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Maximizing the use of energy in cities using an open systems network approach

机译:使用开放系统网络方法最大程度地利用城市能源

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The ability of cities to extract useful work from energy imports is analyzed by considering all of the flows of energy within the city as an ecological network and by accounting for the role the second law of thermodynamics plays in open systems such as cities. We construct a new procedure for generating a variety of flow balanced random networks to test the role that the network structure has on the city's ability to constructively destroy exergy, the useful component of energy in a process. We consider two network types, Erd?s-Rényi and scale-free networks, and illustrate how these types, and the various realizations of these types as defined by their control parameters, impact the quantity of exergy destroyed. Specifically we find that the Erd?s-Rényi network is best equipped to destroy exergy, but that the scale-free network provides more certainty in this ability for networks that are sparsely connected. This trade-off between the exergy destruction and certainty is observed in a study of Toronto. Overall the findings suggest that the selection of network topology in the development of open systems is an important factor (among others) in the successful development of open systems, their sustainability, and their ability to achieve maximum work extraction from energy imports.
机译:通过将城市内的所有能源流都视为一个生态网络,并考虑了热力学第二定律在城市等开放系统中的作用,分析了城市从能源进口中提取有用功的能力。我们构建了一个用于生成各种流量平衡随机网络的新程序,以测试网络结构对城市建设性破坏火用能量(过程中的有用成分)的能力的作用。我们考虑了两种网络类型,即Erd?s-Rényi网络和无标度网络,并说明了这些类型以及由其控制参数定义的这些类型的各种实现方式如何影响被破坏的火用量。具体而言,我们发现Erd?s-Rényi网络最能消除火用,但无标度网络为稀疏连接的网络提供了更大的确定性。在对多伦多的研究中观察到了在火用破坏与确定性之间的权衡。总的来说,研究结果表明,在开放系统的开发中选择网络拓扑是成功开发开放系统,其可持续性以及从能源进口中获取最大功的能力的重要因素。

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