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基于共生理论的绿色建筑产业链构建及稳定性研究

发布时间:2018-03-01 07:39

  本文关键词: 绿色建筑 绿色建筑产业链 共生理论 稳定性 出处:《青岛理工大学》2016年硕士论文 论文类型:学位论文


【摘要】:近年来绿色建筑的发展一直备受关注,在提高企业的经济效益,减少自然资源的消耗以及保护环境等诸多方面都表现出了传统建筑所不可比拟的优势。我国现阶段正处于城镇化快速发展时期,绿色建筑产业的健康快速发展是转变城镇建设模式和经济发展方式的重要途径。然而由于我国绿色建筑产业崭露头角,绿色建筑相关产业横向上分散于节地、节能、节水、节材、环保等各个领域,纵向上分布于建设项目全寿命周期上中下游的各个阶段,产业链条结构的单一化和分散化导致链条横纵向集成性和关联性的缺失,弱化了对相关产业的影响而无法产生集聚效应。运用共生思想将绿色建筑产业链条结构分散问题转化为共生视角下绿色建筑产业链上各相关主体之间的合作与协同问题,构建绿色建筑产业链共生系统并对其稳定性问题展开分析和评价,从另一种角度出发试图对绿色建筑产业的发展问题进行分析,以求为解决绿色建筑产业发展问题提供一种新的思路。在对绿色建筑产业链、共生理论、稳定性理论等相关研究成果进行归纳分析的基础上,发现了绿色建筑产业链和共生系统两个领域知识交叉和融合的可能性,以此为契机构建了绿色建筑产业链共生系统,并从共生单元、共生模式和共生环境三个方面对其进行了详细的阐述。针对绿色建筑产业链的稳定性问题分别从静态和动态角度进行分析:静态角度以绿色建筑产业链共生系统各成员企业的收益分配为切入点,采用Shapley值法和Nash均衡法对利益分配稳定解进行求解;动态角度借鉴微分稳定性理论通过建立扩展的Logistic模型,描述不同共生关系下的绿色建筑产业链成员企业的成长情况,并对可能存在的共生关系逐一分析。最后综合前人研究成果构建了绿色建筑产业链共生系统稳定性评价体系,并采用主客观权重综合赋权法和模糊综合评价法对其进行评价,例举福p\天麓湖项目进行了实证分析,且提出了相应的对策建议。
[Abstract]:In recent years, the development of green buildings has been paid close attention to, in order to improve the economic benefits of enterprises. Many aspects, such as reducing the consumption of natural resources and protecting the environment, have shown unparalleled advantages over the traditional buildings. China is in the period of rapid urbanization at the present stage. The healthy and rapid development of green building industry is an important way to change the mode of urban construction and the mode of economic development. However, due to the emergence of green building industry in China, green building related industries are scattered horizontally in land saving, energy saving, and water saving. Material saving, environmental protection and other fields, vertical distribution in the construction project life cycle in the middle and lower stages of each stage, the single and decentralized industrial chain structure led to the chain horizontal and vertical integration and lack of relevance, It weakens the influence on related industries and can not produce agglomeration effect. By using symbiotic thought, the problem of the dispersion of the industrial chain structure of green building is transformed into the cooperation and coordination among the relevant subjects in the green building industry chain from the perspective of symbiosis. To construct green building industry chain symbiosis system and analyze and evaluate its stability, from another angle, try to analyze the development of green building industry. In order to solve the problem of green building industry development to provide a new way of thinking. On the basis of the green building industry chain, symbiosis theory, stability theory and other related research results are summarized and analyzed. The possibility of knowledge intersection and integration between green building industry chain and symbiotic system is found, and the symbiotic system of green building industry chain is constructed by taking this opportunity, and the symbiotic unit is used as a symbiotic unit. Three aspects of symbiotic mode and symbiotic environment are elaborated in detail. The stability of green building industrial chain is analyzed from the static and dynamic point of view: the green building industrial chain symbiotic system from the static point of view. The income distribution of each member enterprise is the entry point, The Shapley value method and Nash equilibrium method are used to solve the stable solution of interest distribution, and the dynamic theory of differential stability is used for reference to describe the growth of green building industry chain member enterprises under different symbiotic relationships through the establishment of extended Logistic model. Finally, the stability evaluation system of green building industry chain symbiotic system is constructed by synthesizing the previous research results, and the subjective and objective weight comprehensive weighting method and fuzzy comprehensive evaluation method are used to evaluate the system. An example of Fup\ Tianlu Lake project is given, and the corresponding countermeasures and suggestions are put forward.
【学位授予单位】:青岛理工大学
【学位级别】:硕士
【学位授予年份】:2016
【分类号】:F426.92;TU201.5

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