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掘进巷道风流热环境的数值模拟
引用本文:高建良,魏平儒.掘进巷道风流热环境的数值模拟[J].煤炭学报,2006,31(2):201-205.
作者姓名:高建良  魏平儒
作者单位:河南理工大学 安全科学与工程学院, 河南 焦作,454000
基金项目:河南省自然科学基金资助项目(0311051900),河南省高校杰出科研人才创新工程项目(2004KYCX005),教育部留学回国人员科研启动基金资助项目,河南理工大学博士基金资助项目(B0204)
摘    要:用三维k-ε紊流模型模拟了压入式局部通风掘进工作面风流与巷道围岩的热交换过程以及巷道壁面水分和风流之间的热湿交换.得出掘进工作面风流温度和湿度的分布是相似的, 阐明了从工作面壁面散发显热和潜热随时间的变化规律及其与湿度系数的关系,即湿度系数越大,潜热热流密度越大,显热热流密度越小,总热流密度随湿度系数的增大而增加.分析了掘进巷道周围岩石的温度分布和变化规律,壁面换热系数分布不均匀对壁面附近岩石温度分布有很大影响,随着向围岩内部的深入,围岩温度趋于均匀分布.

关 键 词:掘进巷道  风流  热传递  质量传递  显热  潜热  
文章编号:0253-9993(2006)02-0201-05
收稿时间:12 19 2005 12:00AM
修稿时间:2005年12月19

Numerical simulation of the thermal environment at working face of diving airway
GAO Jian-liang,WEI Ping-ru.Numerical simulation of the thermal environment at working face of diving airway[J].Journal of China Coal Society,2006,31(2):201-205.
Authors:GAO Jian-liang  WEI Ping-ru
Affiliation:School of Safety Science and Engineering, Henan Polytechnic University, Jiaozuo 454000, China
Abstract:The 3-dimensionalk-εturbulent flow model was used to simulate heat-and mass-transfer in a heading face with forcing auxiliary ventilation system. The distributions of air temperature is  similar to that of moisture content in the locally ventilated working face,and the variations in sensible heat and latent heat from the surface of the roadway into the working face with time and wetness factors were analyzed,  with the increase of wetness factor, latent heat flux increases, sensible heat flux decreases, and the total heat flux increases.The  temperature distribution in the strata rock and its variation with the elapsed time at different wetness factors were discussed,The non-uniform distribution of heat transfer coefficient on rock surface has a large effect on the rock temperature distribution near airway surface. As the location goes deeper into the surrounding strata from the roadway surface, the unever distribution effect of rock temperature diminishes and approaches an even distribution gradually.
Keywords:diving airway  air flow  heat-transfer  mass-transfer  sensible heat  latent heat
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