Journal articles on the topic 'Air conditioning'

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1

Singhal, Mr Parag, Tarun Chaudhary, and Shardul Kumar Vijay Tauheed Akhtar Vaibhav Ravin Singh. "Thermoelectric Air Conditioning." International Journal of Trend in Scientific Research and Development Volume-3, Issue-3 (April 30, 2019): 1728–30. http://dx.doi.org/10.31142/ijtsrd23509.

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2

Hoch, Michael. "Air Conditioning." ATZextra worldwide 12, no. 1 (September 2007): 192–95. http://dx.doi.org/10.1365/s40111-007-0036-8.

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3

Battle, Timothy. "Air conditioning." Facilities 5, no. 7 (July 1987): 10–12. http://dx.doi.org/10.1108/eb006411.

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4

Kumar,, Mr Lokesh. "Air Conditioning." INTERANTIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT 08, no. 04 (April 26, 2024): 1–5. http://dx.doi.org/10.55041/ijsrem31781.

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The working principles and the basic features of air conditioning systems are introduced in this paper. With the improvement of standard of living, air-conditioning has widely been applied. The increasing demand for comfort air-conditioning has brought within the need for greater numbers of practical, technical and sales personal who have should training in basics principles and applications of modern air-conditioning. The technical information presented in this work is intended to satisfy the immediate and fundamental concepts and relevant principles in the field of air-conditioning. The subject of air-conditioning has come to stay with the universities in the country. Keywords: Air-conditioning, Technology, Cooling system
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5

Liang, Yu, and Wu. "Air-Conditioning Resource Management and Control Method based on Cloud Platform for Wind Power Consumption." Processes 7, no. 7 (July 19, 2019): 467. http://dx.doi.org/10.3390/pr7070467.

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Air-conditionings have energy storage functions. Through reasonable aggregation control, the output tracking can be implemented for wind power with stronger fluctuation to enhance its utilization rate. Cloud technology and intelligent appliances enable the appliance vendor to implement information interaction with the air-conditioning through cloud platforms to realize flexible regulation. In this paper, a management and control method of air-conditioning based on cloud platform is established. Based on this structure, the air-conditionings are divided into several aggregation groups according to the similarity of parameters, and each group completes the consumption task collaboratively. The consumption evaluation model of the air-conditioning group is established. On this basis, the allocation problem on consumption task for the aggregated group is constructed to implement the optimal solution under the condition of guaranteeing the degree of completion and user comfort. Each group implements the control for air-conditioning inside the group through the sliding mode control model. The simulation experiment verifies that the algorithm can effectively follow the output of clean energy, while intervening less in the air-conditioning operation.
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6

Stalder, Laurent, and Jill Denton. "Air, Light, and Air-Conditioning." Grey Room 40 (July 2010): 84–99. http://dx.doi.org/10.1162/grey_a_00003.

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7

Avinash, Saraf Akshay. "Design of Solar Powered Air Conditioning System." International Journal of Trend in Scientific Research and Development Volume-3, Issue-3 (April 30, 2019): 1406–10. http://dx.doi.org/10.31142/ijtsrd23347.

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8

Woodward, F. I. "Forest air conditioning." Nature 454, no. 7203 (July 1, 2008): 422–23. http://dx.doi.org/10.1038/454422a.

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9

Ouchi, Yasumas, and Shoji Otoshi. "Air conditioning apparatus." Journal of Heat Recovery Systems 6, no. 1 (January 1986): iv. http://dx.doi.org/10.1016/0198-7593(86)90184-0.

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10

Badr, O., P. W. O'Callaghan, and S. D. Probert. "Air-conditioning processes." Applied Energy 37, no. 1 (January 1990): 13–35. http://dx.doi.org/10.1016/0306-2619(90)90017-8.

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11

Yezhov, Vladimir, Tatiana Ezhova, Natalia Semicheva, and Veronika Makhova. "Outdoor air conditioning." Istrazivanja i projektovanja za privredu 15, no. 3 (2017): 313–18. http://dx.doi.org/10.5937/jaes15-14668.

