首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2009 >RESEARCH AND DEVELOPMENT ON NO-MOVING-PART VALVES USING ENHANCEMENT
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RESEARCH AND DEVELOPMENT ON NO-MOVING-PART VALVES USING ENHANCEMENT

机译:增强型无动阀的研究与开发

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This study characterizes and analyzes the performances of micro diffusersozzles with six types of enhancement structures. The pressure drops across the designed micro nozzles/diffusers are found to be increased considerably when the obstacle and fin structure are added. Further, the micro nozzle/diffuser having added circular area reveals the lowest pressure drop, owing to the hydraulic diameter is increased by circular area and lower interface friction. The maximum improvement of the loss coefficient ratio is about 16 % for an added 3-fin structure operated at a Reynolds number around 70. Upon this situation, the static rectification efficiency improves 4.43 times than the conventional nozzle/diffuser. Experimental results indicate the performance peaks at a Reynolds number around 70, and an appreciable decline is encountered when the Reynolds number is reduced. It is due to the efficiency ratio of conventional micro nozzle/diffuser significant increases with the Reynolds number.
机译:这项研究表征和分析具有六种增强结构的微扩散器/喷嘴的性能。当添加障碍物和散热片结构时,发现跨设计的微型喷嘴/扩散器的压降会大大增加。此外,具有圆形面积的微型喷嘴/扩散器显示出最低的压降,这是由于通过圆形面积增加了液压直径并降低了界面摩擦。对于以约70的雷诺数工作的附加3翅片结构,损耗系数比的最大改善约为16%。在这种情况下,静态整流效率比传统的喷嘴/扩散器提高4.43倍。实验结果表明,在雷诺数约为70时性能达到峰值,并且当雷诺数减小时会遇到明显的下降。这是由于常规的微型喷嘴/扩散器的效率比随雷诺数的增加而显着增加。

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