西安交通大学热流科学与工程教育部重点实验室,西安,710049
网络首发:2013-11-10,
纸质出版:2013
移动端阅览
韩辉, 何雅玲, 唐桂华. 硫酸蒸气在换热器表面沉积特性的数值研究[J]. 西安交通大学学报, 2013,47(11):7-13.
Numerical Study on Deposition Characteristics of Sulfuric Acid Vapor on Heat Exchanger Surfaces[J]. 2013, 47(11): 7-13.
韩辉, 何雅玲, 唐桂华. 硫酸蒸气在换热器表面沉积特性的数值研究[J]. 西安交通大学学报, 2013,47(11):7-13. DOI: 10.7652/xjtuxb201311002.
Numerical Study on Deposition Characteristics of Sulfuric Acid Vapor on Heat Exchanger Surfaces[J]. 2013, 47(11): 7-13. DOI: 10.7652/xjtuxb201311002.
为了预测换热器表面酸蒸气的凝结行为
发展了一种新的数值计算模型。该模型通过结合H
2
SO
4
-H
2
O溶液的气液平衡实验数据和多元组分传输理论
能够实现壁面附近硫酸溶液(硫酸和水蒸气分压力)和烟气侧组分含量耦合
以及流体和固体界面耦合条件下凝结换热过程的数值求解。通过与已有实验结果的对比
验证了模型的可靠性。模型被用于一种在余热利用场合广泛采用的H型翅片管换热器
并给出了换热器表面的酸沉积率和酸液质量分数的分布。分析结果表明:在换热器翅片上
酸液质量分数的三维分布和翅片表面温度分布规律相一致; 水蒸气体积分数升高会导致酸液质量分数急剧下降和沉积率上升
增加换热器低温腐蚀的风险; 与此相反
增大烟气温度会导致酸液质量分数升高和沉积率下降
降低腐蚀的可能性。
A new numerical model was developed to predict the sulfuric acid condensation behavior on the surfaces of heat exchangers. By correlating the vapor-liquid equilibrium(VLE)data of the H
2
SO
4
-H
2
O solution from experiments with the multi-component diffusion theory
the proposed model can obtain the numerical solution of condensation heat transfer under the conditions of the coupled wall and fluid boundary condition and realize the coupling of the multi-components of flue gas and the sulfuric acid solution(saturated partial pressures of sulfuric acid and water vapor)near the wall. The numerical model was validated by the comparison of simulation results and available experimental data
and it was applied to a k
ind of H-type finned tube heat exchanger widely used in the field of waste heat recovery. The distributions of condensation rate and condensate mass fraction on the fin surface were achieved. The results show that the three-dimensional distribution of the acid solution mass fraction is consistent with that of the fin temperature. The increase in water vapor could result in a sharp reduction of the acid solution mass fraction and an increase in deposition
leading to a serious risk of low temperature corrosion. In contrast
increasing the flue gas temperature will reduce the corrosion risk by reducing the condensation rate and increasing the acid mass fraction.
MOSKOVITS P D. Low-temperature boiler corrosion and deposits: a literature review [J]. Industrial and Engineering Chemistry, 1959, 51(10): 1305-1311.
WEBB R L, WANNIARACHCHI A S. The effect of non-condensible gases in water chiller condensers: literature survey and theoretical predictions [J]. ASHRAE Transaction, 1980, 86(1): 142-159.
OSAKABE M. Latent heat recovery from oxygen-combustion flue gas [C]∥Proceedings of the 35th Intersociety Energy Conversion Engineering Conference and Exhibit. Las Vegas, USA: AIAA, 2000: 8004-8012.
OSAKABE M, YAGI K, ITOH T, et al. Condensation heat transfer on tubes in actual flue gas: parametric study for condensation behavior [J]. Heat Transfer: Asia Research, 2003, 32(2): 153-166.
WANG C C, HSIEH Y C, LIN Y T. Performance of plate finned tube heat exchangers under dehumidifying conditions [J]. ASME Journal of Heat Transfer, 1997, 119(1): 119-117.
WANG C C, LIN Y T, LEE C J. Heat and momentum transfer for compact louvered fin-and-tube heat exchangers in wet conditions [J]. International Journal of Heat and Mass Transfer, 2000, 43(18): 3443-3452.
WANG C C, LEE W S, SHEU W J, et al. Parametric study of the air-side performance of slit fin-and-tube heat exchangers in wet conditions [J]. Journal of Mechanical Engineering Science, 2001, 215(9): 1111-1121.
