A Study of R113 Refrigerant Boiling Processes in a Horizontal Tube Bundle under High Heat Flux Conditions

IF 0.9 Q4 ENERGY & FUELS Thermal Engineering Pub Date : 2023-07-25 DOI:10.1134/S0040601523080062
O. O. Mil’man, V. B. Perov, G. G. Yan’kov, A. V. Kondrat’ev, A. V. Ptakhin, V. S. Krylov, A. P. Zheleznov, A. A. Zhinov
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Abstract

Energy-saving technologies are among the priority development lines of Russia’s power industry. In recovering the rejected heat from geothermal sources, especially those located in cold climatic zones in which there is no access to service cooling water resources, it is profitable to use organic coolants, e.g., CFC refrigerants, as working fluid for dry cooling towers. The properties of such coolants have, as a rule, been studied to a sufficient detail in the region of low temperatures, because they are mainly used as working fluids for refrigeration systems at moderate heat fluxes. To obtain data on the boiling of organic coolants on a tube bundle for taking into account the influence of bundle lower tubes on the heat transfer in the upper tubes, a vapor generator mockup with a horizontal tube bundle was developed. High-pressure water served as the heating medium; and electric heaters were provided for additionally heating the CFC refrigerant to a level close to the saturation temperature. The tube bundle includes twelve tubes arranged in three rows along the height: the central row consists of four measurement tubes, and two lateral rows consist of auxiliary tubes. Eight thermocouples are installed at the top and bottom in the slots of the central row heat-transfer tubes for measuring the surface temperature. For the lower and upper rows in the bundle, boiling heat-transfer coefficients were obtained in a wide range of specific heat fluxes. It is shown that the boiling on the upper rows is significantly more (by 30–35%) intense than it is on the lower rows.

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高热流密度条件下水平管束R113制冷剂沸腾过程的研究
节能技术是俄罗斯电力工业的优先发展方向之一。在回收来自地热资源的废弃热量,特别是那些位于无法获得服务冷却水资源的寒冷气候地区的地热资源时,使用有机冷却剂,例如氟氯化碳制冷剂,作为干式冷却塔的工作流体是有益的。通常,这类冷却剂的性质在低温区域已经得到了足够详细的研究,因为它们主要用作中等热通量的制冷系统的工质。为了得到考虑管束下管对管束上管传热影响的有机冷却剂在管束上沸腾的数据,研制了一种水平管束蒸汽发生器模型。高压水作为加热介质;和电加热器用于额外地将CFC制冷剂加热到接近饱和温度的水平。管束包括12根管,沿高度排列为三排,中间一排为4根测量管,两排为辅助管。在中央排换热管槽的顶部和底部安装了8个热电偶,用于测量表面温度。在较宽的比热通量范围内,对束的上下排进行了沸腾换热系数的计算。结果表明,上层的沸腾明显比下层的沸腾强烈(30-35%)。
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来源期刊
CiteScore
1.30
自引率
20.00%
发文量
94
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