论文著作:
[01]Yang L, Yang Z, Akram N, Wang Bohong, Tao Hengcong, Chang Chenglin*, Mo WL, Shen WF*, Zhang Nan, Robin Smith. An integrated algorithm framework for multi-objective optimization of heat exchanger networks considering temperature-dependent heat capacity. Chemical Engineering Science. 2025; 305: 121183. (SCI期刊论文)
[02]Yang L, Yang Z, Akram N, Chang Chenglin*, Mo WL, Weifeng Shen, Nan Zhang, Robin Smith. A hybrid algorithm framework for heat exchanger networks synthesis considering the optimal locations of multiple utilities. Chemical Engineering Science. 2025; 301: 120732. (SCI期刊论文)
[03]Lu Y, Jingzheng Ren, Mario Eden, Chang Chenglin*, Weifeng Shen. A penalty-free hybrid algoritm framework based on feasible stream matching principle for large-scale heat exchanger networks synthesis. Chemical Engineering Science. 2024; 298: 120419. (SCI期刊论文)
[04]Chang Chenglin, Lin Q, Wang J, Yang Y. Globally optimal design of refinery hydrogen networks with pressure discretization. Chemical Engineering Science. 2022, 247: 117021. (SCI期刊论文)
[05]Chang Chenglin, Liao, Costa A.L.H, Bagajewicz MJ. Globally optimal synthesis of heat exchanger networks. Part III: Non-isothermal mixing in minimal and non-minimal networks. AIChE Journal. 2021, 67: e17393. (SCI期刊论文)
[06]Chang Chenglin, Liao, Costa ALH, Bagajewicz MJ*. Globally optimal synthesis of heat exchanger networks. Part II: Non-minimal networks. AIChE Journal. 2020, 66: e16264. (SCI期刊论文)
[07]Chang Chenglin, Peccini A, Wang Y, Costa A.L.H, Bagajewicz MJ*. Globally optimal synthesis of heat exchanger networks. Part I: Minimal networks. AIChE Journal. 2020, 66: e16267. (SCI期刊论文)
[08] 李海东,张奇琪,杨路,Akram Naeem,常承林*,莫文龙,申威峰.采用智能进化算法的管壳式换热器详细设计研究.化工学报.2025,76(01): 241-255.(EI期刊论文)
[09]Chang Chenglin*. A mathematical model for refinery hydrogen network synthesis integrating multi-stage compressors. International Journal of Hydrogen Energy. 2022, 47: 37677-37693. (SCI期刊论文)
[10]Chang Chenglin*, Shen WF. Global optimization of the design of intensified shell and tube heat exchanger using tube inserts. The Canadian Journal of Chemical Engineering. 2024, 102(1): 350. (SCI期刊论文)
[11]Chang Chenglin, Liao Z, Costa A.L.H, Bagajewicz MJ. Globally optimal design of intensified shell and tube heat exchangers using complete set trimming. Computers & Chemical Engineering. 2022, 158: 107644. (SCI期刊论文)
[12]Chang Chenglin, Liao Z, Bagajewicz MJ. New superstructure-based model for the globally optimal synthesis of refinery hydrogen networks. Journal of Cleaner Production. 2021, 292: 126022. (SCI期刊论文)
[13]Chang Chenglin, Wang Y, Feng X. Optimal synthesis of multi-plant heat exchanger networks considering both direct and indirect methods. Chinese Journal of Chemical Engineering. 2020, 28: 456-465. (SCI期刊论文)
[14]Chang Chenglin, Wang Y, Ma J, Chen X, Feng X. An energy hub approach for direct interplant heat integration. Energy. 2018, 159: 878-890. (SCI期刊论文)
[15]Chang Chenglin, Chen XL, Wang Y, Feng X. Simultaneous synthesis of multi-plant heat exchanger networks using process streams across plants. Computers & Chemical Engineering. 2017, 101: 95-109. (SCI期刊论文)
[16]Chang Chenglin, Chen XL, Wang Y, Feng X. Simultaneous optimization of multi-plant heat integration using intermediate fluid circles. Energy. 2017, 121: 306-317. (SCI期刊论文)
[17]Chang Chenglin, Chen XL, Wang Y, Feng X. An efficient optimization algorithm for waste Heat Integration using a heat recovery loop between two plants. Applied Thermal Engineering. 2016, 105: 799-806. (SCI期刊论文)
