首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Condensation heat transfer coefficient with noncondensable gases inside near horizontal tubes
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Condensation heat transfer coefficient with noncondensable gases inside near horizontal tubes

机译:水平管内含不凝性气体的凝结换热系数

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摘要

An experimental investigation on the role of noncondensable gases during condensation of steam inside horizontal/ slightly inclined tubes is presented. In a condenser of a thermal desalination unit, the noncondensable gases flowing within the gas phase cause reduction of performance and efficiency. Many researchers have investigated in-tube condensation for horizontal heat exchangers, but very few works have been performed to study the condensation in slightly inclined tubes with noncondensable gases. Inclination of tubes may be requested to achieve suitable and reliable draining. Experiments were conducted in the following conditions: tube internal diameter 12.6 mm, 20 mm and 26.8 mm; tube inclination 7°; inlet noncondensable gas mass fraction ω_(in) = 5%-42%; inlet mixture Reynolds number Re_(m,in)=5000-20,000; local noncondensable gas mass fraction ω_(in)=5%-60%; local mixture Reynolds number Re_m=500-20,000; saturated steam at atmospheric pressure, gravity controlled with stratified flow regime, in which the condensate is collected mainly in the bottom part of the tube due to gravity and it is drawn out by its own momentum. A correlation of mixed gas heat transfer coefficient along a slightly inclined tube, in a gravity controlled flow regime, has been developed, showing a good agreement with experimental results.
机译:实验研究了不可冷凝气体在水平/微倾斜管内蒸汽冷凝过程中的作用。在热脱盐装置的冷凝器中,在气相中流动的不可冷凝气体导致性能和效率降低。许多研究人员已经研究了卧式换热器的管内冷凝,但是很少有工作研究带有不可冷凝气体的微倾斜管中的冷凝。可能需要倾斜管道以实现合适且可靠的排水。在以下条件下进行实验:管的内径为12.6 mm,20 mm和26.8 mm;管道倾角7°;入口不可凝气体质量分数ω_(in)= 5%-42%;入口混合物雷诺数Re_(m,in)= 5000-20,000;局部不可凝气体质量分数ω_(in)= 5%-60%;局部混合物雷诺数Re_m = 500-20,000;大气压下的饱和蒸汽,通过分层流态控制重力,其中冷凝水由于重力而主要收集在管的底部,并由其自身的动量抽出。已经开发出在重力控制的流动状态下沿微倾斜管的混合气体传热系数的相关性,与实验结果显示出良好的一致性。

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