Experiments and numerical simulations on transport of dissolved pollutants around spur dike

The flow field around a spur dike has three-dimensional characteristics. In order to analyze the influence of the flow field on pollutant transport, based on a compressive volume of fluid (VOF) scheme, the three-dimensional transient compressive pollutant transport model (CPTM) and the cubic equatio...

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Main Authors: Li-ping Chen, Jun-cheng Jiang
Format: Article
Language:English
Published: Elsevier 2010-09-01
Series:Water Science and Engineering
Subjects:
VOF
Online Access:http://www.sciencedirect.com/science/article/pii/S1674237015301253
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spelling doaj-4f8cc82b506a4319821ccb62731ac0b92020-11-24T20:45:10ZengElsevierWater Science and Engineering1674-23702010-09-013334135310.3882/j.issn.1674-2370.2010.03.010Experiments and numerical simulations on transport of dissolved pollutants around spur dikeLi-ping ChenJun-cheng JiangThe flow field around a spur dike has three-dimensional characteristics. In order to analyze the influence of the flow field on pollutant transport, based on a compressive volume of fluid (VOF) scheme, the three-dimensional transient compressive pollutant transport model (CPTM) and the cubic equation (CE) bounded differencing scheme were developed. For the calibration and validation of CPTM, laboratory experiments were carried out in a flume with a non-submerged spur dike. The spur dike was angled at 60°, 90°, and 120° from the upstream direction. The simulation results agreed with the experimental results. The simulations and experiments showed that the distribution of pollutant concentration was determined by circumfluence and the main flow. Concentration decay in the circumfluence zone was slower than that in the main flow. Downstream of the spur dike, the concentration fluctuation became intensive with the increase of spur dike angle.http://www.sciencedirect.com/science/article/pii/S1674237015301253VOFspur dikedissolved pollutantnumerical simulationexperiment
collection DOAJ
language English
format Article
sources DOAJ
author Li-ping Chen
Jun-cheng Jiang
spellingShingle Li-ping Chen
Jun-cheng Jiang
Experiments and numerical simulations on transport of dissolved pollutants around spur dike
Water Science and Engineering
VOF
spur dike
dissolved pollutant
numerical simulation
experiment
author_facet Li-ping Chen
Jun-cheng Jiang
author_sort Li-ping Chen
title Experiments and numerical simulations on transport of dissolved pollutants around spur dike
title_short Experiments and numerical simulations on transport of dissolved pollutants around spur dike
title_full Experiments and numerical simulations on transport of dissolved pollutants around spur dike
title_fullStr Experiments and numerical simulations on transport of dissolved pollutants around spur dike
title_full_unstemmed Experiments and numerical simulations on transport of dissolved pollutants around spur dike
title_sort experiments and numerical simulations on transport of dissolved pollutants around spur dike
publisher Elsevier
series Water Science and Engineering
issn 1674-2370
publishDate 2010-09-01
description The flow field around a spur dike has three-dimensional characteristics. In order to analyze the influence of the flow field on pollutant transport, based on a compressive volume of fluid (VOF) scheme, the three-dimensional transient compressive pollutant transport model (CPTM) and the cubic equation (CE) bounded differencing scheme were developed. For the calibration and validation of CPTM, laboratory experiments were carried out in a flume with a non-submerged spur dike. The spur dike was angled at 60°, 90°, and 120° from the upstream direction. The simulation results agreed with the experimental results. The simulations and experiments showed that the distribution of pollutant concentration was determined by circumfluence and the main flow. Concentration decay in the circumfluence zone was slower than that in the main flow. Downstream of the spur dike, the concentration fluctuation became intensive with the increase of spur dike angle.
topic VOF
spur dike
dissolved pollutant
numerical simulation
experiment
url http://www.sciencedirect.com/science/article/pii/S1674237015301253
work_keys_str_mv AT lipingchen experimentsandnumericalsimulationsontransportofdissolvedpollutantsaroundspurdike
AT junchengjiang experimentsandnumericalsimulationsontransportofdissolvedpollutantsaroundspurdike
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