ANALYSIS OF MADDEN JULIAN OSCILLATION (MJO) EVENT IN WESTERN PART OF INDONESIA IN ASIAN WINTER MONSOON AND ITS IMPACT ON RAINFALL

Indonesia Maritime Continent is an archipelago in ekuator which affected by many atmospheric phenomenons, include MJO and Monsoon. Asian Winter Monsoon causes the increasing of rainfall in several places in Indonesia in December-January-February (DJF), and since MJO related to a propagation of conve...

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Main Author: HAIRUNNISA NORFAHMI (12811026), SITI
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/24325
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:24325
spelling id-itb.:243252017-09-27T11:45:47ZANALYSIS OF MADDEN JULIAN OSCILLATION (MJO) EVENT IN WESTERN PART OF INDONESIA IN ASIAN WINTER MONSOON AND ITS IMPACT ON RAINFALL HAIRUNNISA NORFAHMI (12811026), SITI Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/24325 Indonesia Maritime Continent is an archipelago in ekuator which affected by many atmospheric phenomenons, include MJO and Monsoon. Asian Winter Monsoon causes the increasing of rainfall in several places in Indonesia in December-January-February (DJF), and since MJO related to a propagation of convective cloud, somehow it affects the rainfall variability in Ekuator, especially Indonesia. Interaction of both phenomenons simultaneously brings rainfall increasing in Indonesia, especially in Western Part of Indonesia. Therefore, a research about the impact of MJO in rainfall especially in Western Part of Indonesia is necessary. <br /> <br /> <br /> <br /> <br /> This study aims to observe the impact of MJO events on the rainfall variability in Western Part Indonesia focused on Asian Winter Monsoon (December-January-February/DJF) by analyzing the pattern of rainfall variability in Western Part of Indonesia, identifying MJO in Asian Winter Monsoon period in DJF 2002/03 – DJF 2012/13, and analyzing the impact of MJO to the rainfall. <br /> <br /> <br /> <br /> <br /> The resulst show that from 10 MJO evenst in period DJF 2002/03 – DJF 2012/13, the event increased the rainfall continuously in phase 3, phase 4, and phase 5. In phase 3, the increasing happened in every stations except Supadio with the total precipitation > 30 mm/day. The condition of rainfall in phase 4 is fluctuative in every stations, but with the dominant incrasing in Equator. In phase 5, the decreasing of rainfall happened in North of the Equator and Equator, while in South of Equator, the rainfall in Cengkareng Station increased about 20% but decreased about -42% in Bandung Station. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Indonesia Maritime Continent is an archipelago in ekuator which affected by many atmospheric phenomenons, include MJO and Monsoon. Asian Winter Monsoon causes the increasing of rainfall in several places in Indonesia in December-January-February (DJF), and since MJO related to a propagation of convective cloud, somehow it affects the rainfall variability in Ekuator, especially Indonesia. Interaction of both phenomenons simultaneously brings rainfall increasing in Indonesia, especially in Western Part of Indonesia. Therefore, a research about the impact of MJO in rainfall especially in Western Part of Indonesia is necessary. <br /> <br /> <br /> <br /> <br /> This study aims to observe the impact of MJO events on the rainfall variability in Western Part Indonesia focused on Asian Winter Monsoon (December-January-February/DJF) by analyzing the pattern of rainfall variability in Western Part of Indonesia, identifying MJO in Asian Winter Monsoon period in DJF 2002/03 – DJF 2012/13, and analyzing the impact of MJO to the rainfall. <br /> <br /> <br /> <br /> <br /> The resulst show that from 10 MJO evenst in period DJF 2002/03 – DJF 2012/13, the event increased the rainfall continuously in phase 3, phase 4, and phase 5. In phase 3, the increasing happened in every stations except Supadio with the total precipitation > 30 mm/day. The condition of rainfall in phase 4 is fluctuative in every stations, but with the dominant incrasing in Equator. In phase 5, the decreasing of rainfall happened in North of the Equator and Equator, while in South of Equator, the rainfall in Cengkareng Station increased about 20% but decreased about -42% in Bandung Station.
format Final Project
author HAIRUNNISA NORFAHMI (12811026), SITI
spellingShingle HAIRUNNISA NORFAHMI (12811026), SITI
ANALYSIS OF MADDEN JULIAN OSCILLATION (MJO) EVENT IN WESTERN PART OF INDONESIA IN ASIAN WINTER MONSOON AND ITS IMPACT ON RAINFALL
author_facet HAIRUNNISA NORFAHMI (12811026), SITI
author_sort HAIRUNNISA NORFAHMI (12811026), SITI
title ANALYSIS OF MADDEN JULIAN OSCILLATION (MJO) EVENT IN WESTERN PART OF INDONESIA IN ASIAN WINTER MONSOON AND ITS IMPACT ON RAINFALL
title_short ANALYSIS OF MADDEN JULIAN OSCILLATION (MJO) EVENT IN WESTERN PART OF INDONESIA IN ASIAN WINTER MONSOON AND ITS IMPACT ON RAINFALL
title_full ANALYSIS OF MADDEN JULIAN OSCILLATION (MJO) EVENT IN WESTERN PART OF INDONESIA IN ASIAN WINTER MONSOON AND ITS IMPACT ON RAINFALL
title_fullStr ANALYSIS OF MADDEN JULIAN OSCILLATION (MJO) EVENT IN WESTERN PART OF INDONESIA IN ASIAN WINTER MONSOON AND ITS IMPACT ON RAINFALL
title_full_unstemmed ANALYSIS OF MADDEN JULIAN OSCILLATION (MJO) EVENT IN WESTERN PART OF INDONESIA IN ASIAN WINTER MONSOON AND ITS IMPACT ON RAINFALL
title_sort analysis of madden julian oscillation (mjo) event in western part of indonesia in asian winter monsoon and its impact on rainfall
url https://digilib.itb.ac.id/gdl/view/24325
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