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Suitability Evaluation of Urban Construction Land Based on an Approach of Vertical-Horizontal Processes

机译:基于垂直-水平过程的城市建设用地适宜性评价

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Suitability evaluation of urban construction land is critical for both urban master planning and the proper utilization of land resources. Using the Beihu New District of Jining City, China, as a case study, this paper introduces a novel research approach for comprehensive suitability evaluation based on vertical-horizontal processes. First, by considering both the land development potential and ecological constraint resistance, the potential-resistance (PR) model was developed and used to analyze the suitability for urban construction of vertical processes. Then, given the results of the vertical suitability analysis, the current urban built-up areas were selected as the sources of urban expansion, and the minimum cumulative resistance (MCR) model was applied to evaluate the suitability for urban development in terms of horizontal processes. The study area was regionalized into four categories—priority, suitable, restricted, and prohibited areas—which were defined based on the development threshold. The results showed that restricted and prohibited areas for urban construction occupied most of the study area. Totally, 648.51 km 2 was categorized as restricted or prohibited, accounting for 12.89% and 54.75% of the total area, respectively. Priority and suitable areas for urban construction covered a total area of 310.37 km 2 , accounting for 16.55% and 15.81% of the total area, respectively. These areas were mainly distributed around urban centers and urban built-up areas. These findings reflect the substantial potential for future urban development and construction in the study area. The newly developed principles and methods of suitability evaluation for urban construction land presented in this paper provide more appropriate scales and spatial location for urban development and an ecological baseline for future urban growth.
机译:城市建设用地的适宜性评价对于城市总体规划和土地资源的合理利用都至关重要。本文以济宁市北湖新区为例,介绍了一种基于垂直-水平过程的综合适宜性评价的新研究方法。首先,通过同时考虑土地开发潜力和生态约束阻力,建立了电位-阻力(PR)模型,并用于分析垂直过程中城市建设的适宜性。然后,根据垂直适应性分析的结果,选择当前的城市建成区作为城市扩展的来源,并应用最小累积阻力(MCR)模型从水平过程评估城市发展的适应性。研究区域分为四个类别-优先,合适,限制和禁止区域-根据发展阈值进行定义。结果表明,城市建设的禁区和禁区占据了大部分研究区域。共有648.51 km 2被归类为限制或禁止区域,分别占总面积的12.89%和54.75%。优先建设和城市建设适宜面积共计310.37 km 2,分别占总面积的16.55%和15.81%。这些区域主要分布在城市中心和城市建成区周围。这些发现反映了研究区域未来城市发展和建设的巨大潜力。本文提出的新近开发的城市建设用地适宜性评价原则和方法,为城市发展提供了更合适的尺度和空间位置,为未来城市发展提供了生态基线。

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