Study on optimum design method for pleasant outdoor thermal environment using genetic algorithms (GA) and coupled simulation of convection, radiation and conduction

Author:

Chen Hong,Ooka Ryozo,Kato Shinsuke

Publisher

Elsevier BV

Subject

Building and Construction,Geography, Planning and Development,Civil and Structural Engineering,Environmental Engineering

Reference23 articles.

1. Murakami S, Mochida A, Ooka R, Yoshida S, Yoshino H, Sasaki K, et al. Evaluation of the impacts of urban tree planting in tokyo based on heat balance model. 11th international conference on wind engineering, Texas, USA; 2003.

2. Ooka R, Harayama K, Murakami S, Kondo H. Study on urban heat islands in Tokyo metropolitan area using a meteorological mesoscale model incorporating an urban canopy model. Fifth symposium on the urban environment, vol. 9.15, Vancouver; 2004.

3. Chen H, Ooka R, Huang H, Nakashima M. Study on the impact of sensible heat flux from building walls and artificial heat release from buildings on outdoor thermal environments using coupled simulations of convection, radiation, and conduction. The sixth international conference on urban climate (ICUC6); 2006.

4. Chen H, Ooka R, et al. Study on energy efficiency and improvement of outdoor thermal environment with introducing distributed local energy supply systems in a densely built-up area in Tokyo, International symposium on sustainable development of Asia city environment (SDACE 2005); 2005.

5. Ashie Y, Murakami S, Morigawa T, Mochida A, Ooka R, Oguro M, et al. CFD analyses on effects of wind from rivers on outdoor thermal environment, Part 2: control of thermal environment based on building layout. Annual technical meeting of architectural institute of Japan (D); 2002. p. 881–2 [in Japanese].

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