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首页> 外文期刊>International Journal of Heat and Mass Transfer >Cooling performance evaluation for double-layer configuration of air-cooled heat exchanger
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Cooling performance evaluation for double-layer configuration of air-cooled heat exchanger

机译:冷却热交换器双层配置的冷却性能评价

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摘要

For large-scale natural draft dry cooling system in thermal power plants, the double-layer air-cooled heat exchanger is recommended thanks to its lower water flow resistance, while the cooling performance is rarely reported so far. Based on the typical natural draft dry cooling system with double-layer air-cooled heat exchanger, the numerical modeling and solution apporaches are developed, by which the representative variable fields and overall cooling performance are obtained and compared with the conventional system. The results show that at the wind speeds of 4 m/s and 8 m/s, the frontal and middle sectors of lower layer show better heat transfer performances than upper layer, especially for the middle sector. At high wind speeds, the frontal sector of upper layer presents a better performance than that of lower layer, but the cooling performances of the middle sectors for both layers get worse with the lower layer showing a slight recovery. The rear sector of lower layer has a much superior cooling performance to upper layer. With increased wind speed, the cooling performance difference of both layers varies little for the middle front sector. As for the middle and middle rear sectors, the performance gap between two layers increases greatly from 4 m/s to 8 m/s, but changes little at high wind speeds. For the rear sector, the difference between both layers stands always prominent at all wind speeds. Compared with the conventional system, the cooling performance gets improved in the absence of winds and at the wind speeds of 4 m/s and 8 m/s, but deteriorated a little at high wind speeds, so this innovative system could be recommended for power plants in arid places with weak wind all year round.
机译:对于热电厂中的大型天然干燥冷却系统,建议使用较低的水流动阻力,推荐双层风冷热交换器,而迄今为止很少报道冷却性能。基于具有双层空气冷却热交换器的典型天然干燥冷却系统,开发了数值建模和解决方案,通过该型号和溶液ackoChes获得了代表性的变量和整体冷却性能,并与传统系统进行比较。结果表明,在4米/秒和8米/秒的风速下,下层的正面和中间扇区比上层显示出更好的传热性能,特别是对于中间部门。在高风速下,上层的正面扇区比下层的性能更好,但两层中间扇区的冷却性能与下层显示出略微恢复。下层的后扇区对上层具有卓越的冷却性能。随着风速度的增加,两个层的冷却性能差异对于中间部门而言几乎不变。至于中间后部和中间后部,两层之间的性能间隙从4米/秒增加到8米/秒,但在高风速下变化很小。对于后部扇区,两层之间的差异总是突出所有风速。与传统系统相比,冷却性能在没有风的情况下得到改善,并且在4米/秒和8米/秒的风速下变化,但在高风速下劣化,因此可以推荐这种创新系统供电整年疲软的干旱地区的植物。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第4期|119396.1-119396.17|共17页
  • 作者单位

    Key Laboratory of Power Station Energy Transfer Conversion and System of Ministry of Education School of Energy Power and Mechanical Engineering North China Electric Power University Beijing 102206 China;

    Key Laboratory of Power Station Energy Transfer Conversion and System of Ministry of Education School of Energy Power and Mechanical Engineering North China Electric Power University Beijing 102206 China;

    Key Laboratory of Power Station Energy Transfer Conversion and System of Ministry of Education School of Energy Power and Mechanical Engineering North China Electric Power University Beijing 102206 China;

    Key Laboratory of Power Station Energy Transfer Conversion and System of Ministry of Education School of Energy Power and Mechanical Engineering North China Electric Power University Beijing 102206 China;

    Key Laboratory of Power Station Energy Transfer Conversion and System of Ministry of Education School of Energy Power and Mechanical Engineering North China Electric Power University Beijing 102206 China;

    Key Laboratory of Power Station Energy Transfer Conversion and System of Ministry of Education School of Energy Power and Mechanical Engineering North China Electric Power University Beijing 102206 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Natural draft dry cooling system; Air-cooled heat exchanger; Dry cooling tower; Flow and heat transfer; Numerical simulation;

    机译:天然干燥冷却系统;风冷换热器;干冷塔;流动和传热;数值模拟;

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