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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Decision-Making on Reuse Modes of Abandoned Coal Mine Industrial Sites in Beijing Based on Environment-Economy-Society Matter-Element Models
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Decision-Making on Reuse Modes of Abandoned Coal Mine Industrial Sites in Beijing Based on Environment-Economy-Society Matter-Element Models

机译:基于环境经济 - 社会问题 - 元素模型的北京废弃煤矿工业场地重新利用模式的决策

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Redevelopment of abandoned coal mine industrial sites (ACMISs) has been one of the critical research topics in recent years. The ecological system of ACMISs, which involves environmental, economic, and social characteristics, is an environment-economy-society (EES) composite system. Many factors with conflicting effects are involved in the sustainable development of this system. The matter-element analysis method presented in this paper can transform counteracting problems among influencing factors into compatible problems. This analytical approach leads to a reduction of the uncertainty of these influencing factors and provides a suitable research method to solve the complexity when selecting the most suitable reuse mode of the ACMIS. In this study, eight state-owned ACMISs in the suburbs of Beijing were investigated, and a suitability evaluation index system based on the EES conceptual framework was built. Targeting four reuse modes, including the residential area, the park, the scientific research and office campus, and the business district, we established a matter-element decision-making model to evaluate the priority of reuse mode selections scientifically. The results of our calculations show that the optimal reuse mode for the Qianjuntai, Muchengjian, and Huapogen ACMISs is the park; for the Da’anshan and Changgouyu ACMISs is the business district; for the Datai ACMIS is the scientific research and office campus; and for the Wangping ACMIS is the residential area. Since the suitability level of reusing the Anjiatan ACMIS in any of the four reuse modes is relatively low, it is recommended to reserve it for governmental strategically reserved open space. These real cases demonstrate that the research method is feasible and can be applied to reuse mode decisions for similar abandoned coal mines.
机译:被遗弃的煤矿工业地点(ACMISS)重建成为近年来的关键研究主题之一。 Acmiss的生态系统,涉及环境,经济和社会特征,是一个环境 - 经济 - 社会(EES)复合体系。效应相互矛盾的因素涉及该系统的可持续发展。本文中提出的物质元素分析方法可以在兼容问题中转化影响因素之间的问题。这种分析方法导致降低这些影响因素的不确定性,并提供了一种在选择ACMIS最合适的重用模式时解决复杂性的合适的研究方法。在这项研究中,调查了八个国有的郊区的国有ACMIS,建立了基于EES概念框架的适用性评估指标体系。针对四种重用模式,包括住宅区,公园,科学研究和办公校园以及商业区,我们建立了一个问题 - 元素决策模型,以评估科学的重用模式选择的优先级。我们的计算结果表明,Qianjuntai,Multiengjian和Huapogen Acmiss的最佳重用模式是公园;对于Da'Anshan和ChangGouyu Acmiss是商业区;对于Datai Acmis是科学研究和办公室校园;而对于王平Acmis是住宅区。因为在任何四个复用模式的重复使用Anjiatan ACMIS的适用性级别是比较低的,建议保留它为政府策略性保留开放空间。这些实际情况表明,研究方法是可行的,可以应用于重用类似废弃的煤矿的模式决策。

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