[18]Chang Chenglin, Wang Y, Feng X. Indirect heat integration across plants using hot water circles. Chinese Journal of Chemical Engineering. 2015, 23: 992-997. (SCI期刊论文)
[19]Song RR#, Chang Chenglin#, Tang QK, Wang YF, Feng X. EI-Halwagi MM. The implementation of inter-plant heat integration among multiple plants. Part II: The mathematical model. Energy. 2017, 135: 382-393. (共同第一作者SCI期刊论文)
[20]Chang Chenglin, Wang Y, Feng X, Zhang P. Efficient Solution Strategy for Stage-wise MINLP Model of Interplant Heat Integration using Heat Recovery Loop. Chemical Engineering Transactions. 2015, 45: 67-72. (EI期刊论文)
[21]Chang Chenglin, Wang Y, Feng X, Zhang P. A Two Step Methodology for Inter-Plant Heat Integration Design. Chemical Engineering Transactions. 2015, 45: 73-79. (EI期刊论文)
[22]李孟原等,常承林*.具有柔性拓扑结构的厂际多周期换热网络优化.化工学报.2023, 74(11): 4634-4644. (EI期刊论文)
[23]崔祎等,常承林*.采用扭曲片内插件的管壳式换热器自动设计新方法.化工进展.2024, 43(09): 4824-4832. (EI期刊论文)
[24]崔祎等,常承林*.1种管壳式冷凝器优化设计新方法. 化工生产与技术.2022, 28: 26-31. (核心期刊论文)
[25]杨路等,Akram Naeem,常承林*,莫文龙,申威峰.耦合有机朗肯循环的换热网络全局优化.华东理工大学学报(自然科学版).2024, 50: 668-677. (核心期刊论文)
[26]Yang L, Liu SS, Chang Chenglin, Yang SY*, Shen WF*. An efficient and invertible machine learning-driven multi-objective optimization architecture for light olefins separation system. Chemical Engineering Science. 2024, 285: 119553. (SCI期刊论文)
[27]Dong X, Zhang CJ, Peng XY, Chang Chenglin, Liao Z, Yang Y, Sun JY, Wang JD, Yang YR. Simultaneous design of heat integrated water allocation networks considering all possible splitters and mixers. Energy. 2022, 238: 121916. (SCI期刊论文)
[28]Lin QC, Chang Chenglin, Liao Z, Sun JY, Jiang BB, Wang JD, Yang YR. Efficient Strategy for the Synthesis of Work and Heat Exchange Networks. Industrial & Engineering Chemistry Research. 2021, 60: 1756-1773. (SCI期刊论文)
[29]Wang Y, Wan ZH, Chang Chenglin, Feng X. A game theory based method for inter-plant heat integration considering cost allocation. Chinese Journal of Chemical Engineering. 2020, 28: 1652-1660. (SCI期刊论文)
[30]Zhang Z, Deng C*, Chang Chenlin, Kong FX, Lee JY, Denny K.S.N, Feng X. Optimal Design of a UF-RO Treatment System for Shale Gas Fracturing Flowback Wastewater. Industrial & Engineering Chemistry Research. 2020, 59: 5905-5920. (SCI期刊论文)
[31]Ma J, Chang Chenglin, Wang Y, Feng X. Multi-objective optimization of multi-period interplant heat integration using steam system. Energy. 2018, 159: 950-960. (SCI期刊论文)
[32]Wang Y, Chang Chenglin, Feng X. A systematic framework for multi-plants heat integration combining direct and indirect heat integration methods. Energy. 2015, 90: 56-57. (SCI期刊论文)
[33]Wang Y, Feng X, Chang Chenglin. Heat integration between plants with combined integration patterns. Chemical Engineering Transactions. 2014, 39: 1747-1752. (EI期刊论文)
[34]Chen X, Chang Chenglin, Wang Y, Feng X. An energy hub approach for multiple-plants heat integration. Chemical Engineering Transactions. 2016, 52: 571-576. (EI期刊论文)
科研项目:
01.国家XX部,考虑设备详细设计的常减压工艺换热网络优化,国家级,2025.01-2027.12, 主持
02.国家自然科学基金青年科学基金,换热网络模型算法,国家级,2021.01-2023.12,结题,主持
03.工业控制技术全国重点实验室课题,换热器详细设计,省部级,2025.06-2027.05,在研,主持
04.液-液传热管壳式换热器自动设计软件开发,企业横向,2025.08-2026.12,在研,主持
05.新疆xx化工有限公司,煤气化过程能量高效利用技术研究,横向,2024.09-2026.08,主持
06.宁夏煤制油公司精氪氙提取工艺技术开发项目,企业横向,2025.03-2026.02,项目联系人
07.化工设计基础数字化课程建设,数字化课程建设项目,2024.12-2026.01,课程负责人/主持
08.人工智能赋能化工设计课程群项目,线上线下混合式,2025.04-2026.03,执行负责人
09.中国博士后基金会特别资助项目,省部级,2019.08-2022.02,结题,主持
10.中国博士后基金会面上资助项目,省部级,2020.05-2022.02,结题,主持
11.重庆市出站来渝博士后择优资助项目,省部级,2024.06-2026.05,在研,主持
12.重庆大学科研启动项目,校级,2023.01-2027.12,主持,在研