Influence of the spectral solar radiation on the air flow and temperature distributions in a passenger compartment

  • Lee, Jin Woon
  • Jang, Eun Young
  • Lee, Seong Hyuk
  • Ryou, Hong Sun
  • Choi, Sangyeol
  • 외 1명
Citations

WEB OF SCIENCE

22
Citations

SCOPUS

26

초록

The present study aims to investigate spectral solar radiation effect on the air flow and temperature distributions in a passenger compartment. For achieving this goal, transmittance and reflectance for different glass types were measured to analyze the spectral characteristics of windshield by using a spectrophotometer. Using the measurement data, extensive CFD simulations were conducted for three different cases by using the commercial CFD software (ANSYS Fluent 13.0) based on the discrete ordinates method in solving radiative energy transfer equation. It was found that 99% of solar energy intensively existed in the wavelength range between 280 nm and 2500 nm on the basis of the standard solar spectrum (ASTM G173). In particular, strong deflection of air flows were observed near the front seat and it could generate higher mixing region due to the complex vortical flows. Considering the spectral effect, the predicted temperature in the compartment increased by approximately 3 degrees C, resulting from spectral variation of transmittance and reflectance. Therefore, the spectral solar radiation effect should be considered for more accurate prediction of air flow and thermal fields in the compartment. (c) 2013 Elsevier Masson SAS. All rights reserved.

키워드

Passenger compartmentCFDHVACSpectral solar radiationTransmittanceReflectanceDiscrete ordinates (DO) methodIMPROVING THERMAL COMFORTHEAT-TRANSFERVEHICLESPERIODFIELDSCABIN
제목
Influence of the spectral solar radiation on the air flow and temperature distributions in a passenger compartment
저자
Lee, Jin WoonJang, Eun YoungLee, Seong HyukRyou, Hong SunChoi, SangyeolKim, Yongsuk
DOI
10.1016/j.ijthermalsci.2013.07.018
발행일
2014-01
유형
Article
저널명
International Journal of Thermal Sciences
75
페이지
36 ~ 44