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1)  mining [英]['maɪnɪŋ]  [美]['maɪnɪŋ]
采动
1.
The Application of Mining Deformatim Simulation Test Desk on Foundation SimulationTest;
采动变形模拟试验台在地基模拟试验中的应用
2.
Because of the influence of mining, the permeability of footwall strata varies obviously.
由于受采动的影响 ,煤层岩层的渗透能力会发生明显的变化 ,有时会导致承压水突入采空区。
3.
The time space regularity of overlying strata movement and damage induced by coal mining was studied using the dynamic mechanics model.
采用采动岩体动态力学模型,对采动引起的覆岩移动破坏的时空规律进行了研究,结合兴隆庄矿5306工作面的地质、开采条件,对采动引起的断裂带发育发展规律,岩体内部离层发生发展规律、地表下沉规律等问题进行了分析,并对观测结果作出了较以前的各种理论模型更为符合实际的解释,该模型可在实际工作中得到很好地应用。
2)  mining coal
采动煤体
1.
Evolution law of mining coal permeability by real-time tracer monitoring system;
采动煤体渗透率示踪监测及演化规律
3)  mining activity
采矿活动
1.
The paper introduces several mining area examples of Chinese and abroad,pointing out the contamination of ecological environment in the mining activity.
通过对国内、国外几个矿区的实例介绍,对历史上采矿活动中对生态环境的污染作了简要的叙述。
4)  mining-induced stress
采动应力
1.
The overlapping of tectonic stress,rock mass energy concentration and mining-induced stress is the basic cause for coal and gas outbursts.
构造应力、能量集中与采动应力叠加,是煤瓦斯突出的根本原因,是现今构造活动的表现,由现今地壳失稳所致,属于地质力学问题。
2.
The abutment pressure which is representative of mining-induced stress is the main inducement of forming water flowing fracture zone and making activation of fault.
相关模拟结果表明,采场中煤层的开采与断层破裂带之间是相互影响的,以支承压力为代表的采动应力是底板破坏形成导水裂隙带及断层"活化"突水的一个主要诱因,而断层的存在也使得工作面与断层带范围内的围岩应力更加集中,增大了底板破坏突水的危险性。
5)  mining-induced fracture
采动裂隙
1.
Based on engineering example of protective layer mining in Hongling coal mine of Shenyang Coal Group,the mining-induced fracture distribution has been studied.
以沈煤集团红菱煤矿保护层开采为工程实例,通过开采11#煤层,对存在煤与瓦斯突出的7#煤层和12#煤层进行卸压,研究保护层开采后采动裂隙分布规律。
2.
a spectial computer program FIMAGE for the image analysis of mining-induced fracture has been drawn up and the program can be used to make quantitative statistics of the experiment results of the mining-induced fracture.
在分析计算机图像处理的步骤与采动裂隙二值化图像统计算法的基础上,编制了采动裂隙图像处理程序FIMAGE,应用该程序可对覆岩采动裂隙模型实验结果进行定量统计。
3.
Rock mass deformation and failure in working face caused by underground mining lead to mining-induced fracture,which is the source of a series of mine disasters.
地下矿床开采引起采场围岩变形破坏产生采动裂隙,采动裂隙是矿山一系列灾害的根源,研究矿山采动裂隙岩体的地球物理场特征,提出可行的地球物理方法对裂隙岩体实施高精度高分辨率探测,对于防治矿山灾害发生,保障矿山安全,具有重要的理论意义和实际应用价值。
6)  mining subsidence area
采动区
1.
Mechanism study on subsoil-strap footing-framework interaction in mining subsidence area;
采动区地基、条形基础与框架结构共同作用机理研究
2.
Study on reliability and anti-deformation of bridge in mining subsidence area;
采动区桥体可靠性分析及抗变形技术研究
3.
On the basis of the regularity of surface dynamic deformation in underground mining,this paper models by finite element software the internal force variation law of steel column-heels in the process in mining subsidence area.
以煤矿采动采动过程地表的动态变形规律为基础,采用有限元软件模拟了地表钢框架结构柱脚在整个地表动态变形过程中的内力变化规律。
补充资料:因水火风动故地动
【因水火风动故地动】
  经云:此阎浮提地,南北阔二万一千由旬,东西阔七千由旬,厚六万八千由旬。地下有水,厚八万四千由旬。水下有火,厚八万四千由旬。火下有风,厚六万八千由旬。风下有金刚轮,过去诸佛舍利,咸在其中。或有时大风忽动,火亦随动。火既动已,水复随动。水既动已,地即随动。故云因水火风动故地动。(梵语阎浮提,华言胜金洲。梵语由旬,华言限量,或四十里,或六十、八十里也。)
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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