본문

서브메뉴

A Hybrid Radiation Transport Detector Response Function Methodology for Modeling Contaminated Sites
A Hybrid Radiation Transport Detector Response Function Methodology for Modeling Contamina...
A Hybrid Radiation Transport Detector Response Function Methodology for Modeling Contaminated Sites

상세정보

자료유형  
 학위논문 서양
최종처리일시  
20260209102908
ISBN  
9798265406385
DDC  
000
저자명  
Asano, Ethan Akira.
서명/저자  
A Hybrid Radiation Transport Detector Response Function Methodology for Modeling Contaminated Sites
발행사항  
[Sl] : Georgia Institute of Technology, 2023
발행사항  
Ann Arbor : ProQuest Dissertations & Theses, 2023
형태사항  
282 p
주기사항  
Source: Dissertations Abstracts International, Volume: 87-05, Section: B.
주기사항  
Advisor: Dewji, Shaheen.
학위논문주기  
Thesis (Ph.D.)--Georgia Institute of Technology, 2023.
초록/해제  
요약To date, guidance for environmental assessment using experimental radiation detection techniques - specifically relating photon detector responses to dose or cancer risk-based radionuclides concentrations in environmental media - exist under the Environmental Protection Agency (EPA) Comprehensive Environmental Response, Compensation, and Liability Act (CERCLA). In recent years, the EPA has undertaken efforts to develop the "U.S. EPA Superfund Counts-Per-Minute (CPM) Electronic Calculator" web-based field screening tool to address this technical challenge. The CPM Calculator predicts photon detector readings in CPM that, if exceeded in the field, may warrant further action (e.g., cleanup) when demonstrating regulatory compliance in the radiological site remediation process. A modeling research effort was undertaken to estimate thousands of sodium iodide thallium-doped (NaI(Tl)) detector total efficiency responses in the development of a methodology to calculate detector response from simulated contamination in various geometries in environmental media.A detector response function (DRF) methodology was developed by coupling capabilities of the stochastic Monte Carlo (MC) method with the Consistent Adjoint Driven Importance Sampling (CADIS) hybrid radiation transport method to estimate the NaI(Tl) detector efficiency responses for a broad range of wide-area contamination scenarios. The CADIS hybrid method, available through the massively parallel MC code Shift, was harnessed to significantly increase the computational efficiency of thousands of Monte Carlo N-Particle (MCNP) pulse height tally (PHT) simulations involving wide-area, distributed photon source contamination in environmental media (surface source contamination scenarios were evaluated using only MCNP). Total detector efficiency responses were estimated for a breadth of contamination scenarios based on the following parameters: discrete monoenergetic source energy/radionuclide spectrum, contaminated medium type, depth of contamination, modeled cylindrical NaI(Tl) detector configuration, and source-detector distance. Simulated results were post-processed to yield calibration factors in units of CPM per surface or distributed source activity concentration. At the time of writing, all calibration factor data has been implemented into the CPM Calculator - the final version is expected to be released following physical laboratory validation in partnership with EPA laboratories. In practice, field surveying personnel will be able to quickly compare a measured NaI(Tl) detector net count rate to a threshold value derived from a predetermined dose or risk limit (i.e., calibration factor normalized by an activity concentration derived from a dose or risk limit) for a variety of wide-area contamination scenarios. Ultimately, currently expensive and time-consuming sample collection and laboratory analyses efforts required for demonstrating regulatory compliance in future wide-area contamination assay applications may be reduced.This work results from a comprehensive study that consists of multiple auxiliary efforts following the development of the DRF methodology described previously, which we refer to as "Shift with CADIS." A study was conducted to analyze the effectiveness of Shift with CADIS compared to various radiation transport variance reduction (VR) methods for improved modeling in future wide-area contamination assay applications. The latter is intended for publication outside the current study and is therefore only adverted herein. Instead, a follow-up analysis that further explores alternative methods for approximating solutions to the wide-area contamination transport problems of interest is presented. Additionally, a method was developed for estimating the total detector efficiency response contribution from secondary photons arising from electron source emissions (called bremsstrahlung) in soil with MC simulation, which employed the electron transport condensed history method in a computationally feasible manner. Lastly, investigatory measurements were performed with laboratory-scale setups of low-level activity environmental soil contamination with field surrogate photon source terms to validate simulated detector efficiency responses.
일반주제명  
Radiation protection
일반주제명  
Computer aided design--CAD
일반주제명  
Carcinogens
일반주제명  
Dosimetry
일반주제명  
Energy
일반주제명  
Environmental protection
일반주제명  
Soil contamination
일반주제명  
Boundary conditions
일반주제명  
Geometry
일반주제명  
Mathematics
일반주제명  
Nuclear physics
기타저자  
Georgia Institute of Technology.
기본자료저록  
Dissertations Abstracts International. 87-05B.
전자적 위치 및 접속  
로그인 후 원문을 볼 수 있습니다.