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12

Berres, Daniel S., Ernest A. Redman, and George P. Lively. "AIR CONDITIONING AFLOAT." Journal of the American Society for Naval Engineers 59, no. 1 (March 18, 2009): 1–22. http://dx.doi.org/10.1111/j.1559-3584.1947.tb02723.x.

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13

Xiao, Yiping, Jiaxuan Li, Xiyao Gong, and Jun He. "Optimized the Microgrid Scheduling with Ice-Storage Air-Conditioning for New Energy Consumption." Sustainability 16, no. 12 (June 17, 2024): 5133. http://dx.doi.org/10.3390/su16125133.

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In the face of the stochastic, fluctuating, and intermittent nature of the new energy output, which brings significant challenges to the safe and stable operation of the power system, it is proposed to use the ice-storage air-conditioning to participate in the microgrid optimal scheduling to improve wind and light dissipation. This paper constructs an optimal scheduling model for the ice-storage air-conditioning to participate in the microgrid, analyzes the regulation advantages of the ice-storage air-conditioning’s cold storage and cold release process and its participation in the scheduling process; secondly, based on the scenario method, the scenario modeling of the microgrid distributed wind and light output uncertainty and cold load uncertainty is carried out; lastly, an optimal scheduling model is constructed to minimize the operation and maintenance cost of each unit and the storage cost of the ice-storage air-conditioning, the highest rate of clean energy generation and the lowest cost of electricity consumption of the air-conditioning users as the objective function. The example simulations show that the proposed optimal scheduling model can promote the new energy consumption rate of the microgrid, proving that the ice-storage air-conditioning is more economical compared with ordinary air-conditioning and that the operating cost within the optimized microgrid is reduced by about 10.5%. The cost of the air-conditioning users’ electricity consumption has been reduced by about 11.7% after responding to the regulation.
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14

El-Samadony, Y. A. F., and B. M. Gibbs. "Energy Efficient Liquid Desiccant Hybrid Air Conditioning System." International Journal of Modeling and Optimization 4, no. 3 (June 2014): 211–15. http://dx.doi.org/10.7763/ijmo.2014.v4.375.

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15

T, Basavraja K., M. Rajes, and M. Krishnaven P. Sachin. "Designing of Solar Air Conditioning for Four Wheeler." International Journal of Trend in Scientific Research and Development Volume-3, Issue-3 (April 30, 2019): 1216–19. http://dx.doi.org/10.31142/ijtsrd23281.

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16

Reddy, Dr S. Sreenatha, P. Akhil, and N. Raju K. Vishnu N. Ashok. "Analysis of Air Conditioning System used in Automobile." International Journal of Trend in Scientific Research and Development Volume-3, Issue-3 (April 30, 2019): 1295–98. http://dx.doi.org/10.31142/ijtsrd23357.

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17

Menshenin, V. A., and A. N. Lykov. "AIR CONDITIONING SYSTEM DEVELOPEMENT." Scientific and Technical Volga region Bulletin 7, no. 4 (August 2017): 146–48. http://dx.doi.org/10.24153/2079-5920-2017-7-4-146-148.

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18

Reichenbach, Michael. "More Efficient Air Conditioning." ATZ worldwide 123, no. 10 (September 24, 2021): 14–15. http://dx.doi.org/10.1007/s38311-021-0727-1.

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19

TAKEUCHI, Keizo, Masami MORI, and Takeshi IGUCHI. "Car air conditioning system." Journal of Japan Institute of Light Metals 41, no. 3 (1991): 208–20. http://dx.doi.org/10.2464/jilm.41.208.

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20

Adamek, Karel. "Air Conditioning and Application." International Journal of Mechanical Engineering and Applications 3, no. 1 (2015): 22. http://dx.doi.org/10.11648/j.ijmea.s.2015030101.14.

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21

Paterson, Eddie. "Compost and Air-conditioning." Performance Research 24, no. 8 (November 17, 2019): 31–36. http://dx.doi.org/10.1080/13528165.2019.1718428.

