Study on dissipative structure of China's building energy service industry system based on brusselator model

Study on dissipative structure of China's building energy service industry system based on brusselator model
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基于brusselator模型的我国建筑节能服务产业体系耗散结构研究

DOI:
10.1016/j.jclepro.2017.02.198
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发表时间:
2017-05-01
影响因子:
11.1
通讯作者:
Zhang, Xiaoling
Zhang, Xiaoling
中科院分区:
环境科学与生态学1区
文献类型:
--
作者:
Deng, Xun;Zheng, Saina;Zhang, Xiaoling

文献摘要

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建筑业是能源的主要消费者,约占中国能源消费的三分之一。为了实现可持续发展和低碳社会,必须更有效地使用能源。建筑节能服务是通过提高现有高能耗建筑的能源效率来实现低碳建筑的一种有吸引力的方式。经过几十年的发展,我国建筑能源服务业取得了巨大的成就。然而,我国建筑能源服务业的发展仍存在着巨大的障碍。本研究试图从复杂性理论的角度来解决问题,以更深入地理解产业协同机制。建筑能源服务产业系统可以看作是一个耗散系统,通过一系列相互关联的子系统之间的相互作用,可以自发地由无序向有序发展。本研究利用熵权模型,建立了建筑能源服务产业系统的结构方程,并根据熵值法建立了建筑能源服务产业系统的耗散性检验方程。根据研究结果,提出了促进建筑能源服务业发展的有效建议,拓展了耗散理论在可持续建筑领域的应用,为政策制定提供了科学依据。(c)2017爱思唯尔有限公司版权所有
The building sector is a major consumer of energy, accounting for approximately one third of the energy consumption in China. To achieve a sustainable and low-carbon society, it is essential to use energy more efficiently. Building Energy Service is an attractive way towards low carbon buildings through improving energy efficiency of existing high-energy-consumption buildings. After decades of development, the building energy service industry has made great achievements in China. However, there are still massive barriers restricting the development of building energy service industry. This research attempts to solve problems from the point of complexity theory for a deeper understanding of the synergy mechanism of the industry. The building energy service industry system can be regarded as a dissipative system which can develop from disorder to order spontaneously with the interaction between series of interrelated subsystems. Brusselator Model is utilized in this research to develop the structure of building energy service industry system and build an equation to verify whether the building energy service industry system is dissipative in accordance with the entropy method. According to the results, several effective suggestions are proposed to promote the building energy service industry development and this research is expanding the dissipative theory in the sustainable construction field, providing scientific basis for the policy making. (c) 2017 Elsevier Ltd. All rights reserved.