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吸收式制冷机用高效传热管的最新进展 被引量:4
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作者 周启瑾 《制冷技术》 2002年第4期24-27,共4页
本文主要介绍了日本古河电气公司最新开发的用于吸收式制冷机的蒸发器和吸收器中的高效传热管,这些管的外表面有低而密的翅。另外在这些管的内表面都有凸缘,使蒸发传热系数和吸收传热系数均有很大的提高。使用这些新开发的高效传热管后... 本文主要介绍了日本古河电气公司最新开发的用于吸收式制冷机的蒸发器和吸收器中的高效传热管,这些管的外表面有低而密的翅。另外在这些管的内表面都有凸缘,使蒸发传热系数和吸收传热系数均有很大的提高。使用这些新开发的高效传热管后可使吸收式制冷机的能效比提高很多,有利于推广使用吸收式制冷机。 展开更多
关键词 吸收式制冷机 传热 蒸发器 吸收 蒸发传热系数 吸收传热系数 能效比
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Effects of thermal transport properties on temperature distribution within silicon wafer
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作者 王爱华 牛义红 +1 位作者 陈铁军 P.F.HSU 《Journal of Central South University》 SCIE EI CAS 2014年第4期1402-1410,共9页
A combined conduction and radiation heat transfer model was used to simulate the heat transfer within wafer and investigate the effect of thermal transport properties on temperature non-uniformity within wafer surface... A combined conduction and radiation heat transfer model was used to simulate the heat transfer within wafer and investigate the effect of thermal transport properties on temperature non-uniformity within wafer surface. It is found that the increased conductivities in both doped and undoped regions help reduce the temperature difference across the wafer surface. However, the doped layer conductivity has little effect on the overall temperature distribution and difference. The temperature level and difference on the top surface drop suddenly when absorption coefficient changes from 104 to 103 m-1. When the absorption coefficient is less or equal to 103 m-1, the temperature level and difference do not change much. The emissivity has the dominant effect on the top surface temperature level and difference. Higher surface emissivity can easily increase the temperature level of the wafer surface. After using the improved property data, the overall temperature level reduces by about 200 K from the basis case. The results will help improve the current understanding of the energy transport in the rapid thermal processing and the wafer temperature monitor and control level. 展开更多
关键词 silicon wafer thermal transport properties temperature distribution radiation heat transfer
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