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22

LANCIONI, G. E., F. CONINX, G. BROZZI, D. OLIVA, and F. R. HOOGEVEEN. "Air-puff conditioning audiometry." International Journal of Rehabilitation Research 13, no. 1 (March 1990): 67–70. http://dx.doi.org/10.1097/00004356-199003000-00007.

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23

Price, Bennett J. "Computer Room Air Conditioning." Library Hi Tech 7, no. 3 (March 1989): 29–47. http://dx.doi.org/10.1108/eb047764.

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24

Гарькавый, Konstantin Gar'kavyy, Бегдай, and Stanislav Begday. "SOLAR AIR CONDITIONING SYSTEMS." Bulletin of Belgorod State Technological University named after. V. G. Shukhov 2, no. 7 (June 13, 2017): 58–62. http://dx.doi.org/10.12737/article_5940f018cd4fd2.42028727.

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25

Anderson, Kenneth, C. P. Mcsharry, and Gavin Boyd. "AIR CONDITIONING AND DISEASE." Lancet 330, no. 8572 (December 1987): 1400. http://dx.doi.org/10.1016/s0140-6736(87)91291-8.

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26

Hamer, Mick. "Air conditioning threatens Kyoto." New Scientist 191, no. 2567 (September 2006): 9. http://dx.doi.org/10.1016/s0262-4079(06)60326-6.

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27

Ford, Brian, Nimish Patel, Parul Zaveri, and Mark Hewitt. "Cooling without air conditioning." Renewable Energy 15, no. 1-4 (September 1998): 177–82. http://dx.doi.org/10.1016/s0960-1481(98)00150-5.

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28

Baizhan, Li, Yao Runming, and Derek J. Croome. "Air‐conditioning in China." Building Research & Information 23, no. 6 (November 1995): 309–16. http://dx.doi.org/10.1080/09613219508727483.

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29

Nagel, Dirk, and Ralph Trapp. "Comfortable vehicle air conditioning." ATZ worldwide 107, no. 12 (December 2005): 16–18. http://dx.doi.org/10.1007/bf03224794.

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30

Starkey, D. H. "Decontamination and air-conditioning." Journal of Hospital Infection 9, no. 3 (May 1987): 303. http://dx.doi.org/10.1016/0195-6701(87)90131-9.

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31

Thadani, Hitesh, Bhanu K. Chasta, Hari Om Mahiya, and Komal Yadav. "Solar Air Conditioning System." International Journal for Research in Applied Science and Engineering Technology 11, no. 5 (May 31, 2023): 2145–50. http://dx.doi.org/10.22214/ijraset.2023.51993.

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Abstract: Rotary desiccant wheel are used to regulate the relative humidity of air streams. These are commonly integrated into heating ,ventilation and air conditioning unit to reduce the relative humidity of incoming ventilation air. Passive ventilation system are able to deliver adequate ventilation air but cannot control the humidity of the incoming air. To overcome this, the honeycomb water structure of rotary desiccant wheel was redesigned. In addition to this, the temperature of the regeneration air for desorption was lowered. Cooling pads were introduced in between the spokes of the wheel and filled with silica gel particles to form a rotary desiccant wheel. Computational fluid dynamics (CFD) model of the design was validated using experimental data.
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32

Polednik, Bernard, Krzysztof Kozak, Jadwiga Mazur, Marzenna Dudzińska, and Dominik Grządziel. "Radon and its decay products in an air-conditioned auditorium in correlation with indoor air parameters." Indoor and Built Environment 26, no. 5 (January 7, 2016): 621–30. http://dx.doi.org/10.1177/1420326x15626235.

