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对一个有土工膜衬砌的垃圾填埋场进行大规模离心试验,该填埋场承受废物沉降和地震荷载。

Large scale centrifuge test of a geomembrane-lined landfill subject to waste settlement and seismic loading.

作者信息

Kavazanjian Edward, Gutierrez Angel

机构信息

School of Sustainable Engineering and the Built Environment, Arizona State University, Tempe, AZ 85287-3005, United States.

United States Bureau of Reclamation, Yuma, AZ 85364, United States.

出版信息

Waste Manag. 2017 Oct;68:252-262. doi: 10.1016/j.wasman.2017.01.029. Epub 2017 Jan 30.

DOI:10.1016/j.wasman.2017.01.029
PMID:28153409
Abstract

A large scale centrifuge test of a geomembrane-lined landfill subject to waste settlement and seismic loading was conducted to help validate a numerical model for performance based design of geomembrane liner systems. The test was conducted using the 240g-ton centrifuge at the University of California at Davis under the U.S. National Science Foundation Network for Earthquake Engineering Simulation Research (NEESR) program. A 0.05mm thin film membrane was used to model the liner. The waste was modeled using a peat-sand mixture. The side slope membrane was underlain by lubricated low density polyethylene to maximize the difference between the interface shear strength on the top and bottom of the geomembrane and the induced tension in it. Instrumentation included thin film strain gages to monitor geomembrane strains and accelerometers to monitor seismic excitation. The model was subjected to an input design motion intended to simulate strong ground motion from the 1994 Hyogo-ken Nanbu earthquake. Results indicate that downdrag waste settlement and seismic loading together, and possibly each phenomenon individually, can induce potentially damaging tensile strains in geomembrane liners. The data collected from this test is publically available and can be used to validate numerical models for the performance of geomembrane liner systems.

摘要

开展了一项针对有土工膜衬里的垃圾填埋场的大型离心机试验,该填埋场承受垃圾沉降和地震荷载,以帮助验证用于土工膜衬砌系统基于性能设计的数值模型。该试验是在美国国家科学基金会地震工程模拟研究网络(NEESR)项目下,使用加利福尼亚大学戴维斯分校的240g - 吨离心机进行的。使用0.05毫米的薄膜来模拟衬里。用泥炭 - 砂混合物模拟垃圾。边坡膜下面铺设了润滑的低密度聚乙烯,以最大限度地增大土工膜顶部和底部界面剪切强度与其中产生的拉力之间的差异。仪器设备包括用于监测土工膜应变的薄膜应变计和用于监测地震激励的加速度计。该模型受到旨在模拟1994年兵库县南部地震强烈地面运动的输入设计运动作用。结果表明,下拉式垃圾沉降和地震荷载共同作用,并且可能每种现象单独作用,都可能在土工膜衬砌中引起潜在的破坏性拉伸应变。从该试验收集的数据已公开可用,可用于验证土工膜衬砌系统性能的数值模型。

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