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电力半导体散热器热阻测试中的平均值测量法 被引量:4
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作者 韩晓东 陆正柏 杨琨 《电力电子技术》 CSCD 北大核心 2009年第9期83-84,共2页
在电力半导体用散热器热阻测试中,热阻值的大小除了与其自身结构﹑冷却介质和温度测量有关外,耗散功率的产生、测量和计算也是其中一个重要因素,并且,直接测量方法的测试结果比间接方法更为准确。利用GB/T8446.2-2004中规定的方法等效变... 在电力半导体用散热器热阻测试中,热阻值的大小除了与其自身结构﹑冷却介质和温度测量有关外,耗散功率的产生、测量和计算也是其中一个重要因素,并且,直接测量方法的测试结果比间接方法更为准确。利用GB/T8446.2-2004中规定的方法等效变换,通过推导给出了简约计算公式。其结果可较方便地用于热阻测试,减少了中间测试和计算环节,提高了散热器热阻参数的测试效率及准确度。在实际测试应用时,有效快捷,具有较高的实用性。 展开更多
关键词 散热器 测试/热阻 平均值
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Comparison of Testing Clothing Thermal Resistance on 2 Thermal Manikins
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作者 谌玉红 姜志华 +2 位作者 吴志孝 Ingvar Holmer Kalev Kuklane 《Journal of Donghua University(English Edition)》 EI CAS 2003年第1期115-119,共5页
The paper compares clothing thermal resistance of the same ensemble tested by different thermal manikins in different laboratories. It also examines the consistence of the two groups of total thermal resistance by Pai... The paper compares clothing thermal resistance of the same ensemble tested by different thermal manikins in different laboratories. It also examines the consistence of the two groups of total thermal resistance by Paired-Sample T Test method, which proves that there is no remarkable difference in testing results under the same experiment method and requirement. It is of great significance in promoting the application of thermal manikin testing technology and academic exchange among different institutes. 展开更多
关键词 thermal manikin thermal resistance COMPARISON
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Thermal transfer experimental research of a horizontal tube evaporative condenser
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作者 TU Ai-min, ZHU D.S. 《Journal of Chemistry and Chemical Engineering》 2007年第1期75-81,共7页
The thermal resistances distribution in different wet-bulb temperatures, air velocities and spraying water densities were achieved by the experimental test. The fluctuation of the water film convection and the water-a... The thermal resistances distribution in different wet-bulb temperatures, air velocities and spraying water densities were achieved by the experimental test. The fluctuation of the water film convection and the water-air interfacial thermal resistance were reviewed especially. In the distribution of thermal resistance, the rank of the thermal resistance proportion (from max to min) is air flow heat transfer resistance, heat transfer resistance between refrigerant and wall, water film convection resistance and wall heat transfer resistance. When the heat flux is constant, the total resistance lowers nearly along with the increasing of air flow and water spray density. But there are a best air flow value of 2.98 m/s and a best spray water density of 0.064 kg/(m ·s) respectively, if continue to increase them, condensation performance is not significantly improved any more. The test results are available to improve the evaporative condenser performance and the designing lever. 展开更多
关键词 thermal transfer resistance horizontal tube heat exchanger evaporative condenser
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