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作 者:密晓光 杨果成 陈杰 丁国良[2] MI Xiaoguang;YANG Guocheng;CHEN Jie;DING Guoliang(Research and Development Center,CNOOC Gas and Power Group,Beijing 100028,China;Institute of Refrigeration and Cryogenics,Shanghai Jiao Tong University,Shanghai,200240,China)
机构地区:[1]中海石油气电集团技术研发中心,北京100028 [2]上海交通大学制冷与低温工程研究所,上海200240
出 处:《制冷技术》2018年第2期6-10,15,共6页Chinese Journal of Refrigeration Technology
基 金:国家自然科学基金(No.51674165);上海市优秀学术带头人计划(No.16XD1401500)
摘 要:螺旋折流板管壳式冷凝器在液化天然气工厂中应用广泛,了解乙烷/丙烷混合制冷剂在管壳式冷凝器壳侧的冷凝换热特性有助于优化换热器设计。本文对乙烷/丙烷混合制冷剂在螺旋折流板管壳式换热器壳侧的冷凝换热特性进行了实验研究。实验结果表明:壳侧换热系数随干度增加先增大后减小,在0.8~0.9附近达到峰值;换热系数随热流密度的增加而增大。新开发的换热关联式对乙烷/丙烷混合制冷剂在螺旋折流板管壳式冷凝器流动冷凝换热系数预测偏差在25%以内。The helically baffled shell-and-tube condensers are widely used in liquefied natural gas(LNG) plants. Understanding the condensation heat transfer characteristics of ethane/propane mixture refrigerant in the shell side of helically baffled shell-and-tube condenser can contribute to the optimal design of heat exchanger. In the present study, the condensation heat transfer characteristics of it were experimentally investigated. The results show that, as the vapor quality increases, the heat transfer coefficient initially increases and then decreases, representing a maximum at vapor quality of 0.8~0.9; as the heat flux increases, the heat transfer coefficient increases. A new heat transfer coefficient correlation for the mixed hydrocarbon refrigerant flow condensation in shell side of helically baffled shell-and-tube condenser is developed with deviation of ±25%.
分 类 号:TE965[石油与天然气工程—石油机械设备]
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