2017 Journal article Legacy File

Predicting urban storm water-logging for Chittagong city in Bangladesh

Primary Investigators / Authors

Aysha Akter; Syed Abdullah Mohit; Mohammad Ayanul Huq Chowdhury

Document Abstract / Summary Overview

In recent years, rainfall induced ‘urban storm water-logging’ (USWL) events are experiencing in Chittagong city like other urbanized parts of Bangladesh. To mitigate this there is an urgent need to predict the USWL beforehand and a numerical model could help. Thus, this paper aimed to use a hydrological model i.e. HEC-HMS through field survey during 2013–2014 and a questionnaire survey. With the support of secondary data source viz. daily newspaper, intensive questionnaire survey and field visits identified 13 most vulnerable USWL locations and based on these a USWL depth–duration–frequency curve was developed. This showed during water logging (i.e. May–July), the depth of logged water rises 0.3–1.27 m causing adjacent dwellers sufferings upto 13 times per year and the inundation period is up to 48 h. Using these, HEC-HMS model was setup and the correlation obtained with the field measurement as R2 values 0.83 and 0.77 during calibration and verification period respectively. Once a real time hydrological dataset is available, the validated model supposed to provide useful information in the decision support system.

Technical Properties

Accession ID: DOI: 10.1016/j.ijsbe.2017.01.005
Archival Collection: UKZN-IKS
Language Registry: English
Asset Extent / Duration: 12
Publisher: Elsevier
Rights Management Attribution: The Gulf Organisation for Research and Development.
Licence Data: Elsevier B.V. All rights reserved

Co-Authors & Contributors

Aysha Akter; Syed Abdullah Mohit; Mohammad Ayanul Huq Chowdhury creator

Taxonomy Classifications

🏷️ Elsevier 🏷️ The Gulf Organisation for Research and Development. 🏷️ Aysha Akter; Syed Abdullah Mohit; Mohammad Ayanul Huq Chowdhury 🏷️ Urban storm water-logging (USWL); Depth–duration–frequency curve; Rainfall; Model

Subject Keywords

# Urban storm water-logging (USWL); Depth–duration–frequency curve; Rainfall; Model
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