Development of a 1D thermofluid code for divertor target plate modeling

The Oxford Divertor Thermo-Fluid Code (OxDTFC) is a numerical model to assess and compare the steady state thermo-fluid performance of the cooling systems present in the divertor target plate region of a fusion tokamak. Two water-cooled divertor target plate concepts have been used to demonstrate th...

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Main Authors: Jackson, ZJ, Nicholas, JR, Ireland, PT
Format: Journal article
Language:English
Published: Elsevier 2019
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author Jackson, ZJ
Nicholas, JR
Ireland, PT
author_facet Jackson, ZJ
Nicholas, JR
Ireland, PT
author_sort Jackson, ZJ
collection OXFORD
description The Oxford Divertor Thermo-Fluid Code (OxDTFC) is a numerical model to assess and compare the steady state thermo-fluid performance of the cooling systems present in the divertor target plate region of a fusion tokamak. Two water-cooled divertor target plate concepts have been used to demonstrate the model: an ITER-like monoblock system and the High Pressure Jet Cascade (HPJC) modular concept, developed by the University of Oxford. Validation of the model was carried out by comparing results for the ITER-like monoblock system with experimental and numerical data in the literature. This comparison showed that the model could quickly and accurately replicate divertor target plate thermo-fluid results across various coolant flow rates, incident heat fluxes, and geometric parameters. OxDTFC is used to compare the performance of the ITER-like monoblock and HPJC systems under equivalent target plate power loading. In this analysis, for equivalent peak heat sink temperatures and thermal loading conditions, the HPJC cooling system was found to have pumping power requirements of ∼65% and coolant flow rates of ∼50% less than a comparable ITER-like monoblock system.
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spelling oxford-uuid:47462e15-26f7-45bf-989f-f13f899c7b3f2022-03-26T15:19:09ZDevelopment of a 1D thermofluid code for divertor target plate modelingJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:47462e15-26f7-45bf-989f-f13f899c7b3fEnglishSymplectic Elements at OxfordElsevier2019Jackson, ZJNicholas, JRIreland, PTThe Oxford Divertor Thermo-Fluid Code (OxDTFC) is a numerical model to assess and compare the steady state thermo-fluid performance of the cooling systems present in the divertor target plate region of a fusion tokamak. Two water-cooled divertor target plate concepts have been used to demonstrate the model: an ITER-like monoblock system and the High Pressure Jet Cascade (HPJC) modular concept, developed by the University of Oxford. Validation of the model was carried out by comparing results for the ITER-like monoblock system with experimental and numerical data in the literature. This comparison showed that the model could quickly and accurately replicate divertor target plate thermo-fluid results across various coolant flow rates, incident heat fluxes, and geometric parameters. OxDTFC is used to compare the performance of the ITER-like monoblock and HPJC systems under equivalent target plate power loading. In this analysis, for equivalent peak heat sink temperatures and thermal loading conditions, the HPJC cooling system was found to have pumping power requirements of ∼65% and coolant flow rates of ∼50% less than a comparable ITER-like monoblock system.
spellingShingle Jackson, ZJ
Nicholas, JR
Ireland, PT
Development of a 1D thermofluid code for divertor target plate modeling
title Development of a 1D thermofluid code for divertor target plate modeling
title_full Development of a 1D thermofluid code for divertor target plate modeling
title_fullStr Development of a 1D thermofluid code for divertor target plate modeling
title_full_unstemmed Development of a 1D thermofluid code for divertor target plate modeling
title_short Development of a 1D thermofluid code for divertor target plate modeling
title_sort development of a 1d thermofluid code for divertor target plate modeling
work_keys_str_mv AT jacksonzj developmentofa1dthermofluidcodefordivertortargetplatemodeling
AT nicholasjr developmentofa1dthermofluidcodefordivertortargetplatemodeling
AT irelandpt developmentofa1dthermofluidcodefordivertortargetplatemodeling