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Omnipresent sprawl? A review of urban simulation models with respect to urban shrinkage

机译:无所不在的蔓延?关于城市收缩的城市模拟模型综述

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摘要

Simulation models on urban land-use change help in understanding urban systems and assist in urban planning. One of the challenges of simulating urban regions in Europe as well as in North America or Japan is urban shrinkage, where deindustrialisation, massive population losses, and ageing cause unforeseen (or unexpected) commercial and housing vacancies in cities. In order to set up a conceptual framework for model improvement to assist such challenges, we review recent urban land-use-change simulation models, using four different modelling approaches: system dynamics, linked transport-urban models, cellular automata, and agent-based modelling. The focus of the review is to assess the causalities and feedback mechanisms that were implemented in these models. The results show that simulation models are very heterogeneous in implemented mechanisms leading to urban land-use dynamics. No single model fulfils all of the criteria required to model urban shrinkage in a spatially explicit way. However, system-dynamic models that are documented in the literature can serve as a good starting point for spatially nonexplicit simulation, and one example was found for linked transport-urban models which encompasses aspects of urban shrinkage. The potential of cellular automata is unclear as spatially explicit data on vacancies to feed this class of models is usually not available. Agent-based models appear to be the most promising approach for spatially explicit modelling of urban shrinkage.
机译:城市土地利用变化的模拟模型有助于理解城市系统并有助于城市规划。在欧洲以及北美或日本模拟城市地区的挑战之一是城市的萎缩,去工业化,大量人口流失和老龄化导致城市中无法预料(或无法预料)的商业和住房空缺。为了建立模型改进的概念框架以应对此类挑战,我们使用四种不同的建模方法回顾了最近的城市土地利用变化模拟模型:系统动力学,链接的运输城市模型,元胞自动机和基于代理的模型造型。审查的重点是评估在这些模型中实施的因果关系和反馈机制。结果表明,仿真模型在导致城市土地利用动态的已实施机制中非常不同。没有一个单一的模型能够以空间明确的方式满足模拟城市萎缩所需的所有标准。然而,文献中记载的系统动力学模型可以作为空间非明晰模拟的一个很好的起点,并且发现了一个包含城市缩小方面的联动交通-城市模型的例子。细胞自动机的潜力尚不清楚,因为通常无法获得关于空缺的空间显式数据来提供此类模型。基于智能体的模型似乎是对城市缩减进行空间显式建模的最有前途的方法。

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  • 来源
    《Environment and Planning》 |2010年第2期|p.265-283|共19页
  • 作者单位

    UFZ - Helmholtz Centre for Environmental Research, Department of Computational Landscape Ecology, Permoserstrasse 15, 04318 Leipzig, Germany;

    UFZ - Helmholtz Centre for Environmental Research, Department of Computational Landscape Ecology, Permoserstrasse 15, 04318 Leipzig, Germany;

    UFZ - Helmholtz Centre for Environmental Research, Department of Computational Landscape Ecology, Permoserstrasse 15, 04318 Leipzig, Germany;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:37:16

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