JEONG K, KESSEN M J, BILIRGEN H, et al. Analytical modeling of water condensation in condensing heat exchanger [J]. International Journal of Heat and Mass Transfer, 2010, 53(11/12): 2361-2368.
SHI X J, CHE D F, AGNEW B, et al. An investigation of the performance of compact heat exchanger for latent heat recovery from exhaust flue gases [J]. International Journal of Heat and Mass Transfer, 2011, 54(1/2/3): 606-615.
COMINI G, NONINO C, SAVINO S. Numerical evaluation of fin performance under dehumidifying conditions [J]. ASME Journal of Heat Transfer, 2007, 129(10): 1395-1402.
ABEL E. The vapor phase above the system sulfuric acid-water [J]. Journal of Physical Chemistry, 1946, 50(3): 260-282.
GMITRO J I, VERMEULEN T. Vapor-liquid equilibria for aqueous sulfuric acid [J]. AIChE Journal, 1964, 10(5): 740-746.
WILSON R W, STEIN F P. Correlation of sulfuric acid-water partial pressures [J]. Fluid Phase Equilibria, 1989, 53: 279-288.
PESSOA F L P, SIQUEIRA CAMPOS C E P, ULLER A M C. Calculation of vapor-liquid equilibria in aqueous sulfuric acid solutions using the UNIQUAC equation in the whole concentration range [J]. Chemical Engineering Science, 2006, 61(15): 5170-5175.
VORGELEGT V. Condensation of water vapor and acid mixtures from exhaust gases [D]. Berlin, Germany: Technical University of Berlin, 2004.
GIAUQUE W F, HORNUNG E W, KUNZLER J E, et al. The thermodynamic properties of aqueous sulfuric acid solutions and hydrates from 15 to 300 K [J]. Journal of the American Chemical Society, 1960, 82(1): 62-67.
WILSON R W. Condensation of sulfuric acid and water mixtures in laminar flow [D]. Bethlehem, USA: Lehigh University, 1989.
席奂,李明佳,何雅玲,等.CE图——一种余热利用循环及工质选择的定量评价方法.2013,47(9):8-15.[doi:10.7652/xjtuxb201309002]
张薇,彭学院,尤利超,等.余热直接利用型燃气机热泵变转速特性实验研究.2013,47(8):141-144.[doi:10.7652/xjtuxb201308024]
蔡君伟,孙皖,李斌,等.-150℃逆布雷顿空气制冷机动态温降特性研究.2013,47(3):60-63.[doi:10.7652/xjtuxb 201303011]
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.2012,46(9):12-15.[doi:10.7652/xjtuxb2012 09003]
张侨禹,赵红利,侯予.间壁式筛网网格换热器的性能分析.2012,46(1):24-29.[doi:10.7652/xjtuxb201201005]
闫柯,葛梦然,高军,等.空间锥螺旋管束流体诱导振动换热器及性能分析.2011,45(11):22-26.[doi:10.7652/xjtuxb 201111005]
何纬峰,戴义平.环境风速对空冷凝汽器运行性能的影响.2011,45(5):31-35.[doi:10.7652/xjtuxb201105006]
郭宪民,王善云,汪伟华,等.环境参数对空气源热泵蒸发器表面霜层影响研究.2011,45(3):30-34.[doi:10.7652/xjtuxb201103005]
常勇强,杨震,赵振兴,等.蛇形管平行通道中高压气体的对流换热特性研究.2011,45(3):53-57.[doi:10.7652/xjtuxb 201103010]
赵振兴,杨震,刘宏,等.煤粉加压气化炉膜式螺旋管和蛇形管对流传热特性研究.2011,45(1):10-14.[doi:10.7652/xjtuxb201101003]
何纬峰,戴义平,马庆中,等.环境风影响下直接空冷单元背压预测研究.2011,45(1):15-20.[doi:10.7652/xjtuxb2011 01004]
李程,巫江虹,崔晓龙,等.CO2微通道气体冷却器压降与传热特性研究.2010,44(9):48-53.[doi:10.7652/xjtuxb2010 09010]
黄东,贾杰楠.室外换热器流路布置对热泵空调器的性能影响分析.2010,44(7):33-37.[doi:10.7652/xjtuxb201007008]
赵敏,厉彦忠.丙烷预冷混合制冷剂液化流程中原料气与制冷剂匹配研究.2010,44(2):108-112.[doi:10.7652/xjtuxb 201002022]
0
浏览量
4
下载量
1
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621