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吸水口前自由表面旋涡的LBM模拟 被引量:6
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作者 陈红勋 郭加宏 +1 位作者 胡雷 张睿 《水动力学研究与进展(A辑)》 CSCD 北大核心 2010年第5期676-682,共7页
作者采用单相自由面格子Boltzmann模型,数值模拟了水槽底部吸水装置在科氏力诱导下自由表面旋涡的生成和演化过程。计算结果表明本文采用的方法能够较好地捕捉自由表面旋涡流动的大幅度变化的气液两相界面,同时通过对自由表面旋涡生成... 作者采用单相自由面格子Boltzmann模型,数值模拟了水槽底部吸水装置在科氏力诱导下自由表面旋涡的生成和演化过程。计算结果表明本文采用的方法能够较好地捕捉自由表面旋涡流动的大幅度变化的气液两相界面,同时通过对自由表面旋涡生成与演化过程中不同水平面的速度矢量分布,切向速度、径向速度、环量以及涡核半径的变化规律的分析,说明计算结果与实验结果是一致的。 展开更多
关键词 吸水口 自由表面旋涡 科氏力 格子BOLTZMANN方法 数值模拟
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Lattice Solid/Boltzmann Microscopic Model to Simulate Solid/Fluid Systems——A Tool to Study Creation of Fluid Flow Networks for Viable Deep Geothermal Energy 被引量:5
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作者 Peter Mora Yucang Wang Fernando Alonso-Marroquin 《Journal of Earth Science》 SCIE CAS CSCD 2015年第1期11-19,共9页
SUMMARY: Realizing the potential of geothermal energy as a cheap, green, sustainable resource to provide for the planet's future energy demands that a key geophysical problem be solved first: how to develop and mai... SUMMARY: Realizing the potential of geothermal energy as a cheap, green, sustainable resource to provide for the planet's future energy demands that a key geophysical problem be solved first: how to develop and maintain a network of multiple fluid flow pathways for the time required to deplete the heat within a given region. We present the key components for micro-scale particle-based numerical modeling of hydraulic fracture, and fluid and heat flow in geothermal reservoirs. They are based on the latest developments of ESyS-Particle--the coupling of the lattice sofid model (LSM) to simulate the nonlinear dynamics of complex solids with the lattice Boltzmann method (LBM) applied to the nonlinear dynamics of coupled fluid and heat flow in the complex solid-fluid system. The coupled LSM/LBM can be used to simulate development of fracture systems in discontinuous media, elastic stress release, fluid injection and the consequent slip at joint surfaces, and hydraulic fractur- ing; heat exchange between hot rocks and water within flow pathways created through hydraulic fracturing; and fluid flow through complex, narrow, compact and gouge- or powder-f'flled fracture and joint systems. We demonstrate the coupled LSM/LBM to simulate the fundamental processes listed above, which are all components for the generation and sustainability of the hot-fractured rock geothermal energy fracture systems required to exploit this new green-energy resource. 展开更多
关键词 lattice Boltzmann particle-fluid interaction geothermal energy coupled lattice solid/lattice boitzmann model discrete element method lattice solid model.
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