Evaluation of Hydrologic Modelling Using Satellite Product, and MMR Rainfall in East Java, Indonesia

In Indonesia, ground-based rainfall monitoring is uneven and sometimes lacks continuity especially in small watersheds, which makes hydrological modeling difficult. This paper aims to the performance evaluation of the HBV Light model from the manual measurement of rainfall (MMR), Global Precipitatio...

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Autores principales: Entin Hidayah, Wiwik Yunarni Widiarti, Paksitya Purnama Putra, Anggraeni Ayu Dewantie, Muhammad Zulvi Alhamda, Hanna Prastika
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Lenguaje:EN
Publicado: Polish Society of Ecological Engineering (PTIE) 2021
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Acceso en línea:https://doaj.org/article/de0652035ace4cc99afe4974448f61e6
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spelling oai:doaj.org-article:de0652035ace4cc99afe4974448f61e62021-11-04T08:03:23ZEvaluation of Hydrologic Modelling Using Satellite Product, and MMR Rainfall in East Java, Indonesia2299-899310.12911/22998993/142843https://doaj.org/article/de0652035ace4cc99afe4974448f61e62021-12-01T00:00:00Zhttp://www.jeeng.net/Evaluation-of-Hydrologic-Modelling-Using-Satellite-Product-and-MMR-Rainfall-in-East,142843,0,2.htmlhttps://doaj.org/toc/2299-8993In Indonesia, ground-based rainfall monitoring is uneven and sometimes lacks continuity especially in small watersheds, which makes hydrological modeling difficult. This paper aims to the performance evaluation of the HBV Light model from the manual measurement of rainfall (MMR), Global Precipitation Measurement (GPM-3IMERGDF), and Tropical Rainfall Measuring Mission (TRMM-3B42) as input for the hydrological model. The Hydrologiska Byrans Vattenbalansavdelning (HBV) Light hydrological model is applied to three small watersheds, namely Sampean Baru, Bedadung, and Mayang. The model's performance evaluation is assessed based on the correlation between the average rainfall data for the satellite product area and the MMR product, the stationarity of the rainfall and discharge data, and the model accuracy. The model simulation results show that the MMR rainfall in all watersheds provides a better discharge response than the other two products. Meanwhile, the simulation model of the GPM-3IMERGDF satellite product is slightly better than TRMM-3B42. The stationarity test of rainfall and discharge data needs to be enforced before modeling.Entin HidayahWiwik Yunarni WidiartiPaksitya Purnama PutraAnggraeni Ayu DewantieMuhammad Zulvi AlhamdaHanna PrastikaPolish Society of Ecological Engineering (PTIE)articlehbv light modelingmmrtrmm-3b42gpm-3imergdfstationarity dataEnvironmental technology. Sanitary engineeringTD1-1066Environmental sciencesGE1-350ENJournal of Ecological Engineering, Vol 22, Iss 11, Pp 246-260 (2021)
institution DOAJ
collection DOAJ
language EN
topic hbv light modeling
mmr
trmm-3b42
gpm-3imergdf
stationarity data
Environmental technology. Sanitary engineering
TD1-1066
Environmental sciences
GE1-350
spellingShingle hbv light modeling
mmr
trmm-3b42
gpm-3imergdf
stationarity data
Environmental technology. Sanitary engineering
TD1-1066
Environmental sciences
GE1-350
Entin Hidayah
Wiwik Yunarni Widiarti
Paksitya Purnama Putra
Anggraeni Ayu Dewantie
Muhammad Zulvi Alhamda
Hanna Prastika
Evaluation of Hydrologic Modelling Using Satellite Product, and MMR Rainfall in East Java, Indonesia
description In Indonesia, ground-based rainfall monitoring is uneven and sometimes lacks continuity especially in small watersheds, which makes hydrological modeling difficult. This paper aims to the performance evaluation of the HBV Light model from the manual measurement of rainfall (MMR), Global Precipitation Measurement (GPM-3IMERGDF), and Tropical Rainfall Measuring Mission (TRMM-3B42) as input for the hydrological model. The Hydrologiska Byrans Vattenbalansavdelning (HBV) Light hydrological model is applied to three small watersheds, namely Sampean Baru, Bedadung, and Mayang. The model's performance evaluation is assessed based on the correlation between the average rainfall data for the satellite product area and the MMR product, the stationarity of the rainfall and discharge data, and the model accuracy. The model simulation results show that the MMR rainfall in all watersheds provides a better discharge response than the other two products. Meanwhile, the simulation model of the GPM-3IMERGDF satellite product is slightly better than TRMM-3B42. The stationarity test of rainfall and discharge data needs to be enforced before modeling.
format article
author Entin Hidayah
Wiwik Yunarni Widiarti
Paksitya Purnama Putra
Anggraeni Ayu Dewantie
Muhammad Zulvi Alhamda
Hanna Prastika
author_facet Entin Hidayah
Wiwik Yunarni Widiarti
Paksitya Purnama Putra
Anggraeni Ayu Dewantie
Muhammad Zulvi Alhamda
Hanna Prastika
author_sort Entin Hidayah
title Evaluation of Hydrologic Modelling Using Satellite Product, and MMR Rainfall in East Java, Indonesia
title_short Evaluation of Hydrologic Modelling Using Satellite Product, and MMR Rainfall in East Java, Indonesia
title_full Evaluation of Hydrologic Modelling Using Satellite Product, and MMR Rainfall in East Java, Indonesia
title_fullStr Evaluation of Hydrologic Modelling Using Satellite Product, and MMR Rainfall in East Java, Indonesia
title_full_unstemmed Evaluation of Hydrologic Modelling Using Satellite Product, and MMR Rainfall in East Java, Indonesia
title_sort evaluation of hydrologic modelling using satellite product, and mmr rainfall in east java, indonesia
publisher Polish Society of Ecological Engineering (PTIE)
publishDate 2021
url https://doaj.org/article/de0652035ace4cc99afe4974448f61e6
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AT paksityapurnamaputra evaluationofhydrologicmodellingusingsatelliteproductandmmrrainfallineastjavaindonesia
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