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单排孔混凝土小型空心砌块为何不节能
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作者 王震国 《墙材革新与建筑节能》 1999年第1期34-34,共1页
目前,在框架结构中多采用单排孔混凝土小型空心砌块作填充墙,这不但不节能,反而还要浪费能源。在相当一部分人中存在着的“有孔就节能,大孔比小孔节能”的错误认识。首先要搞清楚空心制品的隔热特性。空心制品有它的固有特性,其间... 目前,在框架结构中多采用单排孔混凝土小型空心砌块作填充墙,这不但不节能,反而还要浪费能源。在相当一部分人中存在着的“有孔就节能,大孔比小孔节能”的错误认识。首先要搞清楚空心制品的隔热特性。空心制品有它的固有特性,其间不流动的空气层具有一定的隔热作用,... 展开更多
关键词 混凝土空心砌块 对排孔 节能 墙体
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EXPERIMENTAL STUDY OF HTC FOR FILM COOLING OF PARALLEL-INLET HOLES 被引量:2
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作者 杨卫华 张靖周 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2012年第1期46-53,共8页
The parallel-inlet holes with one-row, two-row and three-row film hole arrangements and different di- ameters are proposed to experimentally study their cooling characteristics. Detailed experimental processes and res... The parallel-inlet holes with one-row, two-row and three-row film hole arrangements and different di- ameters are proposed to experimentally study their cooling characteristics. Detailed experimental processes and results are described and carried out. Results indicate that heat transfer coefficient (HTC) is increased with the increase of blowing ratio. When the blowing ratio is lower, the distribution of HTC along the heated wall can be divided into three regions. For larger blowing ratio or diameter, the cooling characteristics oi parallel-inlet film holes are similar to those of convective heat transfer around flat. Furthermore, when hole diameter is deter- mined, the arrangement patterns of film hole and the blowing ratio take a great influence on HTC. 展开更多
关键词 film eooling parallel-inlet hole multiple-row arrangement heat transfer eoeffieient (HTC)
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