Participating media for volumetric heat generation

Title Participating media for volumetric heat generation
Author Al-Gebory, Layth Wadhah Ismael
Publication Date: 2019-01
Publication Place - Yıldız Teknik Üniversitesi
Subject Participating media, Volumetric heat generation
Type Periodical
Language English
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 2148-7847
Record ID 6ab4ccd5-603d-4897-8df6-fe2cf4e7a1b2
Date 2019-01
Sample Text When an electromagnetic wave interacts with participating media (e.g. particulate media); the intensity of the radiation may be changed by the absorption, emission and scattering phenomena. Subsequently, the incident radiation will be attenuated and/or augmented under the effect of these phenomena. Light scattering and absorption by small particles are quite important in a wide range of applications such as meteorology, biomedicine, biophysics, astronomy, combustion, fire and flame, and solar thermal applications. Particulate media have been introduced as a working medium to improve the efficiency of thermal systems such as solar thermal power plants. The efficiency of the direct absorption solar thermal collectors (DASC) can be improved by using particulate media because of the unique thermo-optical properties, which in turn leads to enhance the thermal performance. The main objective of the present study is to investigate the effect of the participating media in the volumetric heat generation under the concept of photo-thermal energy conversion.
Cilt 5
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Participating media for volumetric heat generation

Author Al-Gebory, Layth Wadhah Ismael
Publication Date 2019-01
Publication Place - Yıldız Teknik Üniversitesi
Subject Participating media, Volumetric heat generation
Type Periodical
Language English
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 2148-7847
Record ID 6ab4ccd5-603d-4897-8df6-fe2cf4e7a1b2
Date 2019-01
Sample Text When an electromagnetic wave interacts with participating media (e.g. particulate media); the intensity of the radiation may be changed by the absorption, emission and scattering phenomena. Subsequently, the incident radiation will be attenuated and/or augmented under the effect of these phenomena. Light scattering and absorption by small particles are quite important in a wide range of applications such as meteorology, biomedicine, biophysics, astronomy, combustion, fire and flame, and solar thermal applications. Particulate media have been introduced as a working medium to improve the efficiency of thermal systems such as solar thermal power plants. The efficiency of the direct absorption solar thermal collectors (DASC) can be improved by using particulate media because of the unique thermo-optical properties, which in turn leads to enhance the thermal performance. The main objective of the present study is to investigate the effect of the participating media in the volumetric heat generation under the concept of photo-thermal energy conversion.
Cilt 5
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