• Title/Summary/Keyword: air conditioner

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Dynamic Analysis of Compressor Mounting Bracket using FRF-based Substructuring Method (전달함수합성법을 이용한 차량용 에어컨 컴프레서 브라켓의 동특성 해석)

  • Chung, Hong-Suk;Seo, Se-Young;Lee, Doo-Ho;Kim, Chan-Mook
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2000.11a
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    • pp.194-200
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    • 2000
  • Researches on the FRF-based substructuring method have been mainly focused on vibratory response analysis. Present study is concerned about the application of the method to the dynamic stress analysis of a compressor mounting bracket in a passenger car. This is performed by using reaction forces that can be obtained by the FRF-based substructuring method. The air-conditioner system, composed of a compressor, a bracket and a test jig, is analyzed by using the FRF-based substructuring method. The experimental and numerical FRFs are combined to calculate the system responses and reaction forces at the connection point. The dynamic reaction forces plugged into the bracket FE model to compute the compute the stresses of the bracket. Dynamic stresses by the present method are compared with those from FE model. The comparison shows possibility of practical usage of the method for the real problem.

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A Research on Algific Sites' Value as Geosites and Their Conservation Strategies (풍혈지대의 지질명소로서의 가치와 보호대책에 관한 연구)

  • Kim, Jeongyun;Park, Kyeong
    • Journal of The Geomorphological Association of Korea
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    • v.23 no.2
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    • pp.15-27
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    • 2016
  • Since restoration of damaged geomorphological sites is almost impossible, it is necessary, to select and conserve geomorphological heritages in a preemptive action. Algific (=producing cold) sites are one of the natural resources which have not been protected well due to the lack of understanding of their value, despite their conservation importance. This research aimed to help people to recognize such geosites' actual value and make them understand the necessity of protecting these sites. Algific areas are valuable by the simple fact that it is a mysterious phenomenon in which the ice forming may happen even in the mid-summer and the environment is always cool. Algific sites deserve geomorphological research in the sense that topographic condition called talus causes this phenomenon. They are also valuable in plant geographic sense because northern rare plants survive isolatedly due to low-temperature environment of these sites. Their cultural-historical value is also high by the fact that they have been connected closely with local residents' lives shown by its nicknames, "natural refrigerator" or "natural air conditioner".

Multi-scale simulation of wall film condensation in the presence of non-condensable gases using heat structure-coupled CFD and system analysis codes

  • Lee, Chang Won;Yoo, Jin-Seong;Cho, Hyoung Kyu
    • Nuclear Engineering and Technology
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    • v.53 no.8
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    • pp.2488-2498
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    • 2021
  • The wall film-wise condensation plays an important role in the heat transfer processes of heat exchangers, refrigerators, and air conditioner. In the field of nuclear engineering, steam condensation is often utilized in safety systems to remove the core decay heat under both transient and accident conditions. In particular, passive containment cooling system (PCCS), are designed to ensure containment safety under severe accident conditions. A computational fluid dynamics (CFD) scale analysis has been conducted to calculate the heat transfer rate of the PCCS. However, despite the increase in computing power, there are challenges in the long-term transient simulation of containment using CFD scale codes. In this study, a heat structure coupling between the CFD and system analysis codes was performed to efficiently analyze PCCS. In addition, the component unstructured program for interfacial dynamics (CUPID) was improved to analyze the condensation behavior of ternary gas mixtures. Thereafter, the condensation heat transfer on the primary side was calculated using the improved CUPID and CFD code, whereas that on the secondary side was simulated using MARS. Both the coupled codes were validated against the CONAN facility database. Finally, conjugate heat transfer simulations with wall condensation in the presence of non-condensable gases were appropriately performed.

Comparative study on the prediction of speed-power-rpm of the KVLCC2 in regular head waves using model tests

  • Yu, Jin-Won;Lee, Cheol-Min;Seo, Jin-Hyeok;Chun, Ho Hwan;Choi, Jung-Eun;Lee, Inwon
    • International Journal of Naval Architecture and Ocean Engineering
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    • v.13 no.1
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    • pp.24-34
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    • 2021
  • This paper predicts the speed-power-rpm relationship in regular head waves using various indirect methods: load variation, direct powering, resistance and thrust identity, torque and revolution, thrust and revolution, and Taylor expansion methods. The subject ship is KVLCC2. The wave conditions are the regular head waves of λ/LPP = 0.6 and 1.0 with three wave steepness ratios at three ship speeds of 13.5, 14.5 and 15.5 knots (design speed). In the case of λ/LPP = 0.6 at design speed, two more wave steepness ratios have been taken into consideration. The indirect methods have been evaluated through comparing the speed-power-rpm relationships with those obtained from the resistance and self-propulsion tests in calm water and in waves. The load variation method has been applied to predict propulsive performances in waves, and to derive overload factors (ITTC, 2018). The overload factors have been applied to obtain propulsive efficiency and propeller revolution. The thrust and revolution method (ITTC, 2014) has been modified.

