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首页> 外文期刊>International Communications in Heat and Mass Transfer >EXPERIMENTAL STUDY ON HEAT TRANSFER TO FURNACE WALLS IN A SMALL LPG-FUELED FURNACE
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EXPERIMENTAL STUDY ON HEAT TRANSFER TO FURNACE WALLS IN A SMALL LPG-FUELED FURNACE

机译:小型液化石油气窑炉壁传热的实验研究

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摘要

In this study experiments on heat transfer in a small rectangular cross section LPG-fueled furnace are carried out. The furnace is a vertical one supplied with the fuel via a number of parallel horizontal tubes. The effects of the following design parameters are investigated: (1) the number of fuel tubes and the number of holes on each tube, through which fuel issues upward into the combustion chamber, (2) the arrangement of the fuel holes on each tube relative to the holes on neighboring tubes (whether in-line or staggered), (3) the size of the holes on each tube, and (4) the positions of the fuel tubes relative to the furnace walls. Results show that maximum heat transfer to furnace walls is realized when five fuel tubes with eleven 3-mm-diameter holes on each tube are used, provided that the holes arrangement is staggered. Other major conclusions are given in the main body of the paper.
机译:在这项研究中,进行了小型矩形截面液化石油气炉的传热实验。该炉是立式炉,其通过多个平行的水平管供应燃料。研究了以下设计参数的影响:(1)燃料管的数量和每根管上的孔的数量,燃料通过这些燃料向上散发到燃烧室中;(2)相对于每根管的燃料孔的布置(3)每个管子上的孔的大小,以及(4)燃料管相对于炉壁的位置。结果表明,如果使用五根燃料管,每根管上有11个3mm直径的孔,则可以实现最大程度的传热,前提是孔的排列是交错的。其他主要结论在论文的主体中给出。

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