基于多流的成都-重庆城市聚集区网络模式及其影响因素的分析
Xiaomin Wang1,2, Zhiwei Ding1,2
1The College of Geography and Environment Science, Research Center of Regional Development and Planning, Henan University, Kaifeng, 475004, China.
Heliyon
|May 17, 2024
概括
成都-重庆城市网络显示出密度和效率的发展,形成了一个核心轴结构,有不同的城市组. 影响该网络的关键因素包括位置,经济和科学发展水平.
科学领域:
- 城市和区域经济学
- 网络科学 网络科学
- 空间分析 空间分析
背景情况:
- 经济,信息,创新和人口的跨区域流动正在加强.
- 了解综合城市网络结构对于区域发展至关重要.
研究的目的:
- 为成都-重庆城市聚集区构建一个多流集成网络模型.
- 分析这个城市网络的空间模式和影响因素.
主要方法:
- 社交网络分析分析
- 空间分析技术 空间分析技术
- 网络模型的构建.
主要成果:
- 综合网络的密度和效率正在从初级到中等层面过渡.
- 一个多面体的金字塔结构,成都-重庆作为核心轴被观察到,与升高的轴等级.
- 确定了四个不同的城市群体,表现出地理邻近效应,具有更紧密的集团内部连接和多样化的集团内部连接.
结论:
- 成都-重庆城市网络正在发展,其特点是核心轴结构和集群集群.
- 位置,经济发展,企业级别,研发投资,科学发展和政府支持显著地塑造了网络.
- 信息应用,运输和人力资本目前对网络形成的影响较小.
相关概念视频
Eulerian and Lagrangian Flow Descriptions
1.4K
Fluid flow analysis is critical in many scientific and engineering disciplines, and two principal approaches are used to describe this flow: the Eulerian and Lagrangian methods. These methods offer different perspectives on monitoring and analyzing the motion of fluids, each with distinct advantages depending on the scenario.
The Eulerian method focuses on fixed points in space where fluid properties, such as velocity, pressure, and temperature, are observed as the fluid moves between these...
The Eulerian method focuses on fixed points in space where fluid properties, such as velocity, pressure, and temperature, are observed as the fluid moves between these...
1.4K
Manipulation and Analysis
23
GIS manipulation and analysis functions are vital for decision-making and planning. These activities range from data retrieval tasks, such as selecting information based on specific criteria, to advanced analytical techniques that address complex spatial problems.One critical GIS analysis method is overlaying, which combines multiple data layers to examine impacts. For example, overlaying a river-dammed lake boundary with road networks can identify affected infrastructure. Another common...
23
Introduction to Types of Flows
1.2K
Fluid flows are categorized by dimensionality and behavior, with one-dimensional flow being the simplest form, where properties like velocity and pressure change only along a single axis. Water moving through straight pipes exemplifies this flow type, as variations in other directions are minimal. One-dimensional analysis helps simplify understanding such flows, focusing solely on changes along the pipe's length.
Two-dimensional flow involves changes in both length and height, as seen in...
Two-dimensional flow involves changes in both length and height, as seen in...
1.2K
Plane Potential Flows
379
Plane potential flows simplify fluid motion by assuming the fluid to be irrotational and incompressible. These characteristics allow these flows to be described by a velocity potential function, ϕ, representing the flow speed in a given direction, and a stream function, ψ, that visualizes the flow path, both governed by Laplace's equation. These parameters help in estimating flow patterns, velocity distributions, and pressure fields around various hydraulic structures.
Uniform...
Uniform...
379
Gradually Varying Flow
44
Gradually varying flow (GVF) in open channels describes situations where water depth changes slowly along the channel due to factors like non-uniform bed slope, channel shape variations, or obstructions. This flow type occurs when the depth adjusts gradually to balance gravitational forces, shear forces, and energy requirements, resulting in a low rate of depth change.Characteristics of Gradually Varying FlowGVF is commonly observed in natural streams, rivers, and canals, where flow depth...
44