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The measurements of radon and its attached decay product activity concentrations were carried out in an occupied and unoccupied auditorium during three air-conditioning modes i.e. air-conditioning system switched off (air-conditioning off), air-conditioning system switched off during the night and switched on during the day (air-conditioning on/off) and air-conditioning system switched on (air-conditioning on). Higher average concentrations of radon and its decay products were recorded in the auditorium when the air-conditioning system was switched off. The average particle mass and CO2 concentrations and indoor air thermal parameters were elevated during the air-conditioning on/off mode. A statistically significant ( p < 0.001) positive correlation between the decay product concentrations and the particle number and average particle mass concentrations has been observed in the air-conditioning off mode ( r = 0.55 and r = 0.68) and in the air-conditioning on/off mode ( r = 0.54 and r = 0.62, respectively). A significant negative correlation has been observed between the decay product concentrations and the indoor air temperature and CO2 concentrations in the air-conditioning off mode ( r = −0.86 and r = −0.47, respectively). The obtained results confirmed the impact of the air-conditioning system operation on the decrease of health risks related to the presence of radon and its decay products in air conditioned premises.
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33

Yu, Xu, and Biao Yuan. "Design and Analysis of Office Air Conditioning System of Distributed Independent Air Supplying." Applied Mechanics and Materials 42 (November 2010): 461–65. http://dx.doi.org/10.4028/www.scientific.net/amm.42.461.

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Aimed at the problem of huge energy consumption of traditional office air conditioning units, this paper has put forward a new energy-saving and high-efficient office air-conditioning system for centralized work place which is independent in air supplying and can supply cooling or heat on demand and has adopted intelligent control. The paper introduced the structure and working principles of the new air conditioning system, for example, the innovative distributed air supplying system, the frequency-converting air conditioning technology and intelligent control system. The paper also analyzed the advantages of performance, and the new air conditioning system is more energy-saving and comfortable compared with the traditional air conditioning system.
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34

Cao, Guoqing, and Yizhao Zhang. "Air conditioning systems: Testing air cleaning devices." Filtration & Separation 46, no. 4 (July 2009): 30–33. http://dx.doi.org/10.1016/s0015-1882(09)70159-4.

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35

M, Srihari, Md Irshad, and K. Mahesh K. Sai Teja. "Design of Chiller for Air-Conditioning of Residential Building." International Journal of Trend in Scientific Research and Development Volume-3, Issue-3 (April 30, 2019): 1246–52. http://dx.doi.org/10.31142/ijtsrd23291.

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36

Srivastava, Gaurav, Aman Kumar, and Dipti Chandel Harsh Dabas Ashish Mishra Saurabh. "CFD Simulation of Air Conditioning System of the Classroom." International Journal of Trend in Scientific Research and Development Volume-3, Issue-4 (June 30, 2019): 521–23. http://dx.doi.org/10.31142/ijtsrd23824.

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37

Zadoiannyi, O., and Y. Yevdokymenko. "THEORETICAL ANALYSIS OF MEMBRANE AIR DEHUMIDIFICATION IN AIR CONDITIONING SYSTEMS." Innovative Solution in Modern Science 4, no. 48 (June 30, 2021): 33. http://dx.doi.org/10.26886/2414-634x.4(48)2021.3.

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The paper presents a simulation of the process of removing moisture from the air in air conditioning systems using construction vapor-permeable membranes. The existing classical physical and mathematical models are considered and analyzed. Based on the analysis of classical models, a schematic and corresponding theoretical mathematical model of air dehumidification with a semipermeable building membrane with certain characteristics for possibilities of use in air conditioning systems is developed and presented. The data of calculations of moisture release from air for the developed model are given. As a result of analytical researches the correct data for possible use in air conditioning systems are received. Key words: air conditioning systems, air dehumidification, semipermeable membrane, permeability, membrane air dehumidification, convective flow, diffusion flow, moisture permeability.
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38

KITAGAWA, KOICHI. "Recent Air-Conditioning System. Comfort and Energy Conservation Air-Conditioning System Residential Use." Journal of the Institute of Electrical Engineers of Japan 117, no. 7 (1997): 428–33. http://dx.doi.org/10.1541/ieejjournal.117.428.

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39

Kalkan, Naci, E. A. Young, and Ahmet Celiktas. "Solar thermal air conditioning technology reducing the footprint of solar thermal air conditioning." Renewable and Sustainable Energy Reviews 16, no. 8 (October 2012): 6352–83. http://dx.doi.org/10.1016/j.rser.2012.07.014.

