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污泥陶砂声屏障的孔结构设计方法 被引量:1
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作者 郭凯 张再武 +1 位作者 阳晏 丁庆军 《材料导报(纳米与新材料专辑)》 EI CAS 2014年第2期192-194,共3页
根据细管中声波传播的特征方程成立的条件,求出相应频率对应的最小理论细管半径;结合吸声材料结构特点,计算出不同粒径形成的声波传播通道半径,依据相应频率对应的最小理论细管半径进行污泥陶砂声屏障的孔结构设计。实验证明:在高... 根据细管中声波传播的特征方程成立的条件,求出相应频率对应的最小理论细管半径;结合吸声材料结构特点,计算出不同粒径形成的声波传播通道半径,依据相应频率对应的最小理论细管半径进行污泥陶砂声屏障的孔结构设计。实验证明:在高速公路噪音主要集中频率范围(5001200Hz)内,采用粒径为0.6~1.18mm污泥陶砂制备的水泥基吸声材料的吸声性能优异,在声波频率i000Hz处吸声系数能够达到0.96。 展开更多
关键词 声波 细管半径 吸声系数
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Thermal Characteristics of Heat Pipe with Axially Swallow-tailed Microgrooves 被引量:6
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作者 陈永平 朱旺法 +1 位作者 张程宾 施明恒 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2010年第2期185-193,共9页
A thermal model for a heat pipe with axially swallow-tailed microgrooves is developed and analyzed numerically to predict the heat transfer capacity and total thermal resistance.The effect of heat load on the axial di... A thermal model for a heat pipe with axially swallow-tailed microgrooves is developed and analyzed numerically to predict the heat transfer capacity and total thermal resistance.The effect of heat load on the axial distribution of capillary radius,and the effect of working temperature and wick structure on the maximum heat transfer capability,as well as the effect of the heat load and working temperature on the total thermal resistance are all investigated and discussed.It is indicated that the meniscus radius increases non-linearly and slowly at the evaporator and adiabatic section along the axial direction,while increasing drastically at the beginning of the condenser section.The pressure difference in the vapor phase along the axial direction is much smaller than that in the liquid phase.In addition,the heat transfer capacity is deeply affected by the working temperature and the size of the wick.A groove wick structure with a wider groove base width and higher groove depth can enhance the heat transfer capability.The effect of the working temperature on the total thermal resistance is insignificant;however,the total thermal resistance shows dependence upon the heat load.In addition,the accuracy of the model is also verified by the experiment in this paper. 展开更多
关键词 grooved heat pipe heat transfer capacity total thermal resistance CAPILLARY
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Capillary force of a novel skew-grooved wick structure for micro heat pipes 被引量:2
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作者 吴菊红 汤勇 陆龙生 《Journal of Central South University》 SCIE EI CAS 2011年第6期2170-2175,共6页
In order to improve the capillary force of grooved wick, a novel skew-grooved wick structure was proposed for micro heat pipes. Risen meniscus experiments were carried out to research the capillary force of the skew-g... In order to improve the capillary force of grooved wick, a novel skew-grooved wick structure was proposed for micro heat pipes. Risen meniscus experiments were carried out to research the capillary force of the skew-grooved and rectangle-grooved wick and a comparison of capillarity between the two wick structures was explored. A theoretical capillary force model of skew-grooved wick structure was also developed to calculate its effective capillary radius by comparing with the rectangle-grooved wick. From the experimental results, the maximum capillary force of the skewed-grooved wick is 8.62% larger than that of the rectangle-grooved wick. From the theoretical analysis, because the skewed-grooved wick has a smaller effective capillary radius, its maximum capillary force is 8.64% larger than that of the rectangle-grooved wick. The results indicate that the skew-grooved wick provides larger capillary force than the rectangle-grooved wick. 展开更多
关键词 skew-grooved wick micro heat pipe capillary force effective capillary radius
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