Distribution of indoor thoron in dwellings under normal and turbulent flow conditions using CFD simulation technique

Extensive work has been carried out on measurement of radon and thoron levels in indoor environment in last three decades. These studies are important from radiation protection point of view, if one considered the contribution of radon, thoron and their decay products to total inhalation do...

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Main Authors: Chauhan Rishi Pal, Kumar Amit, Chauhan Neetika
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2017-01-01
Series:Nuclear Technology and Radiation Protection
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/1451-3994/2017/1451-39941702180C.pdf
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author Chauhan Rishi Pal
Kumar Amit
Chauhan Neetika
author_facet Chauhan Rishi Pal
Kumar Amit
Chauhan Neetika
author_sort Chauhan Rishi Pal
collection DOAJ
description Extensive work has been carried out on measurement of radon and thoron levels in indoor environment in last three decades. These studies are important from radiation protection point of view, if one considered the contribution of radon, thoron and their decay products to total inhalation dose. Numerous studies on radon measurement well established the behaviour of its dispersion in dwellings. But the short lives of thoron cause the difficulty to understand the distribution of thoron in dwellings. The problem becomes more complicated when thoron dispersion is studied under different inlet air flow rate. Different air flow pattern may cause different thoron level at different point in test dwellings causing uncertainty in the measurements. This work utilized the CFD simulation technique for study of indoor thoron dispersion in test dwellings under normal and turbulent flow of air. The simulation study for thoron distribution in a test room was performed for air velocities 0.10 ms-1, 0.25 ms-1, 0.50 ms-1, 1.0 ms-1, 1.5 ms-1, and 2.0 ms-1. The results show that the thoron distribution becomes uniform for the inlet velocity more than 0.5 ms-1 and appropriate to measure indoor thoron concentration. While in normal condition the measured thoron level varies depending upon the location of dosimeter. Thoron diffusion and migration length are also increased with air flow rate.
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spelling doaj.art-cdc74922adcb454ea672161eb18ae3202022-12-22T02:04:36ZengVINCA Institute of Nuclear SciencesNuclear Technology and Radiation Protection1451-39941452-81852017-01-0132218018410.2298/NTRP1702180C1451-39941702180CDistribution of indoor thoron in dwellings under normal and turbulent flow conditions using CFD simulation techniqueChauhan Rishi Pal0Kumar Amit1Chauhan Neetika2National Institute of Technology, Department of Physics, Kurukshetra, IndiaNational Institute of Technology, Department of Physics, Kurukshetra, IndiaNational Institute of Technology, Department of Physics, Kurukshetra, IndiaExtensive work has been carried out on measurement of radon and thoron levels in indoor environment in last three decades. These studies are important from radiation protection point of view, if one considered the contribution of radon, thoron and their decay products to total inhalation dose. Numerous studies on radon measurement well established the behaviour of its dispersion in dwellings. But the short lives of thoron cause the difficulty to understand the distribution of thoron in dwellings. The problem becomes more complicated when thoron dispersion is studied under different inlet air flow rate. Different air flow pattern may cause different thoron level at different point in test dwellings causing uncertainty in the measurements. This work utilized the CFD simulation technique for study of indoor thoron dispersion in test dwellings under normal and turbulent flow of air. The simulation study for thoron distribution in a test room was performed for air velocities 0.10 ms-1, 0.25 ms-1, 0.50 ms-1, 1.0 ms-1, 1.5 ms-1, and 2.0 ms-1. The results show that the thoron distribution becomes uniform for the inlet velocity more than 0.5 ms-1 and appropriate to measure indoor thoron concentration. While in normal condition the measured thoron level varies depending upon the location of dosimeter. Thoron diffusion and migration length are also increased with air flow rate.http://www.doiserbia.nb.rs/img/doi/1451-3994/2017/1451-39941702180C.pdfindoor thoronthoron diffusion lengthindoor air distributioncomputational fluid dynamics
spellingShingle Chauhan Rishi Pal
Kumar Amit
Chauhan Neetika
Distribution of indoor thoron in dwellings under normal and turbulent flow conditions using CFD simulation technique
Nuclear Technology and Radiation Protection
indoor thoron
thoron diffusion length
indoor air distribution
computational fluid dynamics
title Distribution of indoor thoron in dwellings under normal and turbulent flow conditions using CFD simulation technique
title_full Distribution of indoor thoron in dwellings under normal and turbulent flow conditions using CFD simulation technique
title_fullStr Distribution of indoor thoron in dwellings under normal and turbulent flow conditions using CFD simulation technique
title_full_unstemmed Distribution of indoor thoron in dwellings under normal and turbulent flow conditions using CFD simulation technique
title_short Distribution of indoor thoron in dwellings under normal and turbulent flow conditions using CFD simulation technique
title_sort distribution of indoor thoron in dwellings under normal and turbulent flow conditions using cfd simulation technique
topic indoor thoron
thoron diffusion length
indoor air distribution
computational fluid dynamics
url http://www.doiserbia.nb.rs/img/doi/1451-3994/2017/1451-39941702180C.pdf
work_keys_str_mv AT chauhanrishipal distributionofindoorthoronindwellingsundernormalandturbulentflowconditionsusingcfdsimulationtechnique
AT kumaramit distributionofindoorthoronindwellingsundernormalandturbulentflowconditionsusingcfdsimulationtechnique
AT chauhanneetika distributionofindoorthoronindwellingsundernormalandturbulentflowconditionsusingcfdsimulationtechnique