BEHAVIOR OF RETAINING WALLS CONSTRUCTED IN THE SATURATED CLAY AND WATER-SATURATED SAND SOILS UNDER THE DYNAMIC LOADS

Onur Yavan, Tuğçe Tabak, A. Tuncan
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Abstract

Since the main purpose of building retaining walls is to hold up the slopes, the calculations are important during the design process. Although static loads that affect retaining walls are generally taken into consideration, dynamic effects should also be marked in our country located in the earthquake zone. Within the scope of this study, stability checks were performed by taking the effects to the retaining walls subjected to static and dynamic loads and wall designs were also made. In this study, behavior of retaining walls constructed in saturated clay soil and water-saturated sand soil have been determined under static and dynamic loads. Analyses of static and dynamic behavior of gravity and cantilever walls have been done by Plaxis 2D software packet program. The heights of the walls are selected such as 5.0 m, 10.0 m and 15.0 m. Active earth pressures are calculated by using Rankine active earth pressure theory. Factor of safeties such as overturning, sliding and bearing capacity are selected as 2.0, 1.5 and 3.0, respectively. Three different earthquake loads such as Van, Turkey, Petrolia-California, USA and Volcano-Hawaii, USA are chosen to determine the dynamic behavior of walls. Records of earthquake loads were taken from “United States Geological Survey” (USGS) official web site. Format of earthquake records is “strong motion CD” (.smc) due to Plaxis 2D software packet program. The results of analyses done in the saturated clay showed that 5.0 m and 10.0 m heights of retaining walls can be safely constructed in the earthquake zones having the magnitude up to 7.0. 15.0 m height of retaining walls cannot be safely constructed due to the insufficient wall dimensions. The results of analyses done in the water-saturated sand soil showed that 5.0 m height of retaining walls can be safely constructed in the earthquake zones having the magnitude up to 7.0. While the 10.0 m height of retaining walls can be safely constructed in the earthquake zones having magnitude of 6.0, it cannot be constructed in the earthquake zones having magnitude of 5.0 due to the earthquake acceleration. While the 15.0 m height of retaining walls can be safely constructed in the earthquake zones having magnitude of 6.0, it cannot be safely constructed in the earthquake zones having magnitude of 5.0 and 7.0.
动力荷载作用下饱和粘土和水饱和砂土中挡土墙的性能
由于建筑挡土墙的主要目的是支撑边坡,因此计算在设计过程中很重要。虽然一般考虑了影响挡土墙的静荷载,但在我国位于地震带的情况下,也应考虑动力效应。在研究范围内,通过对挡土墙进行静、动荷载作用下的稳定性校核,并进行了挡土墙的设计。本文研究了饱和粘土和水饱和砂土中挡土墙在静、动荷载作用下的性能。利用Plaxis二维软件包程序对重力和悬臂墙的静、动力特性进行了分析。墙体高度选择5.0 m、10.0 m、15.0 m。利用朗肯主动土压力理论计算主动土压力。倾覆、滑动、承载力等安全系数分别取2.0、1.5、3.0。选取了土耳其Van、美国加利福尼亚petrolia和美国夏威夷volcano三种不同的地震荷载来确定墙体的动力性能。地震荷载的记录取自“美国地质调查局”(USGS)的官方网站。由于Plaxis 2D软件包程序,地震记录格式为“强震CD”(.smc)。在饱和粘土中进行的分析结果表明,在7.0级地震带中,5.0 m和10.0 m高度的挡土墙是可以安全建造的。15.0米高的挡土墙由于墙体尺寸不足,无法安全施工。对饱和水砂土的分析结果表明,在7.0级以上的震区,可安全建造5.0 m高度的挡土墙。10.0 m高度挡土墙在6.0级地震区可以安全施工,而在5.0级地震区由于地震加速度的影响不能施工。15.0 m高度挡土墙在6.0级地震带可以安全施工,在5.0级和7.0级地震带不能安全施工。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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