Hydrodynamic Simulation of Suspended Solids Concentration in Isahaya Regulating Reservoir
In this study, Osaka daigakuestuary model (ODEM) was applied for hydrodynamic simulation of suspended solids (SS) concentration in the Isahaya regulating reservoir. Water samples were collected every hourfrom 9:00 to 15:00 at nine sampling points inside the observation area of the reservoir...
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Mahidol University
2020-03-01
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doaj-118dbe9dd5084ae59a5082d5d6b627762020-11-25T01:48:28ZengMahidol UniversityEnvironment and Natural Resources Journal1686-54562408-23842020-03-0118220922310.32526/ennrj.18.2.2020.20Hydrodynamic Simulation of Suspended Solids Concentration in Isahaya Regulating ReservoirCong Khiem Ta0Seiji Suzuki1Nhat Huy Nguyen2Department of Advanced Engineering, Graduate School of Engineering, Nagasaki University, 1-14 Bunkyo, Nagasaki, 852-8521JapanDepartment of Advanced Engineering, Graduate School of Engineering, Nagasaki University, 1-14 Bunkyo, Nagasaki, 852-8521JapanFaculty of Environment and Natural Resources, Ho Chi Minh City University of Technology, VNU-HCM, 268 Ly Thuong Kiet St., Dist. 10, Ho Chi Minh City, VietnamIn this study, Osaka daigakuestuary model (ODEM) was applied for hydrodynamic simulation of suspended solids (SS) concentration in the Isahaya regulating reservoir. Water samples were collected every hourfrom 9:00 to 15:00 at nine sampling points inside the observation area of the reservoir.Parameters used for the model included initial conditions (i.e., SS concentration, water depth, temperature, and salinity) and boundary conditions (i.e., wind speed and direction, atmospheric temperature, solar irradiation, and cloud cover). The calculated results of SS in the reservoir and its concentration fluctuation from the model were compared with those estimated from the image analysis of unmanned aerial vehicle (UAV) and observed results. The SS simulated from ODEM distributed in high concentration, whereas that estimated from UAV distributed in low concentration although in both data they spread across a wide range at most investigated times. Although there was a big difference between the accuracy of ODEM and UAV, the SS concentration values described by them were closed to the observed values. Between them, the ODEM model showed its advantages in simulating the SS concentration and achieved more accuracy than UAV, showing a potential for using ODEM model in monitoring of SS in water.https://ph02.tci-thaijo.org/index.php/ennrj/article/view/240057/163628suspended solids (ss)isahaya regulating reservoirosaka daigaku estuary model (odem)unmanned aerial vehicle (uav) |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Cong Khiem Ta Seiji Suzuki Nhat Huy Nguyen |
spellingShingle |
Cong Khiem Ta Seiji Suzuki Nhat Huy Nguyen Hydrodynamic Simulation of Suspended Solids Concentration in Isahaya Regulating Reservoir Environment and Natural Resources Journal suspended solids (ss) isahaya regulating reservoir osaka daigaku estuary model (odem) unmanned aerial vehicle (uav) |
author_facet |
Cong Khiem Ta Seiji Suzuki Nhat Huy Nguyen |
author_sort |
Cong Khiem Ta |
title |
Hydrodynamic Simulation of Suspended Solids Concentration in Isahaya Regulating Reservoir |
title_short |
Hydrodynamic Simulation of Suspended Solids Concentration in Isahaya Regulating Reservoir |
title_full |
Hydrodynamic Simulation of Suspended Solids Concentration in Isahaya Regulating Reservoir |
title_fullStr |
Hydrodynamic Simulation of Suspended Solids Concentration in Isahaya Regulating Reservoir |
title_full_unstemmed |
Hydrodynamic Simulation of Suspended Solids Concentration in Isahaya Regulating Reservoir |
title_sort |
hydrodynamic simulation of suspended solids concentration in isahaya regulating reservoir |
publisher |
Mahidol University |
series |
Environment and Natural Resources Journal |
issn |
1686-5456 2408-2384 |
publishDate |
2020-03-01 |
description |
In this study, Osaka daigakuestuary model (ODEM) was applied for hydrodynamic simulation of suspended solids (SS) concentration in the Isahaya regulating reservoir. Water samples were collected every hourfrom 9:00 to 15:00 at nine sampling points inside the observation area of the reservoir.Parameters used for the model included initial conditions (i.e., SS concentration, water depth, temperature, and salinity) and boundary conditions (i.e., wind speed and direction, atmospheric temperature, solar irradiation, and cloud cover). The calculated results of SS in the reservoir and its concentration fluctuation from the model were compared with those estimated from the image analysis of unmanned aerial vehicle (UAV) and observed results. The SS simulated from ODEM distributed in high concentration, whereas that estimated from UAV distributed in low concentration although in both data they spread across a wide range at most investigated times. Although there was a big difference between the accuracy of ODEM and UAV, the SS concentration values described by them were closed to the observed values. Between them, the ODEM model showed its advantages in simulating the SS concentration and achieved more accuracy than UAV, showing a potential for using ODEM model in monitoring of SS in water. |
topic |
suspended solids (ss) isahaya regulating reservoir osaka daigaku estuary model (odem) unmanned aerial vehicle (uav) |
url |
https://ph02.tci-thaijo.org/index.php/ennrj/article/view/240057/163628 |
work_keys_str_mv |
AT congkhiemta hydrodynamicsimulationofsuspendedsolidsconcentrationinisahayaregulatingreservoir AT seijisuzuki hydrodynamicsimulationofsuspendedsolidsconcentrationinisahayaregulatingreservoir AT nhathuynguyen hydrodynamicsimulationofsuspendedsolidsconcentrationinisahayaregulatingreservoir |
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