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The force applied by fluids against a surface, known as hydrostatic pressure, initiates the transfer of fluid among different compartments. Within our blood vessels, the blood's hydrostatic pressure is a result of the heart's pumping action. At the arteriolar end of capillaries, hydrostatic pressure (capillary blood pressure) exceeds the opposing colloid osmotic pressure created primarily by plasma proteins like albumin. This discrepancy in pressure propels plasma and nutrients from the...
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A slider-crank mechanism converts rotational motion from the crank into linear motion of the slider or vice versa. This mechanism consists of three main parts: the crank, the connecting rod, and the slider. The movement of the slider-crank is an example of general plane motion as the fluctuating angle between the crank and the connecting rod. Consider a segment AB where point A is at the end of the slider and point B is on the diametrically opposite end to point A, on a crack. The variance in...
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Social traps are negative situations where people get caught in a direction or relationship that later proves to be unpleasant, with no easy way to back out of or avoid. The concept was orignally introduced by John Platt who applied psychology to Garrett Hardin's "Tragedy of the Commons", where in New England herd owners could let their cattle graze in the common ground. This situation seems like a good idea, but an individual could have an advantage. If they owned...
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The Reynolds transport theorem provides a framework to relate the time rate of change of an extensive property within a system to that in a control volume, which is crucial for analyzing fluid dynamics. Extensive properties, such as mass, velocity, acceleration, temperature, and momentum, can be expressed in terms of the mass of a fluid portion. These properties are called extensive because they depend on the system's size, while intensive properties are their corresponding values per unit...
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相关实验视频

Updated: Jun 28, 2025

Trajectory Data Analyses for Pedestrian Space-time Activity Study
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从共享自行车系统中抽象出移动流.

Fabio Kon1,2, Éderson Cássio Ferreira1, Higor Amario de Souza1

  • 1Department of Computer Science, University of São Paulo, São Paulo, Brazil.

Public transport (Heidelberg, Germany)
|April 16, 2024
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概括

这项研究引入了一种分析共享自行车数据的新方法,支持城市规划人员为更好的城市流动性和可持续性做出数据驱动的决策. 该工具可视化了流动流动,有助于制定政策.

关键词:
应用案例研究应用案例研究自行车共享服务数据科学是数据科学.流动性 流动性 流动性开源软件是开源的软件.视觉化的可视化

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科学领域:

  • 城市规划 城市规划
  • 运输科学 运输科学
  • 数据科学数据科学数据科学

背景情况:

  • 自行车和自行车共享系统对于城市流动性,可持续性和生活质量越来越重要.
  • 城市往往缺乏先进的工具来分析自行车共享系统产生的丰富数据.
  • 目前的城市规划依赖于传统方法,阻碍了基于证据的自行车基础设施政策制定.

研究的目的:

  • 引入一种新的分析方法来处理大规模的共享单车旅行数据.
  • 开发一个可视化平台,抽象和分析城市流动流.
  • 支持公共当局制定数据驱动的城市自行车政策和规划决策.

主要方法:

  • 开发了一种新的分析方法来处理数以百万计的共享单车旅行.
  • 创建了一个可视化平台来展示移动流和分析工具.
  • 将该方法应用于大波士顿共享自行车系统的案例研究.

主要成果:

  • 该方法成功处理了大量的共享自行车数据,抽象了关键的移动流.
  • 大波士顿地区的案例研究为共享自行车系统的使用模式提供了新的见解.
  • 专家用户发现该方法和工具非常有用,易于使用,并打算采用它.

结论:

  • 新的分析方法和可视化平台有效支持数据驱动的城市流动性规划.
  • 该工具为决策者提供了有价值的见解,旨在加强自行车基础设施和城市宜居性.
  • 成功的案例研究和积极的专家反表明,在城市规划中广泛采用有很大的潜力.