DESIGN OF MICROREACTOR-BASED NUCLEAR POWER PLANT FOR DEDIESELIZATION ON BUNGURAN ISLAND

The need for clean energy to drive net zero emissions by 2060 is critical for dedieselization efforts. Solutions involving multiple renewable energies face reliability challenges due to intermittency. Pulau Bunguran is an island heavily reliant on diesel power generation (100% diesel ratio). In t...

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Main Author: Ayhan Adit Pratama, Muhammad
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/82263
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:82263
spelling id-itb.:822632024-07-07T04:22:02ZDESIGN OF MICROREACTOR-BASED NUCLEAR POWER PLANT FOR DEDIESELIZATION ON BUNGURAN ISLAND Ayhan Adit Pratama, Muhammad Indonesia Final Project Dedieselitation, Microreaktor, TES, and Bunguran Island. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/82263 The need for clean energy to drive net zero emissions by 2060 is critical for dedieselization efforts. Solutions involving multiple renewable energies face reliability challenges due to intermittency. Pulau Bunguran is an island heavily reliant on diesel power generation (100% diesel ratio). In the first phase of dedieselization, no existing PLTD facilities from Pulau Bunguran will be utilized. A capacity of up to 21.32 MW requires a clean and reliable power generation solution. Nuclear power plants, particularly microreactor technology, offer a viable reference. This study evaluates three microreactor variations (microreactor without Thermal Energy Storage (TES), with TES, and optimized with Solar hybrid). The microreactor without TES achieves high efficiency up to 41.7% with a capacity factor of 70%. Optimized TES microreactors address flexible load requirements through thermal energy storage conversion. Energy penetration exceeds 60%, with microreactor capacity factors reaching 96.7%. Adjustment of TES controls is necessary to manage various constraints. The minimum load is constrained to 40% to prevent temperature instability in molten salt. Charging control employs constant power mode, while discharging uses flexible load mode. The Levelized Cost of Electricity (LCOE) for the new system reaches $0.138/kWh with solar hybrid optimization, down from the original $0.41/kWh with existing diesel power plant. 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 The need for clean energy to drive net zero emissions by 2060 is critical for dedieselization efforts. Solutions involving multiple renewable energies face reliability challenges due to intermittency. Pulau Bunguran is an island heavily reliant on diesel power generation (100% diesel ratio). In the first phase of dedieselization, no existing PLTD facilities from Pulau Bunguran will be utilized. A capacity of up to 21.32 MW requires a clean and reliable power generation solution. Nuclear power plants, particularly microreactor technology, offer a viable reference. This study evaluates three microreactor variations (microreactor without Thermal Energy Storage (TES), with TES, and optimized with Solar hybrid). The microreactor without TES achieves high efficiency up to 41.7% with a capacity factor of 70%. Optimized TES microreactors address flexible load requirements through thermal energy storage conversion. Energy penetration exceeds 60%, with microreactor capacity factors reaching 96.7%. Adjustment of TES controls is necessary to manage various constraints. The minimum load is constrained to 40% to prevent temperature instability in molten salt. Charging control employs constant power mode, while discharging uses flexible load mode. The Levelized Cost of Electricity (LCOE) for the new system reaches $0.138/kWh with solar hybrid optimization, down from the original $0.41/kWh with existing diesel power plant.
format Final Project
author Ayhan Adit Pratama, Muhammad
spellingShingle Ayhan Adit Pratama, Muhammad
DESIGN OF MICROREACTOR-BASED NUCLEAR POWER PLANT FOR DEDIESELIZATION ON BUNGURAN ISLAND
author_facet Ayhan Adit Pratama, Muhammad
author_sort Ayhan Adit Pratama, Muhammad
title DESIGN OF MICROREACTOR-BASED NUCLEAR POWER PLANT FOR DEDIESELIZATION ON BUNGURAN ISLAND
title_short DESIGN OF MICROREACTOR-BASED NUCLEAR POWER PLANT FOR DEDIESELIZATION ON BUNGURAN ISLAND
title_full DESIGN OF MICROREACTOR-BASED NUCLEAR POWER PLANT FOR DEDIESELIZATION ON BUNGURAN ISLAND
title_fullStr DESIGN OF MICROREACTOR-BASED NUCLEAR POWER PLANT FOR DEDIESELIZATION ON BUNGURAN ISLAND
title_full_unstemmed DESIGN OF MICROREACTOR-BASED NUCLEAR POWER PLANT FOR DEDIESELIZATION ON BUNGURAN ISLAND
title_sort design of microreactor-based nuclear power plant for dedieselization on bunguran island
url https://digilib.itb.ac.id/gdl/view/82263
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