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建筑企业与建材制造商在建筑和拆除废物资源利用中的演化博弈模型。

Evolutionary game model of construction enterprises and construction material manufacturers in the construction and demolition waste resource utilization.

机构信息

School of Management Engineering, Qingdao University of Technology, Qingdao, China.

School of Economics and Management, Tongji University, Shanghai, China.

出版信息

Waste Manag Res. 2023 Feb;41(2):477-495. doi: 10.1177/0734242X221122548. Epub 2022 Sep 22.

Abstract

With the continuous advancement of urbanization, a huge amount of construction and demolition waste (CDW) is generated in large-scaled construction activities, which has aggravated the problem of environmental pollution, waste of resources and destruction of city appearance. In the context of waste-free city, the recycling of CDW can reduce environmental pollution and promote the sustainable development of a city. However, only 20-30% of CDW in the world is recycled, showing a low rate of global CDW utilization. In order to improve the utilization rate, this paper selects construction enterprises and construction material manufacturers as main participants, applies evolutionary game theory to construct an evolutionary game model on the two parties' decision-making behaviors in CDW recycling, and uses MATLAB to make a numerical simulation. The aim of the model is to analyze the influence of various factors on the parties' decision-making behavior evolution and propose strategies to promote CDW utilization. The study found that the stable state of the CDW resource utilization system mainly depends on the difference between revenue and costs, the initial strategy, and the strength of the external environment; for the government, a supervision strategy is found to be necessary, and the best supervision level is 0.6. In the early stage of resource utilization of CDW, subsidies to construction material manufacturers should be increased to improve their initial participation; public participation can effectively improve the efficiency of government supervision, and its optimal participation level is greater than or equal to 0.4; under weak supervision, government penalty increases alone cannot prevent construction enterprises from illegally disposing of CDW. Therefore, the greater the difference, the positive the initial strategy, and the stronger the external environment, the more the behavior of the two participants tends to be {participation, use}. The results show that the government should establish effective supervision mechanisms and legal systems, improve supervision hotlines and information platforms, encourage the public to participate in CDW management and supervision, set appropriate rewards and punishments, strengthen supervision and management levels, reduce supervision costs, and ensure the effectiveness of construction management to improve the efficiency of cooperation between construction enterprises and construction material manufacturers.

摘要

随着城市化进程的不断推进,大规模建设活动产生了大量的建筑和拆除废物(CDW),加剧了环境污染、资源浪费和城市面貌破坏等问题。在无废城市背景下,CDW 的回收利用可以减少环境污染,促进城市的可持续发展。然而,全球只有 20%-30%的 CDW 得到了回收利用,全球 CDW 利用率较低。为了提高利用率,本文选取建筑企业和建筑材料制造商作为主要参与方,应用演化博弈理论构建了 CDW 回收利用中双方决策行为的演化博弈模型,并利用 MATLAB 进行数值模拟。模型旨在分析各因素对双方决策行为演化的影响,提出促进 CDW 利用的策略。研究发现,CDW 资源利用系统的稳定状态主要取决于收益与成本的差异、初始策略和外部环境的强度;对于政府而言,需要制定监管策略,最佳监管水平为 0.6。在 CDW 资源利用的早期阶段,应增加对建筑材料制造商的补贴,以提高其初始参与度;公众参与可以有效提高政府监管效率,其最佳参与水平大于或等于 0.4;在监管较弱的情况下,单独增加政府罚款并不能阻止建筑企业非法处置 CDW。因此,当差异越大、初始策略越积极、外部环境越强时,两个参与者的行为越趋于{参与、利用}。研究结果表明,政府应建立有效的监管机制和法律法规,完善监管热线和信息平台,鼓励公众参与 CDW 管理和监督,设置适当的奖惩措施,加强监管和管理水平,降低监管成本,确保建设管理的有效性,以提高建筑企业和建筑材料制造商之间合作的效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44b8/9972240/8e9cf7b8c719/10.1177_0734242X221122548-fig1.jpg

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