1. 毕业设计(论文)的内容和要求
1、查阅管壳式换热器,浮头式换热器及流体流动、换热方面的研究文献并撰写文献综述。
2、管壳式换热器基本原理的研究。
3、管壳式换热器的设计与图纸绘制。
2. 参考文献
[1] 孟雪,荆恒铸,曹真真,李红明.基于Aspen EDR的管壳式换热器的设计[J].化工进展,2019,38(S1):275-277.[2] 方文,任小中.管壳式换热器流场温度模拟[J].中小企业管理与科技(中旬刊),2019(11):165 167.[3] 陆道纲,王雨,袁博,隋丹婷.应用于管壳式换热器热工水力数值模拟的多孔介质算法[J/OL].原子能科学技术:1-7[2019-12-16].[4] 李威,张西存,李晓光.热交换器流通面积计算及其对结构设计的影响[J].石油化工设备,2019,48(05):76-81.[5] 钱立钦,杨爱国.钛、锆复合板制管壳式换热器壳程设计和制造工艺[J].化工设备与管道,2019,56(04):30-33.[6] 刘姜利.管壳式换热器故障分析及工程设计改进[J].山东化工,2019,48(15):152-153.[7] 郑志阳. 基于新型管束的扭转流换热器性能优化及装配工艺研究[D].郑州大学,2019.[8] 陶晓宇,莫春萍,王万林,李治民,吕雅青.折流板对管壳式换热器性能影响的研究综述[J].化工机械,2019,46(02):112-114 130.[9] 鲍捷. 缠绕管式换热器传热特性研究[D].青岛科技大学,2019.[10] 王光明,李雅智,童国斌,曲伟.管壳式换热器和板式换热器在海洋平台的应用[J].化工设计通讯,2019,45(03):114.[11] 张学海,高刚,张伟.管壳式换热器管程破裂工况分析[J].石油和化工设备,2019,22(03):26-28.[12] 刘建军.管壳式换热器故障及维修处理[J].化工设计通讯,2019,45(02):75.[13] 王东,王天昊.管壳式换热器内部流场数值模拟[J].价值工程,2019,38(04):115-117.[14] 许晓红,郭建辉,雷勇刚,王飞.双壳程管壳式换热器的传热和阻力特性[J].热能动力工程,2018,33(12):20-25.[15] Mohammad Hojjat. Nanofluids as coolant in a shell and tube heat exchanger: ANN modeling and multi-objective optimization[J]. Applied Mathematics and Computation,2020,365.[16] Chulin Yu,Haiqing Zhang,Min Zeng,Ruojin Wang,Bingjun Gao. Numerical study on turbulent heat transfer performance of a new compound parallel flow shell and tube heat exchanger with longitudinal vortex generator[J]. Applied Thermal Engineering,2020,164.[17] Jian Li,Zhen Yang,Shuozhuo Hu,Fubin Yang,Yuanyuan Duan. Effects of shell-and-tube heat exchanger arranged forms on the thermo-economic performance of organic Rankine cycle systems using hydrocarbons[J]. Energy Conversion and Management,2020,203.[18] Wagner Henrique Saldanha,Felipe Raul Ponce Arrieta,Thiago Melo Machado-Coelho,Emanuel Diniz dos Santos,Cristiana Brasil Maia,Petr Iakovlevitch Ekel,Gustavo Lus Soares. Evolutionary algorithms and the Preference Ranking Organization Method for Enrichment Evaluations as applied to a multiobjective design of shell-and-tube heat exchangers[J]. Case Studies in Thermal Engineering,2019.[19] Sachin Kallannavar,Suresh Mashyal,Manik Rajangale. Effect of tube layout on the performance of shell and tube heat exchangers[J]. Materials Today: Proceedings,2019.[20]Guocheng Yang,Guoliang Ding,Jie Chen,Wengang Yang,Suyang Hu. Experimental study on shell side heat transfer characteristics of two-phase propane flow condensation for vertical helically baffled shell-and-tube exchanger[J]. International Journal of Refrigeration,2019,107.[21] Lokesh Kalapala,Jaya Krishna Devanuri. Parametric investigation to assess the melt fraction and melting time for a latent heat storage material based vertical shell and tube heat exchanger[J]. Solar Energy,2019,193.[22] Energy; New Energy Findings from Gdansk University of Technology Reported (Thermal-Hydraulic Studies on the Shell-and-Tube Heat Exchanger with Minijets)[J]. Energy Weekly News,2019.[23] Zhengxuan Liu,Pengcheng Sun,Shuisheng Li,Zhun (Jerry) Yu,Mohamed El Mankibi,Letizia Roccamena,Tingting Yang,Guoqiang Zhang. Enhancing a vertical earth-to-air heat exchanger system using tubular phase change material[J]. Journal of Cleaner Production,2019,237.[24] Waqas Mughal,Chunling Xin,Yun Zhang,Imran samo,Masroor Abro,Yadong He. Numerical investigation of polymer melt heat transfer using Shell and tube heat exchanger in continuous polymer foaming process[J]. Chemical Engineering Research and Design,2019,151.[25] Vidyadhar H. Iyer,S. Mahesh,Rohit Malpani,Mandar Sapre,Anand J. Kulkarni. Adaptive Range Genetic Algorithm: A hybrid optimization approach and its application in the design and economic optimization of Shell-and-Tube Heat Exchanger[J]. Engineering Applications of Artificial Intelligence,2019,85.6.[26] Xin Gu,Tongtong Wang,Weijie Chen,Yuankun Luo,Zhilin Tao. Multi-objective optimization on structural parameters of torsional flow heat exchanger[J]. Applied Thermal Engineering,2019,161.[27] G.H. Farrahi,M. Chamani,A. Kiyoumarsioskouei,A.H. Mahmoudi. The effect of plugging of tubes on failure of shell and tube heat exchanger[J]. Engineering Failure Analysis,2019,104.
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