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Lattice Boltzmann Simulation for Complex Flow in a Solar Wall

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【作者】 陈柔邵九姑郑友取俞慧丹许友生

【Author】 CHEN Rou 1,2 Shao Jiu-Gu 1 ZHENG You-Qu 3 YU Hui-Dan 2,4 and XU You-Sheng 1,3, 1 Department of Physics,Zhejiang Normal University,Jinhua 321004,China 2 Department of Mechanical Engineering,Indiana University-Purdue University Indianapolis,Indianapolis,IN 46202,USA 3 School of Light Industry,Zhejiang University of Science and Technology,Hangzhou 310023,China 4 College of Metrology & Measurement Engineering,Zhongguo Jiliang University,Hangzhou 310018,China

【机构】 Department of Physics,Zhejiang Normal UniversityDepartment of Mechanical Engineering,Indiana University-Purdue University IndianapolisSchool of Light Industry,Zhejiang University of Science and TechnologyCollege of Metrology & Measurement Engineering,Zhongguo Jiliang University

【摘要】 In this letter,we present a lattice Boltzmann simulation for complex flow in a solar wall system which includes porous media flow and heat transfer,specifically for solar energy utilization through an unglazed transpired solar air collector(UTC).Besides the lattice Boltzmann equation(LBE) for time evolution of particle distribution function for fluid field,we introduce an analogy,LBE for time evolution of distribution function for temperature.Both temperature fields of fluid(air) and solid(porous media) are modeled.We study the effects of fan velocity,solar radiation intensity,porosity,etc.on the thermal performance of the UTC.In general,our simulation results are in good agreement with what in literature.With the current system setting,both fan velocity and solar radiation intensity have significant effect on the thermal performance of the UTC.However,it is shown that the porosity has negligible effect on the heat collector indicating the current system setting might not be realistic.Further examinations of thermal performance in different UTC systems are ongoing.The results are expected to present in near future.

【Abstract】 In this letter,we present a lattice Boltzmann simulation for complex flow in a solar wall system which includes porous media flow and heat transfer,specifically for solar energy utilization through an unglazed transpired solar air collector(UTC).Besides the lattice Boltzmann equation(LBE) for time evolution of particle distribution function for fluid field,we introduce an analogy,LBE for time evolution of distribution function for temperature.Both temperature fields of fluid(air) and solid(porous media) are modeled.We study the effects of fan velocity,solar radiation intensity,porosity,etc.on the thermal performance of the UTC.In general,our simulation results are in good agreement with what in literature.With the current system setting,both fan velocity and solar radiation intensity have significant effect on the thermal performance of the UTC.However,it is shown that the porosity has negligible effect on the heat collector indicating the current system setting might not be realistic.Further examinations of thermal performance in different UTC systems are ongoing.The results are expected to present in near future.

【基金】 Supported by the National Nature Science Foundation of China under Grant Nos. 10932010,11072220,11072229,U1262109,51176172,and 10972208
  • 【文献出处】 Communications in Theoretical Physics ,理论物理通讯(英文版) , 编辑部邮箱 ,2013年03期
  • 【分类号】TK513
  • 【被引频次】2
  • 【下载频次】56
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