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空气-水段塞流冷却传热与相界面分布实验研究
作者姓名:王鑫  董传帅  张晓凌  岳晓庆  何利民
作者单位:1.中国石油大学(华东)储运与建筑工程学院储运系, 山东 青岛 266580;2.香港理工大学, 香港 999077
基金项目:国家自然科学基金(51376197)和山东省自然基金(ZR2011EEM029)资助
摘    要:针对海底油气管道的散热问题搭建水平气液两相段塞流换热实验装置。研究冷却液温度4℃条件下无相变冷却过程段塞流的换热特性。实验中采用双平行电导探针、热电偶、热电堆等多种测量手段对冷却条件下段塞流的流动和传热参数进行测量。给出对流换热系数与流动界面分布参数变化规律,表明管道上下壁面由于传热不均存在显著的温差。结果还表明,段塞流对流换热系数受气相表观流速影响较小,流体与下壁面之间的对流换热明显强于与上壁面之间的对流换热。

关 键 词:段塞流  两相流  对流换热  无相变  
收稿时间:2016-04-28
修稿时间:2016-07-22

Experimental study on heat transfer and interfacial distribution of air-water slug flow in cooling process
Authors:WANG Xin  DONG Chuanshuai  ZHANG Xiaoling  YUE Xiaoqing  HE Limin
Institution:1.College of Pipeline and Civil Engineering, China University of Petroleum, Qingdao 266580, Shandong, China;2.The Hong Kong Polytechnic University, Hongkong 999077, China
Abstract:An experimental rig was constructed for study of non-boiling cooling heat transfer of gas-liquid flow in subsea pipeline in oil and gas industry. The hydrodynamic and heat transfer characteristics of slug flow with 4℃ coolant in the annular pipe were measured by using sensors such as thermocouples,thermopiles,parallel conducting probes, etc. The convective heat transfer coefficients and flow parameters were obtained and a clear temperature difference was measured between the top and the bottom of the pipe. The effects of interfacial distribution of liquid slug and elongated bubble on the heat transfer coefficient were analyzed. The experimental results showed that the convective heat transfer coefficient was slightly affected by superficial gas velocity. The convective heat transfer between the fluid and the lower wall was significantly stronger than that between the fluid and the upper wall.
Keywords:slug flow                                                                                                                        two-phase flow                                                                                                                        convective heat transfer                                                                                                                        non-boiling
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