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Simulation of Regionally Ecological Land Based on a Cellular Automation Model: A Case Study of Beijing, China

机译:基于元胞自动化模型的区域生态用地模拟-以中国北京为例。

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Ecological land is like the “liver” of a city and is very useful to public health. Ecological land change is a spatially dynamic non-linear process under the interaction between natural and anthropogenic factors at different scales. In this study, by setting up natural development scenario, object orientation scenario and ecosystem priority scenario, a Cellular Automation (CA) model has been established to simulate the evolution pattern of ecological land in Beijing in the year 2020. Under the natural development scenario, most of ecological land will be replaced by construction land and crop land. But under the scenarios of object orientation and ecosystem priority, the ecological land area will increase, especially under the scenario of ecosystem priority. When considering the factors such as total area of ecological land, loss of key ecological land and spatial patterns of land use, the scenarios from priority to inferiority are ecosystem priority, object orientation and natural development, so future land management policies in Beijing should be focused on conversion of cropland to forest, wetland protection and prohibition of exploitation of natural protection zones, water source areas and forest parks to maintain the safety of the regional ecosystem.
机译:生态土地就像城市的“肝脏”,对公共健康非常有用。生态土地变化是自然和人为因素在不同尺度下相互作用的空间动态非线性过程。在此研究中,通过设置自然发展方案,面向对象的方案和生态系统优先级的方案,建立了细胞自动化(CA)模型,以模拟2020年北京生态土地的演变模式。在自然发展方案下,大部分生态用地将由建设用地和耕地代替。但是在面向对象和生态系统优先的情况下,生态用地面积会增加,特别是在生态系统优先的情况下。在考虑生态土地总面积,重点生态土地流失和土地利用空间格局等因素时,从优先级到次等级的情景是生态系统优先级,对象导向和自然发展,因此北京应着眼于未来的土地管理政策。退耕还林,湿地保护和禁止开发自然保护区,水源区和森林公园,以维护区域生态系统的安全。

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