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40

Liu, Kai Jing, Qun Li Zhang, and De Ying Li. "Application Analysis of Chilled Water Storage Technology in the Transformation of Central Air Conditioning System." Advanced Materials Research 608-609 (December 2012): 1097–105. http://dx.doi.org/10.4028/www.scientific.net/amr.608-609.1097.

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This article introduces the specific application of central air conditioning chilled water storage technology in the actual central air conditioning engineered reconstruction. The author analyzes the energy-saving effect of application of central air conditioning chilled water storage technology and the economy of central conditioning renovation project. Operation cost comparison shows that water storage air conditioning system saves money more above 35% than conventional air conditioning system.
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41

Jian, Yiwen, Shuwei Liu, Mengmeng Bian, Zijia Liu, and Shengjie Liu. "Climate Chamber Experiment Study on the Association of Turning off Air Conditioning with Human Thermal Sensation and Skin Temperature." Buildings 12, no. 4 (April 12, 2022): 472. http://dx.doi.org/10.3390/buildings12040472.

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To date, few attempts have been made to associate air conditioning behavior with environmental conditions and the occupants’ thermal sensations and physiological states simultaneously. In this study, a series of experiments were conducted in a climate chamber environment, representative of a typical intermittent air conditioning process in residences. For 29 participants, local skin temperatures, thermal sensation and the participants’ intention of turning off air conditioning were recorded continually. Skin temperature and thermal sensation were found to keep decreasing over time, which in turn triggered turning off air conditioning. It is also noted that participants reported different thermal sensations when they intended to turn off air conditioning. However, there was no statistically significant difference in skin temperature of exposed body parts such as foot and calf. Additionally, given the ambient set temperature, the probability of turning off air conditioning exponentially increased with the increasing air conditioning duration. Accordingly, from a physiological perspective, the occupants’ behavior of turning off air conditioning was largely dependent on the local skin temperature of exposed body parts. From an environmental perspective, air conditioning duration demonstrated influences on the air conditioner switch-off. The lower the ambient temperature or the longer the exposure to air conditioning environment, the stronger the intention of the participants to turn off air conditioning.
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42

Di, Min Yan, Yong Yao, Dan Di, and Yu Xia Lu. "Experimental Research on the Condensation Air Blower of Overhead Automobile Air-Conditioning." Applied Mechanics and Materials 347-350 (August 2013): 191–96. http://dx.doi.org/10.4028/www.scientific.net/amm.347-350.191.

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It describes the types,the existing problems and three improved methods on the condensation air blower of roof-mounted automobile air-conditioning. It details a specific method, a practical circuit and the experimental results of the sensorless BLDC motor for condensing blower based on dsPIC30F4011 control,. According to the need of the current States on automatically climate air conditioning system (ACC system) , and the features of the roof-mounted automobile air-conditioning, we think it is more reasonable,the dsPIC30F4011 and the sensorless BLDC motor can be used for the the condensation air blower of automobile air conditioning.
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43

Hussain, Taliv. "Effects of different air inlet temperatures and regeneration air inlet velocities on the performance of Hybrid Desiccant Air Conditioning System." IOP Conference Series: Materials Science and Engineering 1224, no. 1 (January 1, 2022): 012012. http://dx.doi.org/10.1088/1757-899x/1224/1/012012.

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Abstract A hybrid desiccant air conditioning unit is treated as an effective alternative to the conventional air conditioning system due to independent control of humidity, temperature, and eco-friendliness. The decrease in environmental impact and energy saving is more when the desiccant recovered by utilizing “free” thermal energy. This current work has experimented with a performance study of a hybrid desiccant air conditioning unit for typical humid and hot Indian (Aligarh) climatic conditions. Here, the effects of different air inlet temperatures at the process section, i.e. (28, 29.5, 31, 32.5, 34, 35.5 and 37°C) and regeneration section, i.e. (50-58.8°C) and different regeneration air inlet velocities (2.5 and 4.5 m/s) on the performance of hybrid desiccant air conditioning system are analyzed. Thus, optimization of performance parameters i.e. refrigerating effect, heat rejection rate, VCOP, ECOP, compressor work, dehumidification effectiveness, moisture removal capacity, DCOP, regeneration effectiveness and regeneration rate is identified for attaining maximum efficiency of hybrid desiccant air conditioning system under above operating states.
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44

Liang, Kunfeng, Xianle Ren, Chunlei Ruan, and Lin Wang. "Operation Modes and Energy Analysis of a New Ice-Storage Air-Conditioning System." Open Electrical & Electronic Engineering Journal 9, no. 1 (February 16, 2015): 7–14. http://dx.doi.org/10.2174/1874129001509010007.

