首页> 外文会议>ASME Heat Transfer Conference >FORCED CONVECTIVE BOILING HEAT TRANSFER AND PRESSURE DROP CHARACTERISTICS OF TWO-PHASE FLOW INSIDE A SMALL HORIZONTAL HELICALLY COILED TUBING ONCE-THROUGH STEAM GENERATOR
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FORCED CONVECTIVE BOILING HEAT TRANSFER AND PRESSURE DROP CHARACTERISTICS OF TWO-PHASE FLOW INSIDE A SMALL HORIZONTAL HELICALLY COILED TUBING ONCE-THROUGH STEAM GENERATOR

机译:强制对流沸腾传热和压力下降特性在小水平螺旋盘管内通过蒸汽发生器内部的两相流

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The pressure drop and boiling heat transfer of steam water two-phase flow were studied in a small horizontal helically coiled tube once-through steam generator of 9-mm inside diameter with 292-mm coil diameter and 30-mm pitch. Experiments were performed at a range of qualities up to 0.95, a system pressure range of 0.5~3.5MPa, a mass flux range of 236~943kg/rris and a heat flux range of 0~900kW/m{sup}2. Based on the experimental results, a new two-phase frictional pressure drop correlation was developed on the basis of Chisholm's B-coefficient method. In the present experimental range, boiling heat transfer was found to be dependent not only on mass flux but also on heat flux. This result implies that both the nucleation mechanism and the convection mechanism have the same importance to forced convective boiling heat transfer in small horizontal helically coiled tube over the full range of qualities (pre-critical heat flux qualities of 0.1~0.9) which is contrary to situations in larger helically coiled tube where the convection mechanism dominates at qualities typically >0.1. Traditional single parameter Lockhart-Martinelli type correlations failed to satisfactorily predict present experimental data and in this paper a new flow boiling heat transfer correlation was put forward to better predict the experimental data of the present study.
机译:在小水平螺旋盘管中,在9毫米线圈直径和30mm间距的小水平螺旋盘管一次通过9毫米蒸汽发生器中进行蒸汽水两相流的压降和沸腾的传热。在高达0.95的质量范围内进行实验,系统压力范围为0.5〜3.5MPa,质量磁通范围为236〜943kg / rris,热通量范围为0〜900kw / m {sup} 2。基于实验结果,基于Chisholm B系数方法开发了新的两相摩擦压降相关性。在本实验范围内,发现沸腾的热传递不仅依赖于质量磁通,而且还依赖于热通量。该结果意味着成核机制和对流机构都具有与在彼此相反的全范围(临界预临界热通量质量)中的小水平螺旋盘管中强制对流沸腾的热传递相同的对流沸腾热传递。较大的螺旋盘管中的情况,其中对流机制在典型的质量下占主导地位> 0.1。传统的单个参数锁骨锁上马丁基型相关性未能令人满意地预测目前的实验数据,并且本文提出了一种新的流沸热传递相关性,以更好地预测本研究的实验数据。

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