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激光微束操纵电介小球的实验研究 被引量:1
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作者 尚鹤岭 李迎军 +1 位作者 王瑞丽 欧家鸣 《物理实验》 2000年第10期16-19,共4页
介绍用几何方法分析、论述激光微束产生捕陷力的原理 ,通过实验的方法研究了激光功率、电介质小球 (微米数量级 )与捕陷力之间的关系 .本文研究的内容为实现对微米量级的生物活细胞、细胞器的捕获、悬浮、分选、操纵以及对染色体的捕捉... 介绍用几何方法分析、论述激光微束产生捕陷力的原理 ,通过实验的方法研究了激光功率、电介质小球 (微米数量级 )与捕陷力之间的关系 .本文研究的内容为实现对微米量级的生物活细胞、细胞器的捕获、悬浮、分选、操纵以及对染色体的捕捉等方面的研究提供了实验数据 . 展开更多
关键词 激光微束 捕陷力 临界速度 电介小球 实验 生物活细胞 细胞器
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CFD modelling of Iongwall goaf gas flow to improve gas capture and prevent goaf self-heating 被引量:1
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作者 REN Ting-xiang 《Journal of Coal Science & Engineering(China)》 2009年第3期225-228,共4页
CFD models have been developed to investigate the Iongwall goaf gas flow patternsunder different mining and geological control conditions.The Iongwall goaf wastreated as porous regions and gas flow was modelled as a m... CFD models have been developed to investigate the Iongwall goaf gas flow patternsunder different mining and geological control conditions.The Iongwall goaf wastreated as porous regions and gas flow was modelled as a momentum sink added to themomentum equation.Gas desorption from the caved goaf and destressed coal seamswithin the mining disturbed area was modelled as additional mass sources in the continuityequation.These CFD models were developed according to specific Iongwall layoutsand calibrated against field monitoring data.Two case studies were presented demonstratingthe application of CFD modelling of goaf gas flow characteristics for improved goafgas capture and the reduction of oxygen ingress into the goaf areas for self-heating prevention.Results from the case studies indicate that the optimum goaf drainage strategywould be a combination of shallow (near the face) and deep holes to improve the overalldrainage efficiency and gas purity.For gassy Iongwall faces retreating against the seam dip,it is recommended to conduct cross-measure roof hole drainage targeting the fracturedzones overlying the return corner,rather than high capacity surface goaf drainage deep inthe goaf. 展开更多
关键词 CFD modelling Iongwall goaf gas goaf drainage self-heating prevention
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