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Advanced environmental wind engineering
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Tamura, Yukio.
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Advanced environmental wind engineering
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Advanced environmental wind engineering/ edited by Yukio Tamura, Ryuichiro Yoshie.
其他作者:
Tamura, Yukio.
出版者:
Tokyo :Springer Japan : : 2016.,
面頁冊數:
vii, 196 p. :ill. (some col.), digital ;24 cm.
內容註:
Design procedures for natural ventilation -- Theoretical models of envelope flow - steady and unsteady -- Ventilation Flow Structure and High-precision Ventilation Network Model -- Passive Cooling of Buildings-Present and Future Needs - Recent Progress on Passive Cooling Convective Technologies -- Thermal Comfort Inside and Outside Buildings -- Pedestrian wind environment around tall buildings -- Wind-induced dispersion of pollutants in the urban environment -- Trends in the field of quality assurance of urban flow and dispersion models -- Wind Tunnel Experiment and Large Eddy Simulation of Pollutant/Thermal Dispersion in Non-Isothermal Turbulent Boundary Layer.
Contained By:
Springer eBooks
標題:
Natural ventilation. -
電子資源:
http://dx.doi.org/10.1007/978-4-431-55912-2
ISBN:
9784431559122
Advanced environmental wind engineering
Advanced environmental wind engineering
[electronic resource] /edited by Yukio Tamura, Ryuichiro Yoshie. - Tokyo :Springer Japan :2016. - vii, 196 p. :ill. (some col.), digital ;24 cm.
Design procedures for natural ventilation -- Theoretical models of envelope flow - steady and unsteady -- Ventilation Flow Structure and High-precision Ventilation Network Model -- Passive Cooling of Buildings-Present and Future Needs - Recent Progress on Passive Cooling Convective Technologies -- Thermal Comfort Inside and Outside Buildings -- Pedestrian wind environment around tall buildings -- Wind-induced dispersion of pollutants in the urban environment -- Trends in the field of quality assurance of urban flow and dispersion models -- Wind Tunnel Experiment and Large Eddy Simulation of Pollutant/Thermal Dispersion in Non-Isothermal Turbulent Boundary Layer.
This book is highly suitable for advanced courses as it introduces state-of-the-art information and the latest research results on diverse problems in the environmental wind engineering field. The topics include indoor natural ventilation, pedestrian wind environment, pollutant dispersion, urban heat island phenomena, urban ventilation, indoor/outdoor thermal comfort, and experimental/numerical techniques to analyze those issues. Winds have a great influence on the outdoor environment, especially in urban areas. Problems that they cause can be attributed to either strong wind or weak wind issues. Strong winds around high-rise buildings can bring about unpleasant, and in some cases dangerous, situations for people in the outdoor environment. On the other hand, weak wind conditions can also cause problems such as air pollution and heat island phenomena in urban areas. Winds enhance urban ventilation and reduce those problems. They also enhance natural ventilation in buildings, which can reduce the energy consumption of mechanical ventilation fans and air conditioners for cooling. Moderate winds improve human thermal comfort in both indoor and outdoor environments in summer. Environmental wind engineering associated with wind tunnel experiments and numerical analysis can contribute to solutions to these issues.
ISBN: 9784431559122
Standard No.: 10.1007/978-4-431-55912-2doiSubjects--Topical Terms:
910365
Natural ventilation.
LC Class. No.: TH7674
Dewey Class. No.: 697.92
Advanced environmental wind engineering
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Design procedures for natural ventilation -- Theoretical models of envelope flow - steady and unsteady -- Ventilation Flow Structure and High-precision Ventilation Network Model -- Passive Cooling of Buildings-Present and Future Needs - Recent Progress on Passive Cooling Convective Technologies -- Thermal Comfort Inside and Outside Buildings -- Pedestrian wind environment around tall buildings -- Wind-induced dispersion of pollutants in the urban environment -- Trends in the field of quality assurance of urban flow and dispersion models -- Wind Tunnel Experiment and Large Eddy Simulation of Pollutant/Thermal Dispersion in Non-Isothermal Turbulent Boundary Layer.
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