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锦屏二级水电站绿片岩双轴压缩蠕变 特性试验研究
引用本文:熊良宵,杨林德,张尧,沈明荣,石振明.锦屏二级水电站绿片岩双轴压缩蠕变 特性试验研究[J].岩石力学与工程学报,2008,27(Z2):3928-3928.
作者姓名:熊良宵  杨林德  张尧  沈明荣  石振明
基金项目:国家自然科学基金委员会、二滩水电开发有限责任公司雅砻江水电开发联合研究基金
摘    要: 利用岩石双轴流变试验机对锦屏二级水电站辅助洞的绿片岩进行不同加载路径、不同应力水平下的双轴压缩蠕变试验,将一维Burgers模型推广到双轴受压状态,对试验曲线进行辨识。结果表明,轴向和侧向的蠕变规律与加载方式有很大关系,当以定侧压比同时加轴向和侧向荷载时,轴向和侧向应变基本随荷载的增加而增加,而采用定侧压的加载方式时,侧向应变则随轴向荷载的增加而逐渐减小。采用Burgers模型拟合试验曲线时,其理论值与试验结果比较接近,因此,Burgers模型比较适合描述绿片岩的黏弹性流变特征,研究得到的双轴压缩蠕变参数也可供锦屏二级水电站深埋隧洞的设计参考。

关 键 词:岩石力学  双轴压缩蠕变试验  水电站  绿片岩  流变模型
收稿时间:2008-6-13
修稿时间:2008-7-11

EXPERIMENTAL STUDY ON CREEP BEHAVIORS OF GREENSCHIST SPECIMEN FROM JINPING II HYDROPOWER STATION UNDER BIAXIAL COMPRESSION
XIONG Liangxiao,YANG Linde,ZHANG Yao,SHEN Mingrong,SHI Zhenming.EXPERIMENTAL STUDY ON CREEP BEHAVIORS OF GREENSCHIST SPECIMEN FROM JINPING II HYDROPOWER STATION UNDER BIAXIAL COMPRESSION[J].Chinese Journal of Rock Mechanics and Engineering,2008,27(Z2):3928-3928.
Authors:XIONG Liangxiao  YANG Linde  ZHANG Yao  SHEN Mingrong  SHI Zhenming
Abstract:The biaxial compression creep tests on greenschist specimens from auxiliary tunnel of Jinping II Hydropower Station were carried out. There were many kinds of loading paths and many different stress levels in the tests. The one-dimensional Burgers model was developed into biaxial compression state. And the creep parameters of greenschist under biaxial compression were determined by Burgers model. The results show that the loading path has important effect on the axial and lateral creep laws. If the axial and lateral loads are exerted simultaneously with fixed ratio,the axial and lateral strains will ascend with increasing axial and lateral stresses. But if the axial load is exerted gradually with fixed lateral stress,the lateral strain will descend with increasing axial stresses. The comparison between Burgers model and experimental curves shows that Burgers model is applicable for determining the viscoelastic rheological parameters of greenschist. These parameters are helpful for the design of deep cavern of Jinping II Hydropower Station.
Keywords:rock mechanics  biaxial compression creep test  hydropower station  greenschist  rheological model
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