西安交通大学能源与动力工程学院,西安,710049
文键(通信作者),女,教授,博士生导师。基金项目: 国家重点研发计划资助项目(SKLTSCP202103)
网络首发:2012-09-10,
纸质出版:2012
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王斯民, 文键. 无短路区新型螺旋折流板换热器换热性能的实验研究[J]. 西安交通大学学报, 2012,46(9):12-15+42.
Experiment on Heat Transfer Performance of Helical Baffled Heat Exchanger Without Short Circuit Flow[J]. 2012, 46(9): 12-15+42.
为了消除目前在工业过程中大量使用的螺旋折流板换热器壳程的三角区漏流
首次采用折面折流板代替平面折流板
对其进行了结构改进.通过采用折面折流板
封闭了相邻两块平面折流板在搭接处产生的三角形豁口
消除了由于豁口导致的壳程短路流道
从而改进了换热器壳侧的流场.实验结果表明
用折面折流板代替平面折流板后
换热器的总传热系数增加了7.9%~9.7%
有效地提高了换热器的换热性能.虽然换热器壳程的阻力损失有所增加
但泵耗功率的增量小于2 W
相对于换热量的增加可以忽略不计.此项研究对于换热器的节能优化设计具有重要的指导意义.
In order to eliminate the shell-side leakage flow in triangle zones
the configuration of helical baffled heat exchanger widely used in industrial processes was improved by using fold baffles. The triangle leakage zone near the joint point between two plain baffles is blocked by the fold baffles
which eliminates the short circuit flow and improves the flow field. The experimental results show that the overall heat transfer coefficient of the heat exchanger increases by 7.9%-9.7%
which effectively improves the heat transfer performance of the helical baffled heat exchanger. Although the shell-side pressure drop correspondingly increases
the increment of the pump power consumption is less than 2 W
which can be ignored compared with the increment of heat exchange. The results of the investigation are valuable to the energy saving optimum design of helical baffled heat exchangers.
王秋旺. 螺旋折流板管壳式换热器壳程传热强化研究进展[J].西安交通大学学报,2004,38(9):881-886.
WANG Qiuwang. Current status and development of shell side heat transfer enhancement of shell and tube heat exchangers with helical baffles[J].Journal of Xi'an Jiaotong University, 2004,38(9):881-886.
王晨,桑芝富. 不同螺旋折流板换热器壳侧流动的数值研究[J]. 石油机械,2008,36(10):12-15.
WANG Chen,SANG Zhifu. The simulation of flow field in shell-side for different helical baffled heat exchangers[J].China Petroleum Machinery, 2008,36(10):12-15.
王良,罗来勤,王秋旺,等.螺旋折流板换热器中阻流板对换热及沿程压降的影响[J].工程热物理学报, 2001, 22(S0): 173-176.
WANG Liang, LUO Laiqin, WANG Qiuwang,et al. Effect of inserting block plates on pressure drop and heat transfer in shell-and-tube heat exchangers with helical baffles [J].Journal of Engineering Thermophysics, 2001, 22(S0):173-176.
STEHLIK P, NEMCANSKY J, KRAL D. Comparison of correction factors for shell-and-tube heat exchangers with segmental or helical baffles[J]. Heat Transfer Engineering, 1994, 15(1):55-65.
邓斌, 吴扬, 陶文铨. 螺旋折流板换热器壳侧流动的数值模拟[J]. 西安交通大学学报,2004,38(1):1106-1109.
DENG Bin, WU Yang, TAO Wenquan. Numerical simulation of flow in shell side of shell and tube heat exchangers with helical baffles[J]. Journal of Xi'an Jiaotong University, 2004,38(1):1106-1109.
刘娇洋,江楠.螺旋折流板换热器的研究进展[J].石油化工设备,2009,30(2):43-48.
LIU Jiaoyang, JIANG Nan. Progress in research on helical baffled heat exchanger[J]. Petro-Chemical Equipment Technology, 2009,30(2):43-48.
高晓东,冯霄.双螺旋结构螺旋折流板换热器试验研究[J].高校化学工程学报,2007,21(4):547-549.
GAO Xiaodong, FENG Xiao. Experimental study of helical baffled heat exchanger with double helical structure[J]. Journal of Chemical Engineering of Chinese Universities, 2007,21(4):547-549.
宋义鑫,谭羽非.连续型螺旋折流板换热器结构及性能研究[J].节能技术,2009,155(3):229-232.
SONG Yixin, TAN Yufei. Research of heat exchanger structure and performance with continuous helical shaped baffles[J]. Energy Conservation Technology, 2009,155(3):229-232.
WANG Simin, WEN Jian, LI Yanzhong. An experimental investigation of heat transfer enhancement for a shell-and-tube heat exchanger[J]. Applied Thermal Engineering, 2009, 29(11/12):2433-2438.
王斯民,厉彦忠,文键,等. 装有密封器的管壳式换热器的实验研究[J]. 化学工程,2007,35(10):12-15.
WANG Simin, LI Yanzhong, WEN Jian, et al. Experimental investigation of shell-and-tube exchanger with a sealer[J]. Chemical Engineering, 2007,35(10):12-15.
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