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Reconstruction of Temperature Field in 3-D, Absorbing, Emitting, and Anisotropically Scattering Medium
引用本文:赵敬德,刘妮,钟珂. Reconstruction of Temperature Field in 3-D, Absorbing, Emitting, and Anisotropically Scattering Medium[J]. 东华大学学报(英文版), 2006, 23(2): 17-21
作者姓名:赵敬德  刘妮  钟珂
作者单位:College of Environmental Science and Engineering Donghua University,College of Power Engineering University of Shanghai for Science and Technology,College of Environmental Science and Engineering Donghua University,Shanghai 200051 Shanghai 200093 Shanghai 200051
摘    要:
IntroductionRecently ,theinvestigation on numerical radiative heattransfer has been focused onthe reconstruction of temperatureprofile in target space according to its boundary heat fluxgained by detectors[1 8], whichis a kind of inverse problemofradiation. Among these investigation, Li HY[1 4]hasresearched on one-di mension or two-di mension rectangular ,spherical or cylindrical medium which is absorbing ,emitting , and isotropically scattering ; Liu LH[5,6]hasresearched on the semitranspar…

关 键 词:三维温度场重构 非灰暗媒介 Monte Carlo法 密度剖面 辐射热传递
收稿时间:2005-06-10

Reconstruction of Temperature Field in 3-D, Absorbing, Emitting,and Anisotropically Scattering Medium
ZHAO Jing-de,LIU Ni,ZHONG Ke. Reconstruction of Temperature Field in 3-D, Absorbing, Emitting,and Anisotropically Scattering Medium[J]. Journal of Donghua University, 2006, 23(2): 17-21
Authors:ZHAO Jing-de  LIU Ni  ZHONG Ke
Abstract:
The soft measurement technology of flame temperature field is an efficient method to learn the combustion status in furnace. Generally, it reconstructs the temperature field in furnace through the image of flame, which is a process to solve radiative inverse problem. In this paper, the flame of pulverized coal is considered as 3-D, absorbing, emitting,and anisotropically scattering non-gray medium. Through the study on inverse problem of radiative heat transfer, the temperature field in this kind of medium has been reconstructed. The mechanism of 3-D radiative heat transfer in a rectangular media, which is 2 m × 3 m × 5 m and full of CO2, N2 and carbon particles, is studied with Monte Carlo method. The 3-D temperature field in this rectangular space is reconstructed and the influence of particles density profile is discussed.
Keywords:reconstruction of 3-D temperature field  anisotropically scattering  non-gray medium  Monte Carlo method  density profile  inverse problem of radiative heat transfer
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