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北江大堤典型堤段管涌试验研究与分析 被引量:29
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作者 毛昶熙 段祥宝 +1 位作者 蔡金傍 羽海英 《水利学报》 EI CSCD 北大核心 2005年第7期818-824,共7页
用北江大堤典型堤段的堤基粉细砂砾在玻璃水槽中模拟不同砂层厚度、埋深、层次结构及接触面粗糙度等条件下的管涌试验。论证了接触面加糙后能使临界坡降由光滑面的0.10提高到0.13~0.20。较细的上层砂和较粗的下层砂砾将有可能使临界坡... 用北江大堤典型堤段的堤基粉细砂砾在玻璃水槽中模拟不同砂层厚度、埋深、层次结构及接触面粗糙度等条件下的管涌试验。论证了接触面加糙后能使临界坡降由光滑面的0.10提高到0.13~0.20。较细的上层砂和较粗的下层砂砾将有可能使临界坡降减小30%左右。最后,根据多层地基渗流理论推导出堤基渗流管涌发展的计算公式,并用三维有限元计算进行了验证。该公式可以用来估算管涌突发时的涌砂范围和继续向上游冲蚀发展的距离,以便判别危害大堤安全的程度。 展开更多
关键词 管涌 砂模 临界坡降 接触面糙率 多层地基 计算公式
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Influence of Warm Oxide Layer on Wettability and Contact Angle for Heat Transport Devices
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作者 A. Takemura K. Yuki A. Sadayuki 《Journal of Mechanics Engineering and Automation》 2017年第7期341-347,共7页
Recently, high heat density has become a problem in electronic devices. Therefore, high heat-transfer efficiency is required in copper heat exchangers. Improvement ofwettability is reported to improve the heat-transfe... Recently, high heat density has become a problem in electronic devices. Therefore, high heat-transfer efficiency is required in copper heat exchangers. Improvement ofwettability is reported to improve the heat-transfer efficiency. In previous studies, copper oxide layer improves the wettability. In this study, we focus on a copper oxide layer produced under warm conditions (from 200 to 300 ℃), which are suitable oxidation conditions for improving wettability. Experimental results showed that the surface of the specimens was covered by the oxidation layer and took on a black color. Furthermore, the wettability was improved by the warm copper oxide layer. While, the surface roughness was approximately constant to each warm oxidized specimen. Whereat, the warm oxide layer was observed by SEM (sanning electron microscope). The results from SEM observations showed that the warm copper oxide layer consisted of stacks and combinations of nanoscopic warm oxidation particles. Thus, the warm oxidation layer has nanoscopic surface asperities. It is seemed that these nanoscopic asperities improved the wettability. 展开更多
关键词 Warm oxide layer heat-transfer efficiency WETTABILITY contact angle.
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