PARTICLE DISPERSION MODEL FOR RADIOACTIVE RELEASE DOSE CALCULATION (CASE OF MURIA PENINSULA-CENTRAL JAVA)

Assessment for radioactive pollutant dispersion was performed for postulated accident condition using source-term taken from Three-Mile Island unit 2 PWR accident. Modelling was performed using Lagrangian Particle Dispersion Method (LPDM) to provide numerical solution to advection-diffusion equation...

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Main Author: (NIM: 20206003), SUNARKO
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/12686
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:12686
spelling id-itb.:126862017-09-27T14:40:56ZPARTICLE DISPERSION MODEL FOR RADIOACTIVE RELEASE DOSE CALCULATION (CASE OF MURIA PENINSULA-CENTRAL JAVA) (NIM: 20206003), SUNARKO Indonesia Theses INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/12686 Assessment for radioactive pollutant dispersion was performed for postulated accident condition using source-term taken from Three-Mile Island unit 2 PWR accident. Modelling was performed using Lagrangian Particle Dispersion Method (LPDM) to provide numerical solution to advection-diffusion equation. Movement of radioactive particle by wind-field and turbulen diffusion was modelled using random-walk / Monte-Carlo techniques using non-Gaussian diffusion coefficient and Pasquill A-F stability to accommodate spatially non-uniform wind speed, turbulent diffusion coefficient and topography. 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 Assessment for radioactive pollutant dispersion was performed for postulated accident condition using source-term taken from Three-Mile Island unit 2 PWR accident. Modelling was performed using Lagrangian Particle Dispersion Method (LPDM) to provide numerical solution to advection-diffusion equation. Movement of radioactive particle by wind-field and turbulen diffusion was modelled using random-walk / Monte-Carlo techniques using non-Gaussian diffusion coefficient and Pasquill A-F stability to accommodate spatially non-uniform wind speed, turbulent diffusion coefficient and topography.
format Theses
author (NIM: 20206003), SUNARKO
spellingShingle (NIM: 20206003), SUNARKO
PARTICLE DISPERSION MODEL FOR RADIOACTIVE RELEASE DOSE CALCULATION (CASE OF MURIA PENINSULA-CENTRAL JAVA)
author_facet (NIM: 20206003), SUNARKO
author_sort (NIM: 20206003), SUNARKO
title PARTICLE DISPERSION MODEL FOR RADIOACTIVE RELEASE DOSE CALCULATION (CASE OF MURIA PENINSULA-CENTRAL JAVA)
title_short PARTICLE DISPERSION MODEL FOR RADIOACTIVE RELEASE DOSE CALCULATION (CASE OF MURIA PENINSULA-CENTRAL JAVA)
title_full PARTICLE DISPERSION MODEL FOR RADIOACTIVE RELEASE DOSE CALCULATION (CASE OF MURIA PENINSULA-CENTRAL JAVA)
title_fullStr PARTICLE DISPERSION MODEL FOR RADIOACTIVE RELEASE DOSE CALCULATION (CASE OF MURIA PENINSULA-CENTRAL JAVA)
title_full_unstemmed PARTICLE DISPERSION MODEL FOR RADIOACTIVE RELEASE DOSE CALCULATION (CASE OF MURIA PENINSULA-CENTRAL JAVA)
title_sort particle dispersion model for radioactive release dose calculation (case of muria peninsula-central java)
url https://digilib.itb.ac.id/gdl/view/12686
_version_ 1820728593287741440