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黄土震陷是常见的地震灾害。历史地震中,黄土震陷常有发生并导致地基沉降、诱发滑坡并造成生命财产损失。通过室内试验研究黄土动荷载残余变形,分析不同因素对黄土震陷的影响,揭示黄土震陷的发生机理,这对于准确评价黄土场地震陷性, 相似文献
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含水量是影响黄土震陷性非常重要的参数。本文以洮河三级阶地上典型的Q3黄土为研究对象,对其震陷性特征进行了全面、系统的研究。通过在20 m深探井中依次取得4 m、8 m、12 m、16 m、20 m处黄土原状试样进行室内试验,得到以下结果:(1)天然黄土存在震陷性随深度增加而逐渐减弱的规律;(2)通过增湿、减湿获得5%,10%,15%和20%四种不同含水量黄土试样,同一深度黄土随着含水量增加其震陷性增长的规律明显;(3)通过实验数据分析得到了含水量对黄土震陷性定量影响规律,并根据其规律给出了不同动应力作用下的黄土震陷临界含水量。 相似文献
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黄土震陷研究及相关问题探讨 总被引:2,自引:0,他引:2
回顾了30多年来关于黄土震陷的研究工作和成果.黄土震陷已为微结构特征、动三轴和现场爆破试验所证实,成为黄土地震工程研究领域的一项重要课题,但仍缺少典型震例,且停留在饱和土理论研究阶段.应用微结构形态学方法表征土体结构性变得困难,土力学方法将是微结构应用于震陷性研究的有效途径.震陷性判定仅是在多个参变量值区间内的确定性判定,概率性震陷预测应得到开展.震陷系数估算多是基于室内试验数据的经验公式或半经验半理论公式,并未完全解决其物理过程和力学机制问题,比如参变量多、计算繁琐和实用性差等,故应从黄土震陷的物理力学机制出发,厘清影响黄土震陷的主导因素及其表征参变量,建立具有物理力学意义的数学理论估算模型.抗震陷处理技术的关键是消除土体的震陷性,并减缓震陷时土与土工结构物的相互作用. 相似文献
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《地震研究》2016,(4)
基于文献史料记载和现场科考成果,考证了黄土地区几次中强以上地震引发的黄土震陷灾害,分析了黄土震陷灾害的破坏模式、发育特征及其形成条件。依据大量不同地区黄土的动三轴试验结果,比较分析了黄土震陷形成的物性指标的区域性变化规律,并进一步研究了震陷临界动应力的影响因素。研究显示,黄土地区的几次中强以上地震的极震区均有黄土震陷事例;黄土震陷的灾害模式可区分为振密型震陷、震陷型滑坡和液化型震陷,并由土性条件、地形地貌和地震动作用形式决定;孔隙比大于0.8时,黄土高原地区的黄土需要考虑不同含水量条件下的震陷性,而黄土高原地区东南部的河南、河北和晋东南地区的黄土则可根据缩限含水量判定其震陷性;临界动应力的大小由黄土的结构强度所主导,临界动应力比与含水量之间存在很好的幂函数关系。 相似文献
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M. N. French R. L. Bras W. F. Krajewski 《Stochastic Environmental Research and Risk Assessment (SERRA)》1992,6(1):27-45
A procedure for short-term rainfall forecasting in real-time is developed and a study of the role of sampling on forecast ability is conducted. Ground level rainfall fields are forecasted using a stochastic space-time rainfall model in state-space form. Updating of the rainfall field in real-time is accomplished using a distributed parameter Kalman filter to optimally combine measurement information and forecast model estimates. The influence of sampling density on forecast accuracy is evaluated using a series of a simulated rainfall events generated with the same stochastic rainfall model. Sampling was conducted at five different network spatial densities. The results quantify the influence of sampling network density on real-time rainfall field forecasting. Statistical analyses of the rainfall field residuals illustrate improvement in one hour lead time forecasts at higher measurement densities. 相似文献
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《地震工程与工程振动(英文版)》2014,(4)
正This journal is established by the Institute of Engineering Mechanics(IEM),China Earthquake Administration,to promote scientific exchange between Chinese and foreign scientists and engineers so as to improve the theory and practice of earthquake hazards mitigation,preparedness,and recovery.To accomplish this purpose,the journal aims to attract a balanced number of papers between Chinese and 相似文献
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George W. Housner 《地震工程与工程振动(英文版)》2008,7(2):I0001-I0001
Destructive earthquakes have caused great damage in China and the United States and collapsing buildings havecaused many deaths and injuries. The field of earthquake engineering studies earthquake hazards, the occurrence ofearthquakes of various magnitudes, the nature of the ground shaking during an earthquake, the vibration of structuresduring earthquakes, the strengthening of existing structures and the design of new structures to be earthquake resistant,and finally, how to cope with earthquake damage and restore a city to normal functioning. Such efforts are in progressin both countries, but unfortunately, the language barrier interferes with the free flow of information between China andthe Untied States. It would be mutually beneficial if some means could be developed to promote the exchangeof information across the Pacific Ocean. This new journal has been established for this purpose and its success willbe an important step in promoting earthquake engineering in China and the United States. 相似文献
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《国际泥沙研究》2014,(4)
正President:Giampaolo Di Silvio,Italy Vice Presidents:Ulrich C.E.Zanke,Germany Zhao-yin Wang,China The World Association for Sedimentation and Erosion Research(WASER),inaugurated on Oct.19,2004,is an independent non-governmental,non-profit organization.The mission of WASER is to promote international co-operation on the study 相似文献
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JianCheng Shi 《中国科学:地球科学(英文版)》2014,57(10):2281-2282
正Global Change includes climate change and other environmental changes caused by the joint interaction among various layers of Earth. From the positive side, global change provides new opportunities to human and other living forms on Earth. In the meantime, it creates tremendous challenges and negative impact. At present, the negative impacts have reached all primary processes of the global ecosystem and every aspect of human society, especially causing degradation of the ecosystem. For instance, intensive deforestation causes decline of biodiversity; global warming causes sea level rise and increases 相似文献