Performance characteristic of hybrid cooling system based on cooling pad and evaporator

Publication Date:
2018-02-08
Publisher:
Institute of Physics (IOP)
Print ISSN:
1757-8981
Electronic ISSN:
1757-899X
Topics:
Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
Published by:
_version_ 1836398783841173504
autor J. I. Yoon, C. H. Son, K. H. Choi, Y. B. Kim, Y. H. Sung, S. J. Roh, Y. M. Kim and S. H. Seol
beschreibung In South Korea, most of domestic animals such as pigs and chickens might die due to thermal diseases if they are exposed to the high temperature consistently. In order to save them from the heat wave, numerous efforts have been carried out: installing a shade net, adjusting time of feeding, spraying mist and setting up a circulation fan. However, these methods have not shown significant improvements. Thus, this study proposes a hybrid cooling system combining evaporative cooler and air-conditioner in order to resolve the conventional problems caused by the high temperature in the livestock industry. The problem of cooling systems using evaporative cooling pads is that they are not effective for eliminating huge heat load due to their limited capacity. And, temperature of the supplied air cannot be low enough compared to conventional air-conditioning systems. On the other hand, conventional air-conditioning systems require relatively expensive installation cost, and high operatin...
citation_standardnr 6158614
datenlieferant ipn_articles
feed_id 123476
feed_publisher Institute of Physics (IOP)
feed_publisher_url http://www.iop.org/
insertion_date 2018-02-08
journaleissn 1757-899X
journalissn 1757-8981
publikationsjahr_anzeige 2018
publikationsjahr_facette 2018
publikationsjahr_intervall 7984:2015-2019
publikationsjahr_sort 2018
publisher Institute of Physics (IOP)
quelle IOP Conference Series: Materials Science and Engineering
relation http://iopscience.iop.org/1757-899X/297/1/012070
search_space articles
shingle_author_1 J. I. Yoon, C. H. Son, K. H. Choi, Y. B. Kim, Y. H. Sung, S. J. Roh, Y. M. Kim and S. H. Seol
shingle_author_2 J. I. Yoon, C. H. Son, K. H. Choi, Y. B. Kim, Y. H. Sung, S. J. Roh, Y. M. Kim and S. H. Seol
shingle_author_3 J. I. Yoon, C. H. Son, K. H. Choi, Y. B. Kim, Y. H. Sung, S. J. Roh, Y. M. Kim and S. H. Seol
shingle_author_4 J. I. Yoon, C. H. Son, K. H. Choi, Y. B. Kim, Y. H. Sung, S. J. Roh, Y. M. Kim and S. H. Seol
shingle_catch_all_1 Performance characteristic of hybrid cooling system based on cooling pad and evaporator
In South Korea, most of domestic animals such as pigs and chickens might die due to thermal diseases if they are exposed to the high temperature consistently. In order to save them from the heat wave, numerous efforts have been carried out: installing a shade net, adjusting time of feeding, spraying mist and setting up a circulation fan. However, these methods have not shown significant improvements. Thus, this study proposes a hybrid cooling system combining evaporative cooler and air-conditioner in order to resolve the conventional problems caused by the high temperature in the livestock industry. The problem of cooling systems using evaporative cooling pads is that they are not effective for eliminating huge heat load due to their limited capacity. And, temperature of the supplied air cannot be low enough compared to conventional air-conditioning systems. On the other hand, conventional air-conditioning systems require relatively expensive installation cost, and high operatin...
J. I. Yoon, C. H. Son, K. H. Choi, Y. B. Kim, Y. H. Sung, S. J. Roh, Y. M. Kim and S. H. Seol
Institute of Physics (IOP)
1757-8981
17578981
1757-899X
1757899X
shingle_catch_all_2 Performance characteristic of hybrid cooling system based on cooling pad and evaporator
In South Korea, most of domestic animals such as pigs and chickens might die due to thermal diseases if they are exposed to the high temperature consistently. In order to save them from the heat wave, numerous efforts have been carried out: installing a shade net, adjusting time of feeding, spraying mist and setting up a circulation fan. However, these methods have not shown significant improvements. Thus, this study proposes a hybrid cooling system combining evaporative cooler and air-conditioner in order to resolve the conventional problems caused by the high temperature in the livestock industry. The problem of cooling systems using evaporative cooling pads is that they are not effective for eliminating huge heat load due to their limited capacity. And, temperature of the supplied air cannot be low enough compared to conventional air-conditioning systems. On the other hand, conventional air-conditioning systems require relatively expensive installation cost, and high operatin...
J. I. Yoon, C. H. Son, K. H. Choi, Y. B. Kim, Y. H. Sung, S. J. Roh, Y. M. Kim and S. H. Seol
Institute of Physics (IOP)
1757-8981
17578981
1757-899X
1757899X
shingle_catch_all_3 Performance characteristic of hybrid cooling system based on cooling pad and evaporator
In South Korea, most of domestic animals such as pigs and chickens might die due to thermal diseases if they are exposed to the high temperature consistently. In order to save them from the heat wave, numerous efforts have been carried out: installing a shade net, adjusting time of feeding, spraying mist and setting up a circulation fan. However, these methods have not shown significant improvements. Thus, this study proposes a hybrid cooling system combining evaporative cooler and air-conditioner in order to resolve the conventional problems caused by the high temperature in the livestock industry. The problem of cooling systems using evaporative cooling pads is that they are not effective for eliminating huge heat load due to their limited capacity. And, temperature of the supplied air cannot be low enough compared to conventional air-conditioning systems. On the other hand, conventional air-conditioning systems require relatively expensive installation cost, and high operatin...
J. I. Yoon, C. H. Son, K. H. Choi, Y. B. Kim, Y. H. Sung, S. J. Roh, Y. M. Kim and S. H. Seol
Institute of Physics (IOP)
1757-8981
17578981
1757-899X
1757899X
shingle_catch_all_4 Performance characteristic of hybrid cooling system based on cooling pad and evaporator
In South Korea, most of domestic animals such as pigs and chickens might die due to thermal diseases if they are exposed to the high temperature consistently. In order to save them from the heat wave, numerous efforts have been carried out: installing a shade net, adjusting time of feeding, spraying mist and setting up a circulation fan. However, these methods have not shown significant improvements. Thus, this study proposes a hybrid cooling system combining evaporative cooler and air-conditioner in order to resolve the conventional problems caused by the high temperature in the livestock industry. The problem of cooling systems using evaporative cooling pads is that they are not effective for eliminating huge heat load due to their limited capacity. And, temperature of the supplied air cannot be low enough compared to conventional air-conditioning systems. On the other hand, conventional air-conditioning systems require relatively expensive installation cost, and high operatin...
J. I. Yoon, C. H. Son, K. H. Choi, Y. B. Kim, Y. H. Sung, S. J. Roh, Y. M. Kim and S. H. Seol
Institute of Physics (IOP)
1757-8981
17578981
1757-899X
1757899X
shingle_title_1 Performance characteristic of hybrid cooling system based on cooling pad and evaporator
shingle_title_2 Performance characteristic of hybrid cooling system based on cooling pad and evaporator
shingle_title_3 Performance characteristic of hybrid cooling system based on cooling pad and evaporator
shingle_title_4 Performance characteristic of hybrid cooling system based on cooling pad and evaporator
timestamp 2025-06-30T23:32:34.310Z
titel Performance characteristic of hybrid cooling system based on cooling pad and evaporator
titel_suche Performance characteristic of hybrid cooling system based on cooling pad and evaporator
topic ZL
uid ipn_articles_6158614