Arbabi Hadi, Punzo Giuliano, Meyers Gregory, Tan Ling Min, Li Qianqian, Densley Tingley Danielle, Mayfield Martin
Department of Civil and Structural Engineering, University of Sheffield, Sheffield S1 3JD, UK.
Department of Automatic Control and Systems Engineering, University of Sheffield, Sheffield S1 3JD, UK.
R Soc Open Sci. 2020 Apr 15;7(4):200087. doi: 10.1098/rsos.200087. eCollection 2020 Apr.
Urban resource models increasingly rely on implicit network formulations. Resource consumption behaviours documented in the existing empirical studies are ultimately by-products of the network abstractions underlying these models. Here, we present an analytical formulation and examination of a generic demand-driven network model that accounts for the effectiveness of resource utilization and its implications for policy levers in addressing resource management in cities. We establish simple limiting boundaries to systems' resource effectiveness. These limits are found not to be a function of system size and to be simply determined by the system's average ability to maintain resource quality through its transformation processes. We also show that resource utilization in itself does not enjoy considerable size efficiencies with larger and more diverse systems only offering increased chances of finding matching demand and supply between existing sectors in the system.
城市资源模型越来越依赖于隐式网络公式。现有实证研究中记录的资源消费行为最终是这些模型所基于的网络抽象的副产品。在此,我们提出了一种通用的需求驱动网络模型的分析公式并进行了检验,该模型考虑了资源利用的有效性及其对城市资源管理政策杠杆的影响。我们为系统的资源有效性建立了简单的极限边界。发现这些极限不是系统规模的函数,而是仅由系统通过其转换过程维持资源质量的平均能力简单决定。我们还表明,资源利用本身并不具有显著的规模效率,更大、更多样化的系统只是增加了在系统现有部门之间找到匹配供需的机会。