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6篇 您的检索式:作者名="Jieteng"
    题名 作者 年代 出处 被引量
1Experimental investigation of the influence of electric field on frost layer growth under natural convection condition显示文摘直接电流(DC ) 的影响一个冷垂直盘子上的霜的厚度和团上的电场被调查。生长有或没有电场的存在被拿,并且结果的霜层的相片证明电走在霜厚度上有强烈影响。霜厚度和霜质量上的冷板温度和周围的温度的影响也与电场在自然传送对流条件下面被调查。试验性的结果证明冷板温度在霜层厚度,而是它对霜质量的影响上有很强壮的效果是次要的;对霜团的影响或周围的温度在霜厚度上是比那更明显的。ZHANG Xinhua, LIU Zhongliang, WANG Jieteng, GOU Yujun, MENG Sheng and MA Chongfang Key Laboratory of Enhanced Heat Transfer and Energy Conservation, Ministry of Education Key Laboratory of Heat Transfer and Energy Conversion, Beijing Education Commission, Beijing University of Technology, Beijing 100022, China 2006Progress in Natural Science:Materials International2006,16,4:16
2Deformation of freezing water droplets on a cold copper surface显示文摘Freezing processes of water and peanut oil droplets on a cold surface are investigated in this paper. We observed during our experiments that the base surface of a water droplet that is in direct contact with the cold surface keeps its original shape, but the other part of the droplet shows an obvious growth along the direction normal to the base surface. One small protrusion appears on the top of the water droplet at the end of the freezing process. The experimental observations also show that no obvious shape change happens during the freezing of peanut oil droplets. It is postulated that the effects of sur- face tension and volume dilatation resulted from liquid-to-solid phase change cause the shape change and protrusions formation. Based on this postulation, a physical and mathematical model is developed. The results of the model of a water droplet’s freezing process correspond with our experimental observations. The observed phenomenon that frost-growth speed on the protrusion is higher than that on the other part of the water droplet is also analyzed.WANG Jieteng LIU Zhongliang GOU Yujun ZHANG Xinhua CHENG Shuiyuan 2006Science China(Technological Sciences)2006,49,5:9
3Frost formation on a super-hydrophobic surface under natural convection conditions 显示文摘Liu Zhongliang Gou Yunjun Wang Jieteng 2008International Journal of Heat Mass Transfer2008,51,25:1
4Frost formation on a super-hydrophobic surface under natural convection conditions显示文摘Zhongliang Liu Yunjun Gou Jieteng Wang Shuiyuan Cheng 2008International Journal of Heat and Mass Transfer2008,,25:1
5Frost formation on a super-hydrophobic surface under natural convection conditions 显示文摘Liu Zhongliang Gou Yunjun Wang Jieteng 2008International Joumal of Heat and Mass Transfer2008,51,2526:1
6Frost formation on a super-hydrophobic surface under natural convection conditions显示文摘Liu Zhongliang Gou Yunjun Wang Jieteng Cheng Shuiyuan 2008International Journal of Heat Mass Transfer2008,51,:1
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