纸质出版:2007
移动端阅览
[1]王丽艳,刘汉龙,蔡艳.用液化度概念评价岩土结构地震液化变形的探讨[J].防灾减灾工程学报,2007(04):451-456.
王丽艳, 刘汉龙, 蔡艳. Discussion on Assessment of Earth-structure Liquefaction Deformation Based on the Concept of Degree of Liquefaction[J]. 2007, (4): 451-456.
地震液化研究的核心是变形。在很多情况下地基虽未达到完全液化
然而饱和砂土由于超静水压的上升而造成的软化
使得地基及其上部结构发生较大变形。由于工程设计人员很难预测变形大小
因此引入液化度概念来间接表征岩土结构的变形。针对目前液化程度评价方法的缺点
给出采用液化度概念的原由
对液化度的概念进行了明确的定义并给出其计算方法。接着
通过分析1995年日本阪神大地震中沉箱结构液化变形
例证液化度评价岩土结构变形的重要意义。最后
提出用液化度评价岩土结构变形的研究思路
分析不同影响因素并建立它们之间经验的函数关系
提出工程设计中可通过不同影响因素的组合来优化地基处理范围
达到经济合理的效果。
Deformation of earth-structures is a key problem in studies of soil liquefaction due to earthquake.In many situations
relatively larger deformation of foundation and upper structures occurs before soils fully liquefy because excessive pore water pressures generated in saturated soils have softened the soil strength.However
it is difficult to predict such a deformation for practical engineers
so the concept of degree of liquefaction is introduced in this paper for assessing earth-structure deformations.Considering the disadvantages of existing methods of assessing liquefaction
the background of the concept is given
and the definition and computation methods of this concept are provided.Then
the importance of the concept is displayed by analyzing the deformation of the quay wall of caisson type in Kobe during the 1995 Great Hanshin earthquake.Finally
different influence factors are analyzed
and the relationship is produced between degree of liquefaction and earth-structure deformation.Furthermore by analyzing different influencing factors
the disposal areas subject to liquefaction destruction can be reasonably and economically optimized in engineering design.
液化及液化后砂土的流动特性分析 [J]. 陈育民,刘汉龙,周云东. 岩土工程学报 . 2006(09)
砂土液化判别的液化系数法 [J]. 黄志全,姚海慧,王玲玲,王光华. 华北水利水电学院学报 . 2005(03)
南水北调中线京石河北段工程地基土液化判别与对策 [J]. 顾辉,王云仓. 水利水电技术 . 2005(04)
埋深对地下结构地震液化响应的影响 [J]. 刘华北,宋二祥. 清华大学学报(自然科学版) . 2005(03)
地震液化区分布范围对地面大位移的影响 [J]. 刘汉龙,高玉峰,朱伟. 河海大学学报(自然科学版) . 2001(05)
粉细砂层盾构隧道地基的地震液化判别 [J]. 宫全美,周顺华,王炳龙,方卫民. 铁道学报 . 2000(S1)
大地震作用下构造物、地基与流体协同变形分析 [J]. 刘汉龙,周健. 水利学报 . 1999(09)
大型沉箱式码头岸壁地震反应分析 [J]. 刘汉龙,井合进,一井康二. 岩土工程学报 . 1998(02)
砂土液化后大变形的物理机制与本构模型研究 [D]. 王刚. 清华大学 2005
地震液化引起的地面大变形试验研究 [D]. 周云东. 河海大学 2003
中国土木工程学会第九届土力学及岩土工程学术会议论文集[M]. 清华大学出版社 , , 2003
Assessment of liquefaction potential based on peak ground motion parameters [J] . Rolando P. Orense. Soil Dynamics and Earthquake Engineering . 2005 (3)
Computational modeling of cyclic mobility and post-liquefaction site response [J] . Ahmed Elgamal,Zhaohui Yang,Ender Parra. Soil Dynamics and Earthquake Engineering . 2002 (4)
Methodology for liquefaction hazard studies: new tool and recent applications [J] . O. Monge,D. Chassagneux,P. Mouroux. Soil Dynamics and Earthquake Engineering . 1998 (7)
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