On the dynamics of return collection in closed-loop supply chains

被引:6
|
作者
Huang, Shupeng [1 ]
Lu, Haiyan [2 ]
Lin, Junyi [3 ,5 ]
Ponte, Borja [4 ]
机构
[1] Chengdu Univ Technol, Coll Management Sci, Chengdu, Peoples R China
[2] Newcastle Univ, Newcastle Univ Business Sch, Newcastle Upon Tyne, England
[3] Xian Jiaotong Liverpool Univ, Int Business Sch Suzhou, Suzhou, Peoples R China
[4] Univ Oviedo, Dept Business Adm, Oviedo, Spain
[5] Suzhou Dushu Lake Sci & Educ Innovat Dist, BS236,IBSS Bldg,Suzhou Ind Pk, Suzhou 215123, Peoples R China
关键词
Closed-loop supply chains; system dynamics; bullwhip effect; stochastic capacity constraint; partial backlog in the return collection; INVENTORY MODEL; NETWORK DESIGN; BENDERS DECOMPOSITION; REVERSE LOGISTICS; IMPACT; BULLWHIP; PERFORMANCE; BEHAVIOR; SYSTEM; DEMAND;
D O I
10.1080/00207543.2023.2175174
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The effective operations of closed-loop supply chains (CLSCs) can help companies achieve sustainability goals and boost economic performance. In practice, CLSCs must collect used products, a complex process that is often constrained by collection station capacity. However, how collection station capacity influences the bullwhip effect and the dynamic performance of CLSCs remains unclear. Here, we develop a system dynamics model for CLSCs that integrates traditional manufacturing with remanufacturing and explore the effects of the stochastic capacity constraint of the collection station on the bullwhip effect of CLSCs. We find that, generally speaking, a collection station with looser or more stable capacity constraints tends to reduce bullwhip of CLSCs. However, pertinent interactions emerge between the relevant parameters; in some situations, reducing the capacity level of a collection station may be reasonable and beneficial when the stochastic capacity constraint is very stable, or when customer demand is highly variable. We also consider the partial backlog in return collection, a phenomenon associated with the stochastic capacity constraint of a collection station, and identify a new trade-off between CLSC sustainability and economic performance. Ultimately, our findings provide evidence that will guide managers' plans for the capacity management of return collection in CLSCs.
引用
收藏
页码:909 / 932
页数:24
相关论文
共 50 条
  • [31] Design Principles and Evaluation for Closed-loop Supply Chains
    Ji, Guojun
    ICOSCM 2007 - INTERNATIONAL CONFERENCE ON OPERATIONS AND SUPPLY CHAIN MANAGEMENT IN CHINA, 2007, 1
  • [32] The yield rate paradox in closed-loop supply chains
    Hosoda, Takamichi
    Disney, Stephen M.
    Zhou, Li
    INTERNATIONAL JOURNAL OF PRODUCTION ECONOMICS, 2021, 239
  • [33] Coordination and channel selection in closed-loop supply chains
    Zheng B.
    Yang C.
    Yang J.
    Cao X.
    1600, Systems Engineering Society of China (36): : 1180 - 1192
  • [35] A system dynamics model for dynamic capacity planning of remanufacturing in closed-loop supply chains
    Vlachos, Dimitrios
    Georgiadis, Patroklos
    Iakovou, Eleftherios
    COMPUTERS & OPERATIONS RESEARCH, 2007, 34 (02) : 367 - 394
  • [36] Sustainability in electrical and electronic equipment closed-loop supply chains: A System Dynamics approach
    Georgiadis, Patroklos
    Besiou, Maria
    JOURNAL OF CLEANER PRODUCTION, 2008, 16 (15) : 1665 - 1678
  • [37] Closed-loop optimal operational planning of supply chains with fast product quality dynamics
    Lejarza, Fernando
    Baldea, Michael
    COMPUTERS & CHEMICAL ENGINEERING, 2020, 132
  • [38] Strategic management of spare parts in closed-loop supply chains -: A system dynamics approach
    Spengler, T
    Schröter, M
    INTERFACES, 2003, 33 (06) : 7 - 17
  • [39] Return Policy and Buyback Contract in Closed-Loop Supply Chain
    Seksan, Jariya
    Amaruchkul, Kannapha
    ADVANCED SCIENCE LETTERS, 2018, 24 (11) : 8165 - 8170
  • [40] Revealing an invisible giant: A comprehensive survey into return practices within original (closed-loop) supply chains
    Krikke, Harold
    Hofenk, Dianne
    Wang, Yacan
    RESOURCES CONSERVATION AND RECYCLING, 2013, 73 : 239 - 250