Experimental Verification of Mist Cooling Effect in Front of Air-Conditioning Condenser Unit, Open Space, and Bus Stop

Author:

Kyogoku Sae,Takebayashi HidekiORCID

Abstract

Mist spraying is a technique for locally lowering air temperature by spraying fine mist into the air and using the latent heat of evaporation immediately after spraying. This study focuses on the conditions under which mist spraying contributes to the increase in sensible heat release from the human body, using the ratio of air temperature decrease and humidity increase in the space where mist is sprayed. From the measurement results in front of the air-conditioning condenser unit, humidity increased by about 10 g/kg(DA), while air temperature decreased by about 10 °C. From the measurement results in an open space in a park, air temperature decreased by about 0.5 to 1 °C within 2 m of the mist spray and humidity increased by about 0.5 to 1 g/kg(DA) at the height of the mist spray, regardless of the distance from the mist spray. From the measurement results at semi-open bus stops, air temperature decreased slightly to 1 °C and humidity increased slightly to 1 g/kg(DA) under low-wind conditions. Unfortunately, the measured results of air temperature decrease in relation to humidity increase, which the human body perceives as cooler, were not available.

Funder

Kobe City

Publisher

MDPI AG

Subject

Atmospheric Science,Environmental Science (miscellaneous)

Reference18 articles.

1. Development of heat island suppression system by spraying dry mist: (Part 2) Examination of thermal comfort by identical twins;Kodama;Annu. Meet. Jpn. Soc. Archit.,2004

2. A Feasibility Experiment on the Improvement Effects of Thermal Environment of Mist Spray in a Urban Canyon Space;Kaneda;Techinical Pap. Annu. Meet. Soc. Heat. Air-Cond. Sanit. Eng. Jpn.,2007

3. Dry mist spray experiment on station building platform;Ishii;Annu. Meet. Jpn. Soc. Archit.,2008

4. Experimental study on comfort evaluation of fine water mist spray environment considering solar shading;Kono;Annu. Meet. Jpn. Soc. Archit.,2013

5. Water mist spray for outdoor cooling: A systematic review of technologies, methods and impacts;Ulpiani;Appl. Energy,2019

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