Quantifying the Impact of Geomorphic and Topographic Evolution on the Environmental Planning of Spring Water Resources

Yangrui Wu, Chen Ma
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Abstract

This paper studies the impact of geomorphic and topographic evolution on environmental planning so as to lay the foundation for future rural environmental planning in Jinan. This paper analyzes the impact of landform evolution on environmental planning and introduces the types of spring rural settlements in hilly landforms and intermountain plains, respectively. On this basis, an artificial neural network is used to reflect the dynamic change law of spring water and is combined with a fuzzy evaluation method to evaluate the impact of underground space development in Jinan on spring water and human activities. Through empirical analysis, it is known that artificial neural networks can accurately detect the dynamic change law of spring water, and on this basis, fuzzy evaluation methods are used to design the impact of spring water-rural settlement landscape planning. The impact of spatial development on spring water is divided into four levels: the stronger impact area, the strong impact area, the general impact area, and the small impact area of underground space development on spring water, which account for about 1.036%, 1.001%, 0.371%, and 97.591% of the total area of the study area, respectively.
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量化地貌和地形演变对泉水资源环境规划的影响
本文研究了地貌和地形演变对环境规划的影响,为济南市未来的农村环境规划奠定基础。本文分析了地貌演变对环境规划的影响,并分别介绍了丘陵地貌和山间平原的泉水型农村居民点类型。在此基础上,利用人工神经网络反映泉水的动态变化规律,并结合模糊评价方法,评价济南市地下空间开发对泉水和人类活动的影响。通过实证分析可知,人工神经网络能够准确检测泉水的动态变化规律,在此基础上,采用模糊评价方法设计泉水-乡村聚落景观规划的影响。将空间开发对泉水的影响分为四个等级:地下空间开发对泉水的较强影响区、强影响区、一般影响区、小影响区,分别约占研究区总面积的 1.036%、1.001%、0.371%、97.591%。
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