火力发电厂相变换热器不稳定性实验研究
Experimental Research on Instability of Phase-Change Heater in Thermal Power Plant
DOI: 10.12677/MET.2021.104048, PDF,   
作者: 何 毅:上海连成集团苏州股份有限公司,江苏 苏州;汪家琼:江苏大学,江苏 镇江
关键词: 相变换热器两相流不稳定性理论研究实验研究火力发电Phase Change Heat Exchanger Two-Phase Flow Instability Theoretical ResearchExperimental Research Thermal Power
摘要: 火力发电厂相变换热器在机组灵活运行条件下运行不稳定会造成温度波动、温度迟滞、管路振动、噪声大等问题,来流介质气液两相流状态的不稳定性是相变换热器运行不稳定的诱因之一。本文从来流介质冷却过程的气液两相流不稳定性入手,研究相变换热器运行不稳定性的机理,并搭建了环路热管系统进行试验验证,探索抑制其运行不稳定性的方法,为火力发电厂相变换热器及管道的稳定运行提供参考。
Abstract: The unstable operation of the phase-change heat exchanger of the thermal power plant under the flexible operating conditions of the unit will cause problems such as temperature fluctuation, tem-perature hysteresis, pipeline vibration, and loud noise. The instability of the gas-liquid two-phase flow of the incoming medium is one of the causes of the unstable operation of the phase change heat exchanger. The current paper studied the mechanism of gas-liquid two-phase flow instability in the cooling process which was the reason for the instability of the phase change heat exchanger. The current paper set up a loop heat pipe system for test verification and studied the method of suppressing the instability of the phase change heat exchanger. These studies provide references for the stable operation of phase-change heat exchangers and pipelines in thermal power plants.
文章引用:何毅, 汪家琼. 火力发电厂相变换热器不稳定性实验研究[J]. 机械工程与技术, 2021, 10(4): 426-432. https://doi.org/10.12677/MET.2021.104048

参考文献

[1] 尤田. 换热器中气液相变过程的热力学耦合研究[J]. 甘肃科学学报, 2020, 32(5): 46-49.
[2] 蔡浩, 戴世佳, 王助良, 步奕. 相变换热器烟气侧流动及传热特性的数值模拟[J]. 热能动力工程, 2020, 35(6): 191-197.
[3] 贾卓杭, 郭亮, 张旭升. 基于Fluent的相变储能换热器回路仿真分析[J]. 节能技术, 2019, 37(2): 126-129+179.
[4] 周梦, 虞斌, 曹宇. 相变换热器中蒸汽冷凝数值研究[J]. 化工机械, 2018, 45(6): 730-737.
[5] Maydanik, Y.F. (2005) Loop Heat Pipes. Applied Thermal Engineering, 25, 635-657. [Google Scholar] [CrossRef
[6] Maydanik, Y.F., Vershinin, S.V. and Chernysheva, M.A. (2018) The Results of Comparative Analysis and Tests of Ammonia Loop Heat Pipes with Cylindrical and Flat Evaporators. Applied Thermal Engineering, 144, 479-487. [Google Scholar] [CrossRef
[7] Kimihide, O. and Hosei, N. (2019) Heat Transfer Characteristics of Flat Evaporator Loop Heat Pipe under High Heat Flux Condition with Different Orientations. Applied Thermal Engineering, 153, 828-836. [Google Scholar] [CrossRef
[8] Xie, Y.Q., Zhou, Y. and Wen, D.S. (2018) Experimental Investigation on Transient Characteristics of a Dual Compensation Chamber Loop Heat Pipe Subjected to Acceleration Forces. Applied Thermal Engineering, 130, 169-184. [Google Scholar] [CrossRef
[9] Blet, N., Bertin, Y., Ayel, V., et al. (2016) Experimental Analysis of a Capillary Pumped Loop for Terrestrial Applications with Several Evaporators in Parallel. Applied Thermal Engineering, 93, 1304-1312. [Google Scholar] [CrossRef
[10] Lachassagne, L., Ayel, V., et al. (2012) Experimental Study of Capillary Pumped Loop for Integrated Power in Gravity Field. Applied Thermal Engineering, 35, 166-176. [Google Scholar] [CrossRef
[11] 张东伟, 蒋二辉, 等. 脉动热管强化传热技术研究进展[J]. 科学技术与工程, 2019, 19(21): 1-7.
[12] 刘向东, 邱升, 陈永平, 等. 脉动热管闭合回路内热驱动气液两相脉动运行特性的非线性研究[J]. 工程热物理学报, 2016, 37(4): 825-829.
[13] Yoon, A. and Kim, S.J. (2017) Characteristics of Oscillating Flow in a Micro Pulsating Heat Pipe: Fundamental-Mode Oscillation. International Journal of Heat and Mass Transfer, 109, 242-253. [Google Scholar] [CrossRef
[14] 侯跃攀, 崔文智, 聂秀, 等. 非均匀槽道平板热管的传热性能实验[J]. 重庆大学学报, 2018, 41(3): 13-20.
[15] Peng, Y., Liu, W., Liu, B., et al. (2015) The Performance of the Novel Vapor Chamber Based on the Leaf Vein System. International Journal of Heat and Mass Transfer, 86, 656-666. [Google Scholar] [CrossRef
[16] 林宗虎, 王树众, 王栋编. 气液两相流和沸腾传热[M]. 西安: 西安交通大学出版社, 2003: 248-256.
[17] 盖德∙希特斯洛尼, 主编. 多相流动和传热手册[M]. 鲁钟琪, 等, 译. 北京: 机械工业出版社, 1993.