Acta Geotechnica - The reclamation of land filled with high water content dredged clays is an important geological and geo-environmental issue. When designing such reclaimed land, the yield... 相似文献
In thermal-related engineering such as thermal energy structures and nuclear waste disposal, it is essential to well understand volume change and excess pore water pressure buildup of soils under thermal cycles. However, most existing thermo-mechanical models can merely simulate one heating–cooling cycle and fail in capturing accumulation phenomenon due to multiple thermal cycles. In this study, a two-surface elasto-plastic model considering thermal cyclic behavior is proposed. This model is based on the bounding surface plasticity and progressive plasticity by introducing two yield surfaces and two loading yield limits. A dependency law is proposed by linking two loading yield limits with a thermal accumulation parameter nc, allowing the thermal cyclic behavior to be taken into account. Parameter nc controls the evolution rate of the inner loading yield limit approaching the loading yield limit following a thermal loading path. By extending the thermo-hydro-mechanical equations into the elastic–plastic state, the excess pore water pressure buildup of soil due to thermal cycles is also accounted. Then, thermal cycle tests on four fine-grained soils (natural Boom clay, Geneva clay, Bonny silt, and reconstituted Pontida clay) under different OCRs and stresses are simulated and compared. The results show that the proposed model can well describe both strain accumulation phenomenon and excess pore water pressure buildup of fine-grained soils under the effect of thermal cycles.
Natural Hazards - This work attempted to reveal the geometric and kinematic characteristics of a loess landslide that occurred at Zaoling, southern Shanxi Province, China, on March 15, 2019. Based... 相似文献
基于山东数字化地震台站的震相资料和胶东半岛地区的速度结构模型,利用双差定位方法对2017年2月14日开始的山东长岛地区双震群进行重新定位,结果显示主震群余震序列分布沿一级断裂分布,震群位置比较集中。并利用CAP方法(Cut and Paste)对长岛海域2个震群中的几个较大地震进行震源机制解的反演分析,其中,2017年3月3日的主震震源机制解的节面Ⅰ走向为320°,倾角57°,滑动角为12°;节面Ⅱ走向为223.4°,倾角80°,滑动角为146.4°;主震的最佳拟合深度在9.7km,6次较大地震的节面Ⅰ走向也基本一致。 相似文献