MARC

 008260203s2023        us                              c    eng  d
■001000017365985
■00520260209102908
■006m          o    d                
■007cr#unu||||||||
■020    ▼a9798265406385
■035    ▼a(MiAaPQ)AAI32315781
■035    ▼a(MiAaPQ)GeorgiaTech76768
■040    ▼aMiAaPQ▼cMiAaPQ
■0820  ▼a000
■1001  ▼aAsano,  Ethan  Akira.
■24512▼aA  Hybrid  Radiation  Transport  Detector  Response  Function  Methodology  for  Modeling  Contaminated  Sites
■260    ▼a[Sl]▼bGeorgia  Institute  of  Technology▼c2023
■260  1▼aAnn  Arbor▼bProQuest  Dissertations  &  Theses▼c2023
■300    ▼a282  p
■500    ▼aSource:  Dissertations  Abstracts  International,  Volume:  87-05,  Section:  B.
■500    ▼aAdvisor:  Dewji,  Shaheen.
■5021  ▼aThesis  (Ph.D.)--Georgia  Institute  of  Technology,  2023.
■520    ▼aTo  date,  guidance  for  environmental  assessment  using  experimental  radiation  detection  techniques  -  specifically  relating  photon  detector  responses  to  dose  or  cancer  risk-based  radionuclides  concentrations  in  environmental  media  -  exist  under  the  Environmental  Protection  Agency  (EPA)  Comprehensive  Environmental  Response,  Compensation,  and  Liability  Act  (CERCLA).  In  recent  years,  the  EPA  has  undertaken  efforts  to  develop  the  "U.S.  EPA  Superfund  Counts-Per-Minute  (CPM)  Electronic  Calculator"  web-based  field  screening  tool  to  address  this  technical  challenge.  The  CPM  Calculator  predicts  photon  detector  readings  in  CPM  that,  if  exceeded  in  the  field,  may  warrant  further  action  (e.g.,  cleanup)  when  demonstrating  regulatory  compliance  in  the  radiological  site  remediation  process.  A  modeling  research  effort  was  undertaken  to  estimate  thousands  of  sodium  iodide  thallium-doped  (NaI(Tl))  detector  total  efficiency  responses  in  the  development  of  a  methodology  to  calculate  detector  response  from  simulated  contamination  in  various  geometries  in  environmental  media.A  detector  response  function  (DRF)  methodology  was  developed  by  coupling  capabilities  of  the  stochastic  Monte  Carlo  (MC)  method  with  the  Consistent  Adjoint  Driven  Importance  Sampling  (CADIS)  hybrid  radiation  transport  method  to  estimate  the  NaI(Tl)  detector  efficiency  responses  for  a  broad  range  of  wide-area  contamination  scenarios.  The  CADIS  hybrid  method,  available  through  the  massively  parallel  MC  code  Shift,  was  harnessed  to  significantly  increase  the  computational  efficiency  of  thousands  of  Monte  Carlo  N-Particle  (MCNP)  pulse  height  tally  (PHT)  simulations  involving  wide-area,  distributed  photon  source  contamination  in  environmental  media  (surface  source  contamination  scenarios  were  evaluated  using  only  MCNP).  Total  detector  efficiency  responses  were  estimated  for  a  breadth  of  contamination  scenarios  based  on  the  following  parameters:  discrete  monoenergetic  source  energy/radionuclide  spectrum,  contaminated  medium  type,  depth  of  contamination,  modeled  cylindrical  NaI(Tl)  detector  configuration,  and  source-detector  distance.  Simulated  results  were  post-processed  to  yield  calibration  factors  in  units  of  CPM  per  surface  or  distributed  source  activity  concentration.  