Thermal Environment Transition of Response Climate Change and Heat Wave Application Evaporative Cooling System

2016 ◽  
Vol 25 (9) ◽  
pp. 1269-1281 ◽  
Author(s):  
Jeong-Ho Kim ◽  
◽  
Hak-Gi Kim ◽  
Yong-Han Yoon ◽  
Ki-Uk Kwon
2016 ◽  
Vol 66 (2) ◽  
pp. 117-124
Author(s):  
N. Kapilan ◽  
M. Manjunath Gowda ◽  
H. N. Manjunath

Abstract The use of chlorofluorocarbon based refrigerants in the air-conditioning system increases the global warming and causes the climate change. The climate change is expected to present a number of challenges for the built environment and an evaporative cooling system is one of the simplest and environmentally friendly cooling system. The evaporative cooling system is most widely used in summer and in rural and urban areas of India for human comfort. In evaporative cooling system, the addition of water into air reduces the temperature of the air as the energy needed to evaporate the water is taken from the air. Computational fluid dynamics is a numerical analysis and was used to analyse the evaporative cooling system. The CFD results are matches with the experimental results.


2003 ◽  
Vol 60 (1) ◽  
pp. 13-17 ◽  
Author(s):  
Valmir Sartor ◽  
Fernando da Costa Baêta ◽  
Ilda de Fátima Ferreira Tinôco ◽  
Maira Luciana Luz

The thermal environment inside of a finishing phase swine barn has great influence on the success of swine production. This environment can be characterized by the black globe temperature and humidity index (BGHI), that represents the air temperature, humidity, wind speed and radiation. Due to the small number of Brazilian reports on this specific subject, this experiment was performed to verify the effect of one kind of evaporative cooling system on the thermal comfort of the animal in a swine barn, during the 98/99 summer at Patos de Minas, MG, Brazil. Two constructions were used, divided in 36 barns, each one with 15 animals, 110 to 150 days old. Along a side of one barn, four cooling devices were installed, with a ventilation system connected to a sprayer, to form an evaporative cooling system (ECS). The other barn did not have any cooling system being a control unity (COS). The ECS provided an improvement of the environmental thermal conditions, reducing the index of black globe temperature and humidity inside the building, from 83.5 to 82.4, during the critical period of the day (2 p.m.). The ECS provided also an improvement of the food conversion, from 3.27 to 2.88, and a tendency of a substantial weight gain, from 0.97 to 1.02 kg per day.


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