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Based on the idea of temperature and humidity independent control, a new air-conditioning system is presented, which combines ice storage air-conditioning system and capillary radiation air-conditioning. And the ground-source is also applied to provide high temperature for the cold source for capillary radiation air-conditioning. The air-conditioning system is characterized by power load peak load shifting, reducing energy consumption and providing good thermal comfort. Taking an office building in Hangzhou area as an example, the experiment is developed by calculating building load, designing air-conditioning schemes and making cold storage strategy. In order to compare with conventional airconditioning system, energy consumption has been analyzed. The results show that the ice storage air-conditioning system has advantages in energy conservation.
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45

Zhong, Cheng Yao. "Study on Solar Air-Conditioning System of Temperature Difference." Advanced Materials Research 482-484 (February 2012): 1051–56. http://dx.doi.org/10.4028/www.scientific.net/amr.482-484.1051.

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In the solar air-conditioning system, it makes chilled water reduced to the lowest temperature in the night of the day without any form of energy consumption, and then makes use of water-cooled chillers of air conditioning to refrigerate further in the valley period of electricity consumptions. By doing this, it can improve the refrigeration coefficient of the air- conditioning system, and save energy and cost of electricity substantially. It will make the cost of solar air- conditioning lower than conventional air conditioning, and furthermore provides a broad way for the popularity of solar energy and solar air conditioning.
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46

Polednik, Bernard, Krzysztof Kozak, Jadwiga Mazur, Marzenna Dudzińska, Dominik Grządziel, and Aleksandra Polednik. "Radon equilibrium factor and perceived air quality in an air-conditioned auditorium in Lublin, Poland." Indoor and Built Environment 27, no. 2 (September 29, 2016): 270–77. http://dx.doi.org/10.1177/1420326x16672277.

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The study reports measurements of radon and its decay products and of perceived air quality carried out in an occupied and unoccupied auditorium at the Lublin University of Technology in Lublin, Poland during three air conditioning system operation modes – air conditioning off, air conditioning on and air conditioning on/off. In the air conditioning on/off mode radon and its decay product concentrations and values of perceived air quality were inversely related. During that air conditioning operation mode, the value of the mean equilibrium factor F for the unattached fraction (0.31 ± 0.19) was somewhat higher than for the attached fraction (0.24 ± 0.19) and significant negative correlations were found between F values for attached, unattached and for the sum of both progeny fractions and perceived air quality values. These findings may be of importance as they indicate that in certain air conditioning operation modes indoor air quality deteriorates along with a reduction in the radon health hazard. This, in turn may adversely affect the comfort and productivity of the room users.
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47

Li, Mao Ren. "Development and Design of Cold Radiation Refrigeration Energy Saving Technology of Comfort Air Conditioning." Applied Mechanics and Materials 670-671 (October 2014): 968–71. http://dx.doi.org/10.4028/www.scientific.net/amm.670-671.968.

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This project is mainly used in the comfort air conditioning system, replacing the conventional indoor air conditioning using fan convection cooling form, directly to the traditional air conditioning evaporator by convection heat transfer to type into the radiation heat transfer form, using modern new polymer composite material as the main body of the evaporator, the refrigerant cycle, in the mature theory of refrigeration the design of conventional air conditioning operating conditions of vapor compression on the overall setting of air conditioning design, exploration and design with the radiation air conditioning system technical requirements, the radiant cooling refrigerant system the data acquisition, development and design of intelligent controller and related problem of air conditioner indoor dew point control, thus the formation of completely based on the prototype structure of energy-saving radiation cooling technology of comfort air conditioning.
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48

Ni, Jia Jia, Li Tao, Yi Jun Wang, and Jin Lei Wu. "The Energy Consumption Investigation of the Hotel Central Air-Conditioning System and the Research of Energy Saving Measures." Advanced Materials Research 712-715 (June 2013): 1614–18. http://dx.doi.org/10.4028/www.scientific.net/amr.712-715.1614.

