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An approach to determine the frequency of bridges in an urban context: The case of European cities

机译:确定城市环境中桥梁频率的方法:以欧洲城市为例

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The purpose of this paper is to determine the existence of a possible expected bridge frequency (number of bridges per unit of measurement) in an urban context. To achieve this, a method was developed to calculate the real frequency of crossing points already built over water bodies in inner cities. The method was based on collecting different measurable data of different cities using images from Google Earth. Furthermore, this method was applied to evaluate bridges built in several European cities that have a river. The results show that there is a clear link between the frequency of urban bridges and the width of the river, expressed by a power law function which defines bridge frequency as an inverse function of river width. Also, there is no direct link between the size of the city and the number of crossing points built in the city. Additionally, two new urban development projects on rivers were evaluated by using the defined power law function. Thus, it was concluded that future urban development close to rivers could use this function to decide the number of new crossing points. Furthermore, the ideal distance between consecutive urban bridges has been determined.
机译:本文的目的是确定在城市环境中可能存在的预期桥梁频率(每测量单位的桥梁数量)的存在。为了达到这个目的,开发了一种方法来计算已经在内部城市的水体上建立的交叉点的真实频率。该方法基于使用Google Earth的图像收集不同城市的不同可测量数据。此外,该方法还用于评估在有河流的多个欧洲城市中建造的桥梁。结果表明,用幂律函数表示的城市桥梁频率与河流宽度之间存在明确的联系,幂律函数将桥梁频率定义为河流宽度的反函数。同样,城市的规模与城市中建立的过境点的数量之间没有直接联系。此外,使用定义的幂律函数对两个新的河流城市开发项目进行了评估。因此,得出的结论是,未来靠近河流的城市发展可以使用此功能来确定新的交叉点的数量。此外,已经确定了连续城市桥梁之间的理想距离。

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