文章摘要
实施降温措施的采掘工作面空气处理过程分析
Analysis of the air handling process in extracting coal face with cooling system
  
DOI:
中文关键词: 采掘工作面;空冷器;安装位置;送风方式;空气处理过程
英文关键词: extracting coal face; air cooler; installation position; air supply mode; air handling process
基金项目:国家自然科学基金资助项目(51134005);湖南省科技计划资助项目(2012FJ2001)
作者单位
杨威1,刘何清1,2,熊慧灵1,李伊洁1 1.湖南科技大学 能源与安全工程学院,湖南 湘潭 411201;2.湖南科技大学 煤矿安全开采湖南省重点实验室,湖南 湘潭 411201 
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中文摘要:
      针对高温矿井采掘工作面空冷器常见安装位置和冷风输送方式,分析了冷风流自空冷器出口后沿途发生的变化及其对应的冷风流状态参数变化过程;分析了各空冷器安装位置、送风方式下引起冷风流状态变化的原因;提出了各空冷器安装位置、送风方式下确保工作面设计状态的空冷器出口冷风参数确定路径及装机冷量的构成;定性得出将空冷器距工作面一定距离安装、采用隔湿风筒输送冷风的方式较优.得出的结论对指导高温矿井降温系统设计有一定的指导意义.
英文摘要:
      According to the common installation position and the cold air conveying mode in the extracting coal face of high temperature mine, this paper analyzes the cold air changing process when it is translated to extracting coal face. It also analyzes the changing process of colder airflow status parameters. Then, the reason of change in cold airflow status with different installation position and cold air conveying mode is analyzed in detail. In order to achieve the optimal cooling solution in different installation positions of air cooler and air supply mode, the paper has taken the following steps: firt of all, it proposes the calculation method of air cooler exit parameter under different conditions. Calculation result must ensure the temperature of extracting coal face to meet the design requirement. Secondly, every part which constitutes the cooling capacity of air cooler is introduced under different cooling schemes. Thirdly, it qualitatively analyzes the size of cooling capacity needed. Results show that it is the optimum cooling solution when air cooler is far from extracting coal face and colder air is translated by saliva isolation. It can say that the above researches help to provide a guide for high temperature mine cooling system design.
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