Modeling and CFD prediction for diffusion and adsorption within room with various adsorption isotherms

Author:

Murakami S.,Kato S.,Ito K.,Zhu Q.

Publisher

Wiley

Subject

Public Health, Environmental and Occupational Health,Building and Construction,Environmental Engineering

Reference9 articles.

1. Murakami , S. 2001 Committee of Indoor Air Chemical Pollution Research for Healthy Living Environment Working Report, Japan Architectural Institute of Japan

2. Bluyssen , P. M. 1995 European Database of Indoor Air Pollution Sources: The Effect of Temperature on the Chemical and Sensory Emissions of Indoor Materials TNO-Report 95-BBI-R0826

3. Murakami , S. Kato , S. Ito , K. Yamamoto , A. Kondo , Y. Fujimura , J. 2001 Chemical Pollutants Distribution in a Room Based on CFD Simulation Coupled with Emission/Sorption Analysis: ASHRAE Transaction

4. Modeling of mass diffusion in porous solids and prediction of indoor VOCs concentration based on macroscopic model;Kondo;J. Archit. Plann. Environ. Eng.,2000

5. Numerical simulation of velocity and temperature fields within atrium based on modified k-ɛ model incorporating damping effect due to thermal stratification, room air convection and ventilation effectiveness;Chikamoto;Proceedings of International Symposium on Room Air Convection and Ventilation Effectiveness, University of Tokyo,1992

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