incorporating these factors, the research highlights the critical need to integrate soil heterogeneity and static interaction into the design process to ensure the stability and safety of RC structures. Ultimately, the results demonstrate that accounting for these complex interactions can greatly improve the durability and reliability of RC structures in diverse soil conditions.   https://periodicos.ufv.br/jcec/article/view/18942Soil-structure interactionFinite element modelMechanical analysisRC structureNonlinear behaviorCompressibility parameters
spellingShingle Ayat Errahmane Remadna
Kamel Bezih
Rafik Demagh
Mohamed Saddek Remadna
Nonlinear Static Soil-Structure Interaction Analysis of Time-Dependent Soil Deformation Effects on RC Structures
The Journal of Engineering and Exact Sciences
Soil-structure interaction
Finite element model
Mechanical analysis
RC structure
Nonlinear behavior
Compressibility parameters
title Nonlinear Static Soil-Structure Interaction Analysis of Time-Dependent Soil Deformation Effects on RC Structures
title_full Nonlinear Static Soil-Structure Interaction Analysis of Time-Dependent Soil Deformation Effects on RC Structures
title_fullStr Nonlinear Static Soil-Structure Interaction Analysis of Time-Dependent Soil Deformation Effects on RC Structures
title_full_unstemmed Nonlinear Static Soil-Structure Interaction Analysis of Time-Dependent Soil Deformation Effects on RC Structures
title_short Nonlinear Static Soil-Structure Interaction Analysis of Time-Dependent Soil Deformation Effects on RC Structures
title_sort nonlinear static soil structure interaction analysis of time dependent soil deformation effects on rc structures
topic Soil-structure interaction
Finite element model
Mechanical analysis
RC structure
Nonlinear behavior
Compressibility parameters
url https://periodicos.ufv.br/jcec/article/view/18942
work_keys_str_mv AT ayaterrahmaneremadna nonlinearstaticsoilstructureinteractionanalysisoftimedependentsoildeformationeffectsonrcstructures
AT kamelbezih nonlinearstaticsoilstructureinteractionanalysisoftimedependentsoildeformationeffectsonrcstructures
AT rafikdemagh nonlinearstaticsoilstructureinteractionanalysisoftimedependentsoildeformationeffectsonrcstructures
AT mohamedsaddekremadna nonlinearstaticsoilstructureinteractionanalysisoftimedependentsoildeformationeffectsonrcstructures