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我国煤矿顶板运动型矿震及诱发灾害分类、预测与防控 被引量:26
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作者 朱斯陶 刘金海 +8 位作者 姜福兴 尚晓光 孙希奎 张修峰 宋大钊 张明 王爱文 谢华东 曲效成 《煤炭学报》 EI CAS CSCD 北大核心 2022年第2期807-816,共10页
针对我国煤矿顶板运动型矿震及诱发灾害频发的现状,采用现场调查、理论分析、现场监测等方法,对顶板运动型矿震及诱发灾害发生机制、预测和工程分类技术进行了研究,得到以下主要结论:(1)基于关键层运动模式将顶板运动型矿震分为关键层... 针对我国煤矿顶板运动型矿震及诱发灾害频发的现状,采用现场调查、理论分析、现场监测等方法,对顶板运动型矿震及诱发灾害发生机制、预测和工程分类技术进行了研究,得到以下主要结论:(1)基于关键层运动模式将顶板运动型矿震分为关键层断裂型、关键层回转型和关键层滑移型3类矿震,建立了基于“关键层运动状态”的顶板运动型矿震的能量预测模型,分别提出了3类顶板运动型矿震能量的计算方法;(2)基于顶板运动型矿震诱发井下和地面灾害机制,建立了顶板运动型矿震诱发井下冲击地压和地面建筑物震动损害的一体化力学模型和评估方法,为煤矿顶板运动型矿震诱发灾害的预测提供了基础;(3)提出了分类防控、源头减震、吸能抗震协同防控顶板运动型矿震的理念,形成了以低矿震能量、低围岩密度和高抗震能力为基础的煤矿顶板运动型矿震及诱发灾害防控体系,开展了地面直井压裂源头防控顶板运动型矿震的技术试验研究;(4)根据工作面在压裂区开采期间的矿压显现和相似材料模拟试验结果,大范围压裂措施能够降低大能量矿震发生频次,但也可能改变关键层运动模式,甚至增大井下矿压显现强度。 展开更多
关键词 坚硬顶板 矿震 冲击地压 矿震分类 矿震预测 地面震动损害 地面压裂
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Dynamic response characteristics of super high-rise buildings subjected to long-period ground motions 被引量:4
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作者 陈清军 袁伟泽 +1 位作者 李英成 曹丽雅 《Journal of Central South University》 SCIE EI CAS 2013年第5期1341-1353,共13页
Spectrum characteristics of different types of seismic waves and dynamic response characteristics of super high-rise building structures under long-period ground motions were comparatively analyzed. First, the ground ... Spectrum characteristics of different types of seismic waves and dynamic response characteristics of super high-rise building structures under long-period ground motions were comparatively analyzed. First, the ground response wave (named LS-R wave) of a soft soil site with deep deposit, taking long-period bedrock seismic record as input, was calculated by wave propagation method. After that, a TOMAKOMAI station long-period seismic record from the Tokachi-Oki earthquake and conventional E1-Centro wave were also chosen. Spectrum characteristics of these waves were analyzed and compared. Then, a series of shaking table tests were performed on a 1:50 scale super high-rise structural model under these seismic waves. Furthermore, numerical simulation of the prototype structure under these excitations was conducted, and structure damages under different intensive ground motions were discussed. The results show that: 1) Spectrum characteristics of ground response wave are significantly influenced by soft soil site with deep deposit, and the predominant period has an increasing trend. 2) The maximum acceleration amplification factor of the structure under the TOM wave is two times that under the E1-Centro wave; while the maximum displacement response of the structure under the TOM wave is 4.4 times that under the E1-Centro wave. Long-period ground motions show greater influences on displacement responses than acceleration responses for super high-rise building structures. 3) Most inelastic damage occurs at the upper 1/3 part of the super high-rise building when subjected to long-period ground motions. 展开更多
关键词 long-period ground motion super high-rise building shaking table model test numerical simulation spectrumcharacteristic analysis
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