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A 3D dynamic visualization method coupled with an urban drainage model

机译:与城市排水模型相结合的3D动态可视化方法

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摘要

The urban drainage model is an important tool for the management and decision-making around an urban drainage network. Owing to urban drainage networks' complex distribution, existing model analysis methods have gradually exposed problems of insufficient utilization of spatial information, weak coupling and analytical capacity of multi-source heterogeneous data, and poor human-computer interaction. By coupling an urban drainage model with 3D GIS technology and 3D visualization technology, this study presents a 3D dynamic visualization method of an urban drainage model (3DDVM-UDM). A case study from Chaohu, China, is used to demonstrate the method. The environmental information and distributions of pipe network objects in 3D space were presented. The urban drainage model can be edited and simulated in the 3D environment, and a 2D flooding simulation method was also established. Multiple model results were dynamically and simultaneously visualized in the pipe network entity models. By coupling and comparing the model results under different rainfall return periods, various information was intuitively analyzed, such as the water level and water quality differences of each pipe and node, and the spatial distribution differences of fully filled pipes, overflowed nodes and buildings influenced by node overflow. The operation state of a drainage pipe network can be systematically analyzed by intuitively combining with the attribute information of a pipe network, 3D spatial information and other relevant data. This study provides a feasible theory and method to assist in environmental management and decision-making, to facilitate communication between different fields, and to promote a shift in analysis from 2D to the combination of 2D and 3D.
机译:城市排水模型是城市排水网络围绕管理和决策的重要工具。由于城市排水网络的复杂分布,现有的模型分析方法逐渐暴露了不足的空间信息,较弱的多源异构数据的耦合和分析能力的问题,以及差的人机相互作用。本研究通过耦合3D GIS技术和3D可视化技术的城市排水模型,介绍了城市排水模型的3D动态可视化方法(3DDVM-UDM)。中国巢湖的案例研究用于证明该方法。介绍了3D空间中管网对象的环境信息和分布。可以在3D环境中进行编辑和模拟城市排水模型,也建立了2D泛洪模拟方法。在管网实体模型中动态地和同时可视化多种模型结果。通过耦合和比较模型结果在不同的降雨返回时期下,各种信息直观地分析,例如每个管道和节点的水位和水质差异,以及完全填充管道的空间分布差异,溢出的节点和建筑物节点溢出。通过直观地与管道网络,3D空间信息和其他相关数据的属性信息直观地组合,可以系统地分析排水管网络的操作状态。本研究提供了一种可行的理论和方法,以协助环境管理和决策,促进不同领域之间的沟通,并促进2D与2D和3D组合的分析转变。

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