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首页> 外文期刊>International Journal of Technology >Experimental Comparison of Working Region, Flame Stability, and Flame Height of LPG, DME, and DME-mixed LPG in an Atmospheric Diffusion Cylindrical Burner
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Experimental Comparison of Working Region, Flame Stability, and Flame Height of LPG, DME, and DME-mixed LPG in an Atmospheric Diffusion Cylindrical Burner

机译:LPG,DME和DME混合LPG在大气扩散圆柱燃烧器中的工作区,火焰稳定性和火焰高度的实验比较

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摘要

This study investigates the possibility of substituting liquid petroleum gas (LPG) with dimethyl ether (DME) by considering the procedures of burner design in terms of working region, flame stability, and flame height. An experiment was designed using a cylindrical burner worked in atmospheric pressure by means of diffusion combustion. Comparisons of the working region, flame stability, and flame height were made between LPG, DME, and DME-mixed LPG with DME compositions of 10%, 20%, 30%, 40%, and 50% w/w. The results show that, based on flame stability in terms of lift off (LO) and blow out (BO), the uf working region for DME is 67.8% lower than that of LPG, while the burning load (BL) working region for DME is 79.7% lower than LPG. Using the obtained uf working region, the average FH of DME is 31.4% lower than LPG. Blends of LPG and DME improve the working region and FH of DME.
机译:本研究通过考虑在工作区,火焰稳定性和火焰高度方面,通过考虑燃烧器设计的程序来取代液体石油气(LPG)用二甲醚(DME)来取代液体石油气(LPG)。使用圆柱形燃烧器设计了一种实验,通过扩散燃烧在大气压下工作。在LPG,DME和DME-混合的LPG之间进行工作区,火焰稳定性和火焰高度的比较,DME组合物为10%,20%,30%,40%和50%w / w。结果表明,基于升降机(LO)和吹出(博)的火焰稳定性,DME的UF工作区比LPG低67.8%,而DME的燃烧负载(BL)工作区低67.8%比LPG低79.7%。使用所获得的UF工作区,DME的平均FH比LPG低31.4%。 LPG和DME的融合改善了DME的工作区和FH。

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