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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >Determining an influencing area affecting walking speed on footpath: A case study of a footpath in CBD Bangkok, Thailand
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Determining an influencing area affecting walking speed on footpath: A case study of a footpath in CBD Bangkok, Thailand

机译:确定影响人行道步行速度的影响区域:以泰国曼谷CBD人行道为例

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摘要

Intuitively, the crowd density in front of a pedestrian will affect his walking speed along a footpath. Nevertheless, the size of the influencing area affecting walking speed has rarely been scrutinized in the past. This study attempts to determine the distance in front of pedestrians that principally affects their walking speed under normal conditions, using a case study of a footpath in Bangkok. We recorded pedestrian activities along a test section of 20 m, with an effective walking width of 2.45 m in the morning and at noon. The morning dataset was extracted for analyzing various influencing distances, ranging from 1 to 20 m in front of the pedestrian. The bi-directional walking speed-pedestrian density models were developed, for each tested distance, using linear regression analysis. It was found that an influencing length in the range of 5-8 m yields the highest correlation coefficients. In the case of high density conditions, the walking speed of the equally-split flow (50:50) was found to be higher than other proportional flow analyzed. The finding has useful implications on the improvement of the walking simulations in mesoscopic models.
机译:凭直觉,行人前面的人群密度将影响其沿人行道的行走速度。然而,过去很少研究影响步行速度的影响区域的大小。这项研究以曼谷的一条行人路为例,试图确定在正常情况下主要影响行人步行速度的行人前方的距离。我们记录了沿着20 m的测试区域的行人活动,早晨和中午的有效步行宽度为2.45 m。提取早晨数据集以分析行人前方1到20 m范围内的各种影响距离。针对每个测试距离,使用线性回归分析开发了双向步行速度行人密度模型。发现在5-8 m范围内的影响长度会产生最高的相关系数。在高密度条件下,发现等分流(50:50)的行走速度要高于其他分析的比例流。这一发现对介观模型中行走模拟的改进具有有益的启示。

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