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Numerical simulation of heat release performance of filling body under condition of heat extracted by fluid flowing in buried tube 被引量:6
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作者 ZHANG Xiao-yan LIU Li +2 位作者 LIU Lang LIU Lu JIA Yu-hang 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第8期2160-2174,共15页
It is the basic requirement of the synergetic exploitation of deep mineral resources and geothermal resources to arrange the heat transfer tube in filling body. The heat release performance of filling body directly im... It is the basic requirement of the synergetic exploitation of deep mineral resources and geothermal resources to arrange the heat transfer tube in filling body. The heat release performance of filling body directly impacts on the exploiting efficiency of geothermal energy. Based on heat transfer theory, a three-dimensional unsteady heat transfer model of filling body is established by using FLUENT simulation software. Taking the horizontal U-shaped buried pipe as research object, the variation of temperature field in filling body around buried pipe is analyzed during the heat release process of filling body;the initial temperature of filling body, the diameter of buried pipe, the inlet temperature and inlet velocity of heat transfer fluid influencing of coupling heat transfer, which exists between heat transfer fluid and surrounding filling body within a certain axial distance of buried tube, and influencing of temperature difference between inlet and outlet of heat transfer fluid and on heat transfer performance of filling body are also discussed. It not only lays a theoretical foundation for the synergetic exploitation of mineral resources and geothermal energy in deep mines, but also provides a reference basis for the arrangement of buried pipes in filling body as well as the selection of working conditions for heat transfer fluid. 展开更多
关键词 filling body buried pipe heat transfer fluid heat release performance
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使用碳酸钙防治阿巴拉契亚煤田煤肺病技术可行性讨论(英文) 被引量:1
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作者 Yi Luo Xi Huang 《西安科技大学学报》 CAS 2014年第6期761-768,共8页
煤肺病是世界煤炭工业最严重的职业病。通常煤肺病的成因取决于工作环境中可吸尘浓度及工人吸尘时间。一项最近的研究表明,煤尘的毒性由煤的化学成份決定。化学成分的差异是导致美国东部煤田煤肺病的发病率高于美国西部煤田的主要原因... 煤肺病是世界煤炭工业最严重的职业病。通常煤肺病的成因取决于工作环境中可吸尘浓度及工人吸尘时间。一项最近的研究表明,煤尘的毒性由煤的化学成份決定。化学成分的差异是导致美国东部煤田煤肺病的发病率高于美国西部煤田的主要原因。在阿巴拉契亚(东部)煤成份中,生物可用铁(bio-available iron,BAI)和石英成分是导致煤肺病的两大直接因素。美国西部煤所含碳酸钙有效地阻止了煤中的铁向生物可用铁的转化过程,从而减少了西部煤田煤肺发病率,此发现能合理地解释阿巴拉契亚与西部煤田煤肺发病率的巨大区域差别。根据该发现,我们提议除继续使用传统的降尘技术外,应把减少及消除煤尘的毒性作为开发防治煤肺病技术的新方向。为了遏制并扭转阿巴拉契亚煤田近期煤肺发病率回升的趋势,作者提出了将碳酸钙引入含生物可用铁的煤或煤尘的区域性非传统防煤尘新技术并对其进行了可行性讨论。 展开更多
关键词 煤肺病防治技术 煤尘毒性 生物可用铁 碳酸钙
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Dimensionless model to determine spontaneous combustion danger zone in the longwall gob
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作者 ZHANG Xin-hai DENG Jun WEN Hu 《西安科技大学学报》 CAS 北大核心 2011年第6期649-654,共6页
According to spontaneous combustion propensity,the longwall gob is divided into three zones,including heat dissipation zone,self-heating zone and the choking zone.Only in the self-heating zone can temperature of coal ... According to spontaneous combustion propensity,the longwall gob is divided into three zones,including heat dissipation zone,self-heating zone and the choking zone.Only in the self-heating zone can temperature of coal rise due to oxidation.Studying the distribution of the "Three Zones" in gob is important for predicting and preventing spontaneous combustion in coalmine.In normal mining operations,temperature of coal is roughly constant.The process of mass transfer in the gob is considered to be steady.Based on mass conservation,gas species conservation,darcy's law,Ficks law of diffusion and coal oxidation 1-grade reaction rule,governing equation for air leakage intensity and species concentration are deduced.With critical value of coal spontaneous combustion and the size of longwall workface as basic dimension,a dimensionless steady coupled model of air flow diffusion and chemical reaction in loose coal of Fully Mechanized Top-Coal Caving Mining Workface(FMTCCMW) is setup.By solving the model numerically,regulation of three zones' distribution and spontaneous combustion in the gob can be obtained.The results can be easily popularized to prediction of spontaneous combustion in other coalmines' longwall gob. 展开更多
关键词 fully mechanized top-coal caving workface spontaneous combustion dimensionless model
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