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  • 匿名
关注:1 2013-05-23 12:21

求翻译:Bejan[145-146]曾对压缩式制冷系统蒸发、冷凝侧最佳传热面积匹配作了分析。对于实际的热电制冷系统,冷、热两侧总传热面积是有一定限制的,因此有限面积的分配比例对系统性能有着直接的影响。寻求冷、热侧有限传热面积的最佳匹配对优化系统设计,提高系统性能有着实际意义是什么意思?

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Bejan[145-146]曾对压缩式制冷系统蒸发、冷凝侧最佳传热面积匹配作了分析。对于实际的热电制冷系统,冷、热两侧总传热面积是有一定限制的,因此有限面积的分配比例对系统性能有着直接的影响。寻求冷、热侧有限传热面积的最佳匹配对优化系统设计,提高系统性能有着实际意义
问题补充:

  • 匿名
2013-05-23 12:21:38
evaporation bejan [145-146] had compression refrigeration system, the condensing side heat transfer area match made. For practical thermoelectric refrigeration system, cold, heat on both sides of the total heat transfer area is limited, so the allocation of the limited area has a direct impact on sy
  • 匿名
2013-05-23 12:23:18
Bejan [145 - 146] had been in the compression refrigeration system evaporation, condensation heat transfer surface area side best match for the analysis. For the actual of the thermoelectric cooling system and hot and cold sides total heat transfer surface area there will be constraints limited the
  • 匿名
2013-05-23 12:24:58
正在翻译,请等待...
  • 匿名
2013-05-23 12:26:38
Bejan[145-146] had compression refrigeration system of evaporation, condensation on side matched the best heat transfer areas analysed. Real thermoelectric cooling systems, cold, hot side is the total heat transfer area is limited, finite area ratio has a direct impact on system performance. Seeking
  • 匿名
2013-05-23 12:28:18
正在翻译,请等待...
 
 
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