At  the  time  of  writing,  all  calibration  factor  data  has  been  implemented  into  the  CPM  Calculator  -  the  final  version  is  expected  to  be  released  following  physical  laboratory  validation  in  partnership  with  EPA  laboratories.  In  practice,  field  surveying  personnel  will  be  able  to  quickly  compare  a  measured  NaI(Tl)  detector  net  count  rate  to  a  threshold  value  derived  from  a  predetermined  dose  or  risk  limit  (i.e.,  calibration  factor  normalized  by  an  activity  concentration  derived  from  a  dose  or  risk  limit)  for  a  variety  of  wide-area  contamination  scenarios.  Ultimately,  currently  expensive  and  time-consuming  sample  collection  and  laboratory  analyses  efforts  required  for  demonstrating  regulatory  compliance  in  future  wide-area  contamination  assay  applications  may  be  reduced.This  work  results  from  a  comprehensive  study  that  consists  of  multiple  auxiliary  efforts  following  the  development  of  the  DRF  methodology  described  previously,  which  we  refer  to  as  "Shift  with  CADIS."  A  study  was  conducted  to  analyze  the  effectiveness  of  Shift  with  CADIS  compared  to  various  radiation  transport  variance  reduction  (VR)  methods  for  improved  modeling  in  future  wide-area  contamination  assay  applications.  The  latter  is  intended  for  publication  outside  the  current  study  and  is  therefore  only  adverted  herein.  Instead,  a  follow-up  analysis  that  further  explores  alternative  methods  for  approximating  solutions  to  the  wide-area  contamination  transport  problems  of  interest  is  presented.  Additionally,  a  method  was  developed  for  estimating  the  total  detector  efficiency  response  contribution  from  secondary  photons  arising  from  electron  source  emissions  (called  bremsstrahlung)  in  soil  with  MC  simulation,  which  employed  the  electron  transport  condensed  history  method  in  a  computationally  feasible  manner.  Lastly,  investigatory  measurements  were  performed  with  laboratory-scale  setups  of  low-level  activity  environmental  soil  contamination  with  field  surrogate  photon  source  terms  to  validate  simulated  detector  efficiency  responses.
■590    ▼aSchool  code:  0078.
■650  4▼aRadiation  protection
■650  4▼aComputer  aided  design--CAD
■650  4▼aCarcinogens
■650  4▼aDosimetry
■650  4▼aEnergy
■650  4▼aEnvironmental  protection
■650  4▼aSoil  contamination
■650  4▼aBoundary  conditions
■650  4▼aGeometry
■650  4▼aMathematics
■650  4▼aNuclear  physics
■690    ▼a0791
■690    ▼a0405
■690    ▼a0756
■71020▼aGeorgia  Institute  of  Technology.
■7730  ▼tDissertations  Abstracts  International▼g87-05B.
■790    ▼a0078
■791    ▼aPh.D.
■792    ▼a2023
■793    ▼aEnglish
■85640▼uhttp://www.riss.kr/pdu/ddodLink.do?id=T17365985▼nKERIS▼z이  자료의  원문은  한국교육학술정보원에서  제공합니다.

미리보기

내보내기

chatGPT토론

Ai 추천 관련 도서


    신착도서 더보기
    최근 3년간 통계입니다.

    소장정보

    • 예약
    • 소재불명신고
    • 나의폴더
    • 우선정리요청
    • 비도서대출신청
    • 야간 도서대출신청
    소장자료
    등록번호 청구기호 소장처 대출가능여부 대출정보
    TF15946 전자도서 대출가능 마이폴더 부재도서신고 비도서대출신청 야간 도서대출신청

    * 대출중인 자료에 한하여 예약이 가능합니다. 예약을 원하시면 예약버튼을 클릭하십시오.

    해당 도서를 다른 이용자가 함께 대출한 도서

    관련 인기도서

    로그인 후 이용 가능합니다.