Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
CFD Benchmark Tests for Indoor Environmental Problems: Part 4 Air-conditioning Airflows, Residential Kitchen Airflows and Fire-Induced Flow
Computational Fluid Dynamics (CFD) has become practical design tool for indoor environment recent years and the application cases have been increasing. Though the improvement of the prediction accuracy of CFD is needed in connection with the upgrade of design quality in indoor environment and Heating, Ventilation and air-conditioning (HVAC) system, the prediction accuracy of CFD simulation depends on the understanding for the fundamentals of fluid dynamics and the setting of appropriate boundary and numerical conditions as well. Additionally, deeper understanding to a specific problem regarding indoor environment is also required. The series of this study aimed to provide with the practical information such as prediction accuracy and problematic areas related to CFD applications in air conditioning and ventilation, then performed benchmark tests and reported the results. Especially in this Part 4, benchmark test results for Air-conditioning airflows, Residential kitchen airflows and Fire-induced flow were introduced and discussed.
CFD Benchmark Tests for Indoor Environmental Problems: Part 4 Air-conditioning Airflows, Residential Kitchen Airflows and Fire-Induced Flow
Computational Fluid Dynamics (CFD) has become practical design tool for indoor environment recent years and the application cases have been increasing. Though the improvement of the prediction accuracy of CFD is needed in connection with the upgrade of design quality in indoor environment and Heating, Ventilation and air-conditioning (HVAC) system, the prediction accuracy of CFD simulation depends on the understanding for the fundamentals of fluid dynamics and the setting of appropriate boundary and numerical conditions as well. Additionally, deeper understanding to a specific problem regarding indoor environment is also required. The series of this study aimed to provide with the practical information such as prediction accuracy and problematic areas related to CFD applications in air conditioning and ventilation, then performed benchmark tests and reported the results. Especially in this Part 4, benchmark test results for Air-conditioning airflows, Residential kitchen airflows and Fire-induced flow were introduced and discussed.
CFD Benchmark Tests for Indoor Environmental Problems: Part 4 Air-conditioning Airflows, Residential Kitchen Airflows and Fire-Induced Flow
Kazuhide Ito (Autor:in) / Kiao Inthavong (Autor:in) / Takashi Kurabuchi (Autor:in) / Toshikatsu Ueda (Autor:in) / Tomoyuki Endo (Autor:in) / Toshiaki Omori (Autor:in) / Hiroki Ono (Autor:in) / Shinsuke Kato (Autor:in) / Koji Sakai (Autor:in) / Yoshihide Suwa (Autor:in)
04.07.2015
doi:10.15377/2409-9821.2015.02.01.4
International Journal of Architectural Engineering Technology; Vol. 2 No. 1 (2015); 76-102 ; 2409-9821
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
DDC:
690
BASE | 2015
|Application of Proper Orthogonal Decomposition to Indoor Airflows
British Library Online Contents | 2005
|Unintended Consequences of Planned and Unplanned Airflows in Residential Buildings
British Library Conference Proceedings | 1997
|Evaluation of a Fast Large-Eddy-Simulation Model for Indoor Airflows
Online Contents | 2002
|