air curtain
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2022 ◽  
Vol 220 ◽  
pp. 104875
Author(s):  
Xiaochuan Li ◽  
Mingrui Zhang ◽  
Yefeng Jiang ◽  
Xinli Zhao ◽  
Li Wang ◽  
...  

Sensors ◽  
2021 ◽  
Vol 21 (24) ◽  
pp. 8182
Author(s):  
Nikolay Kiktev ◽  
Taras Lendiel ◽  
Viktor Vasilenkov ◽  
Oksana Kapralуuk ◽  
Taras Hutsol ◽  
...  

Creating and maintaining the microclimate in livestock buildings is associated with numerous engineering and technical challenges. Together with adequate feeding, the microclimate determines the health, reproductive ability, and production potential of the animals (obtaining a maximum amount of high-quality products). One of the deciding steps in improving the parameters of microclimate, i.e., temperature and humidity in agricultural facilities, particularly in livestock buildings, is to develop reliable and highly efficient air curtains in the vestibules. The objective of the manuscript is to investigate the parameters of the microclimate in livestock buildings using the air curtain, supported by automation and ICT technologies for rational operating modes. The presented theoretical and experimental studies on improving the microclimate parameters in livestock buildings were carried out using an innovative air curtain system. Its power is calculated based on the dimensions of the room, and the flow rate of warm air near the floor level is three times lower than at the installation site. The use of air curtains reduces consumption of thermal energy needed to maintain an optimal microclimate for livestock by 10–15%. Furthermore, the use of an automated digital control system maintains an optimal microclimate in the building. The developed energy-saving system for creating an optimal micro-climate in livestock buildings using air curtains was tested in a pigsty of the Research and Training Farm “Vorzel” of the National University of Life and Environmental Sciences of Ukraine, located in the Kiev region. The developed automated microclimate system using air curtains significantly improves the microclimate parameters and significantly reduces power consumption. The system can be further developed by adding remote control based on the Internet of Things (IoT) technology.


2021 ◽  
Vol 206 ◽  
pp. 108343
Author(s):  
Xiaobin Wei ◽  
Dan Yi ◽  
Wuhao Xie ◽  
Jun Gao ◽  
Lipeng Lv

2021 ◽  
pp. 108576
Author(s):  
Jason Gonzales ◽  
Nigel B. Kaye
Keyword(s):  

2021 ◽  
pp. 108586
Author(s):  
Jingcui Xu ◽  
Hai Guo ◽  
Yanling Zhang ◽  
Xiaopu Lyu
Keyword(s):  

2021 ◽  
Vol 218 ◽  
pp. 104780
Author(s):  
Xiaochuan Li ◽  
Xinli Zhao ◽  
Yefeng Jiang ◽  
Mingrui Zhang ◽  
Li Wang ◽  
...  

Energies ◽  
2021 ◽  
Vol 14 (21) ◽  
pp. 6983
Author(s):  
Zhiyong Zhou ◽  
Yao Lu ◽  
Yimeng Cui

High temperature smoke caused by fire is a major cause of casualties. In order to ensure the safety of personnel, it is very important to control the spread of smoke and enable personnel to quickly withdraw from the fire scene. While traditional hard isolation, such as fire doors, may hinder the safe evacuation of people, the use of an air curtain as a flexible isolation has received more and more attention from researchers. In this paper, the influence of jet direction of compound air curtain on the smoke control effect was studied, and six working conditions were designed. The temperature and smoke isolation of the compound air curtain were numerically simulated by using ANSYS FLUENT software. The parameters such as temperature, velocity pressure and velocity streamline were analyzed, and the smoke control effects of six different jet directions were discussed. The simulation results were verified by Pyrosim fire simulation software simulation software. The results show that the direction of jet flow has a significant influence on the smoke control effect, and the fire smoke control effect under working conditions 4 and 5 is better. The working condition 5 (both air curtain A and air curtain B have outward jet direction) has the best smoke prevention effect, which is suitable for a situation that is close to the fire source. Working condition 4 (outward direction of air curtain A and inward direction of air curtain B) has the second-best effect of smoke prevention, which is suitable for situations far from the fire source.


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