Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/102624
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Title: Modelling the effects of rainfall intensity on pedestrian speed-flow relationships
Authors: Shi, CY 
Tam, ML 
Lam, WHK 
Li, Q
Issue Date: 2017
Source: Transport and Society : Proceeding of the 22nd International Conference of Hong Kong Society for Transportation Studies, HKSTS 2017, p. 481-488
Abstract: Walking behavior in rainy conditions is very different from that without rain. This paper aims to study the effects of rainfall intensity on pedestrian walking behavior at signalized crosswalks In the paper, fundamental diagrams such as speed flow re lationships are calibrated in various rainy conditions. The impacts of rainfall intensity on the reduction of walking speed are empirically investigated. Controlled experiment s are conducted to collect pedestrian data such as walking speed, flow, bi-directional flow ratio in both no rain and rain conditions. A generalized pedestrian speed flow function is proposed and calibrated, taking into account the effects of varied rainfall intensity. The generalized speed flow function is useful for evaluating the performance of pedestrian facilities, particularly in Hong Kong and other Asian cites with relatively high annual rainfall intensity. The findings could provide better insights into the effects of rainfall intensity on pedestrian walking behavior for assisting engineers/planners in improving the design and operation of pedestrian facilities.
Keywords: Pedestrians
Fundamental diagrams
Pedestrian speed flow relationships
Rainfall intensity
Publisher: Hong Kong Society for Transportation Studies Limited
ISBN: 978-9-881-58146-4
Description: 22nd International Conference of Hong Kong Society for Transportation Studies: Transport and Society, HKSTS 2017 - Hong Kong, 9-11 Dec 2017
Rights: Reprinted from 22nd International Conference of Hong Kong Society for Transportation Studies: Transport and Society, HKSTS 2017, Shi, C. Y., Tam, M. L., Lam, W. H., & Li, Q., Modelling the effects of rainfall intensity on pedestrian speed-flow relationships, p. 481-488, Copyright (2017), with permission from Hong Kong Society for Transportation Studies.
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