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Study on Dynamic Response Characteristics of Saturated Asphalt Pavement under Multi-Field Coupling

To study the dynamic response of saturated asphalt pavement under moving load and temperature load, 3-D finite element models for asphalt pavements with hydro-mechanical coupling and thermal-hydro-mechanical coupling were built based on the porous media theory and Biot theory. First, the asphalt pav...

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Autores principales: Sun, Yazhen, Guo, Rui, Gao, Lin, Wang, Jinchang, Wang, Xiaochen, Yuan, Xuezhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6470537/
https://www.ncbi.nlm.nih.gov/pubmed/30909416
http://dx.doi.org/10.3390/ma12060959
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author Sun, Yazhen
Guo, Rui
Gao, Lin
Wang, Jinchang
Wang, Xiaochen
Yuan, Xuezhong
author_facet Sun, Yazhen
Guo, Rui
Gao, Lin
Wang, Jinchang
Wang, Xiaochen
Yuan, Xuezhong
author_sort Sun, Yazhen
collection PubMed
description To study the dynamic response of saturated asphalt pavement under moving load and temperature load, 3-D finite element models for asphalt pavements with hydro-mechanical coupling and thermal-hydro-mechanical coupling were built based on the porous media theory and Biot theory. First, the asphalt pavement structure was considered as an ideal saturated fluid–solid biphasic porous medium. Following this, the spatial distribution and the change law of the pore-water pressure with time, the transverse stress, and the vertical displacement response of the asphalt pavement under different speeds, loading times, and temperatures were investigated. The simulation results show that both the curves of the effective stress and the pore-water pressure versus the external loads have similar patterns. The damage of the asphalt membrane is mainly caused by the cyclic effect of positive and negative pore-water pressure. Moreover, the peak value of pore-water pressure is affected by the loading rate and the loading time, and both have positive exponential effects on the pore-water pressure. In addition, the transverse stress of the upper layer pavement is deeply affected by the temperature load, which is more likely to cause as transverse crack in the pavement, resulting in the formation of temperature cracks on the road surface. The vertical stress at the middle point in the upper layer of the saturated asphalt pavement, under the action of the temperature load and the driving load, shows a single peak.
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spelling pubmed-64705372019-04-27 Study on Dynamic Response Characteristics of Saturated Asphalt Pavement under Multi-Field Coupling Sun, Yazhen Guo, Rui Gao, Lin Wang, Jinchang Wang, Xiaochen Yuan, Xuezhong Materials (Basel) Article To study the dynamic response of saturated asphalt pavement under moving load and temperature load, 3-D finite element models for asphalt pavements with hydro-mechanical coupling and thermal-hydro-mechanical coupling were built based on the porous media theory and Biot theory. First, the asphalt pavement structure was considered as an ideal saturated fluid–solid biphasic porous medium. Following this, the spatial distribution and the change law of the pore-water pressure with time, the transverse stress, and the vertical displacement response of the asphalt pavement under different speeds, loading times, and temperatures were investigated. The simulation results show that both the curves of the effective stress and the pore-water pressure versus the external loads have similar patterns. The damage of the asphalt membrane is mainly caused by the cyclic effect of positive and negative pore-water pressure. Moreover, the peak value of pore-water pressure is affected by the loading rate and the loading time, and both have positive exponential effects on the pore-water pressure. In addition, the transverse stress of the upper layer pavement is deeply affected by the temperature load, which is more likely to cause as transverse crack in the pavement, resulting in the formation of temperature cracks on the road surface. The vertical stress at the middle point in the upper layer of the saturated asphalt pavement, under the action of the temperature load and the driving load, shows a single peak. MDPI 2019-03-22 /pmc/articles/PMC6470537/ /pubmed/30909416 http://dx.doi.org/10.3390/ma12060959 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sun, Yazhen
Guo, Rui
Gao, Lin
Wang, Jinchang
Wang, Xiaochen
Yuan, Xuezhong
Study on Dynamic Response Characteristics of Saturated Asphalt Pavement under Multi-Field Coupling
title Study on Dynamic Response Characteristics of Saturated Asphalt Pavement under Multi-Field Coupling
title_full Study on Dynamic Response Characteristics of Saturated Asphalt Pavement under Multi-Field Coupling
title_fullStr Study on Dynamic Response Characteristics of Saturated Asphalt Pavement under Multi-Field Coupling
title_full_unstemmed Study on Dynamic Response Characteristics of Saturated Asphalt Pavement under Multi-Field Coupling
title_short Study on Dynamic Response Characteristics of Saturated Asphalt Pavement under Multi-Field Coupling
title_sort study on dynamic response characteristics of saturated asphalt pavement under multi-field coupling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6470537/
https://www.ncbi.nlm.nih.gov/pubmed/30909416
http://dx.doi.org/10.3390/ma12060959
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