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Through to investigation on present situation of the Changzhou Changrui Hotel air conditioning system energy consumption, by analysis the energy consumption, the power consumption of hotel central air-conditioning system charge 58% of the total electric, accounted for a large proportion. So we should take the necessary measures to reduce the expenses of air conditioning system energy consumption. According to the analysis of data on the survey, we put forward some particular energy-saving measures of central air-conditioning system of the hotel, including strengthening the building envelope insulation, energy saving technology of doors and windows, measures of roof energy saving, setting reasonable indoor temperature, adopting frequency control air-conditioning, reuse waste heat of the central air-conditioning, using the condensation water of central air conditioning to make-up water and reducing temperature of cooling tower , and drying the fresh air independently.
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49

Erzurumlu, Dursun Yenal. "Tarım Traktörlerinde Kullanılan Klima Sistemlerinin Traktör Verimi ve Özgül Yakıt Tüketimine Etkileri." Turkish Journal of Agriculture - Food Science and Technology 6, no. 3 (March 19, 2018): 285. http://dx.doi.org/10.24925/turjaf.v6i3.285-290.1676.

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In this study, the effects of air-conditioning system on tractor performance and specific fuel consumption were examined and evaluated by experimental data. Loading performed from tractor power take-off in periodically by electrical dynamometer. Fuel consumption were measured in air-conditioning off and air-conditioning on usage and comments were discussed according to these values. In same speed and loading, measured specific fuel consumption value when the air conditioning is on more than measured specific fuel consumption value when the air conditioning is off. Torque values were measured and fuel power and power take-off power were calculated, these values were compared, comments were discussed according to these values. In same speed and loading, measured power take-off efficiency values when the air conditioning is on less than measured power take-off efficiency values when the air conditioning is off. This change is determined respectively as average 4.37%, 4.34% and 8.63% negatively for the measured three brand tractors. As a result of all data, the positive effect of air-conditioning usage on specific fuel consumption, the negative effect of air-conditioning usage on power take-off efficiency were determined.
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50

Günel, Gökçe. "Air Conditioning the Arabian Peninsula." International Journal of Middle East Studies 50, no. 3 (August 2018): 573–79. http://dx.doi.org/10.1017/s0020743818000570.

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Abstract:
With much of the Arabian Peninsula characterized by hot and arid weather conditions during long summer seasons, residents are forced to rely on air conditioning to cool their surroundings. Before the construction of air conditioning infrastructures, many would leave the coast during the summer months to head to oases, such as Al Ain near Abu Dhabi, or live in tents in the desert to find relief from the heat. From the 1950s, European and American building practices shaped the region with little consideration of vernacular design elements or energy conservation. These building practices introduced air conditioning as a cooling method. For instance, the 1951 Report of Operations to the Saudi Arab Government by the Arabian American Oil Company explained how “automobiles, air conditioning units, sewing machines, washing machines, refrigerators, and many other modern conveniences are now readily available” in Al Hasa, a significant region for Aramco's operations on the east of Saudi Arabia. By 1952, workers residing in Aramco's camps could have air conditioning units installed in their rooms on a rental basis. Air conditioning technology reconfigured urban environments, altering the relationship between indoors and outdoors, and ultimately constituting what Jiat-Hwee Chang and Tim Winter term a “thermal modernity” that transforms how built forms are imagined and inhabited. The current widespread use of air conditioning in the region is therefore connected not only to high temperatures, but also to how air conditioning is singled out as the ultimate technical fix in confronting the climate. Other solutions to managing heat, such as improving insulation mechanisms for residences and office buildings, have been less pervasive.
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