Indoor Temperature Analysis by Point According to Facility Operation of IoT-based Vertical Smart Farm (IoT 기반 수직형 스마트 팜의 설비운영에 따른 지점별 실내온도분석)

  • Kim, Handon;Jung, Mincheol;Oh, Donggeun;Cho, Hyunsang;Choi, Seun;Jang, Hyounseung;Kim, Jimin
    • Korean Journal of Construction Engineering and Management
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    • v.23 no.1
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    • pp.98-105
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    • 2022
  • It is essential for vertical smart farms that artificially grow crops in an enclosed space to properly utilize air environment facilities to create an appropriate growth environment. However, domestic vertical smart farm companies are creating a growing environment by relying on empirical data rather than systematic methods. Using IoT to create a growing environment based on systematic and precise monitoring can increase crop production yield and maximize profitability. This study aims to construct a monitoring system using IoT and to analyze the cause by demonstrating the imbalance of temperature environment, which is a significant factor in crop cultivation. 1) The horizontal temperature distribution of the multi-layer shelf was measured with different operating methods of LED and air conditioner. As a result, there was a temperature difference of "up to 1.7℃" between the sensors. 2) As a result of measuring the vertical temperature distribution, the temperature difference was "up to 6.3℃". In order to reduce this temperature gap, a strategy for proper arrangement and operation of air conditioning equipment is required.

Performance Evaluation of the Capillary Tube Radiant Floor Cooling & Heating System (모세유관 바닥복사 냉·난방 시스템의 성능평가)

  • Seo, Yu-jin;Kim, Taeyeon;Leigh, Seung-bok
    • KIEAE Journal
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    • v.12 no.4
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    • pp.89-95
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    • 2012
  • At present, many countries are trying to reduce green gas emissions to mitigate the effects of these gases on climate change. Year after year, there have been efforts to cut energy use for heating and cooling. Heating and cooling systems, common in all forms of housing, are increasing due to the constant supply of new housing resulting from improvements in economic growth and the quality of life. Thus, studies related to the design of cooling and heating systems to improve energy efficiency are expanding. Among the new designs, radiant floor cooling and heating systems which use capillary tubes are becoming viable means of reducing energy use. Radiant floor cooling and heating systems which use capillary tubes are creative and sustainable systems in which cool and hot water is circulated into capillary tube which has small diameter. In this study, the cooling and heating performance of this type of capillary tube system is investigated in an experimental study and a simulation using TRNSYS. The results of the experimental study show that under a peak load, a capillary tube radiant floor cooling system using geothermal energy can achieve desired indoor temperature without an additional heat source. The set room air temperature is maintained while the floor surface temperature, PMV and PPD remain within the comfort range. Also, this system is more economic than a packaged air conditioner system due to its higher COP. The results of the simulation show that the capillary tube radiant floor heating system maintains set temperature more stable than a PB pipe radiant floor heating system due to its lower supply temperature of hot water. In terms of energy consumption, the capillary tube radiant floor heating system is more efficient than the PB pipe radiant floor heating system.

Operating Mode of Thermally Activated Building System (TABS) for Residential Buildings According to their Cooling Load Profile (주거건물의 냉방 부하 패턴에 따른 구체축열시스템 운전 방안)

  • Park, Sang-Hoon;Yeo, Myoung-Souk;Yoo, Mi-Hye;Lee, Yu-Ji;Chung, Woong-June;Kim, Kwang-Woo
    • Journal of the Korean housing association
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    • v.23 no.2
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    • pp.99-106
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    • 2012
  • Compared to Packaged Terminal Air Conditioning Systems, Radiant Cooling Systems have the advantage of energy saving and thermal comfort. Thermally Activated Building System (TABS) is one of the radiant heating and cooling systems. The main difference between TABS and other radiant systems lies in the usage of the time-lag effect of storing heat energy in the concrete. Current energy usage in summer time is concentrated within a specific time by using Packaged Terminal Air-Conditioner (PTAC). Due to the time-lag effect of TABS, energy usage can be distributed to other time zones. To maximize this effect, it is important to determine the appropriate operating mode, which for TABS is dependent upon the cooling load generated by the occupancy schedule. In this study, occupancy schedules are determined for various residential types. The operating modes of TABS for these residential types are estimated by using a dynamic computational simulation method. The results indicate that the operating modes of TABS can be determined by residential type and occupancy schedule. The load handled ratio by TABS is set up differently according to the cooling load profile obtained from residential type and occupancy schedule. By using TABS, energy consumption could be reduced by 20% compared to PTAC.

Development of Thermal Comfort Sensation in the Variation of Air-velocity and Temperature in Air-conditioner (에어컨의 기류 및 온도 변동에 따른 인체 순응에 관한 연구)

  • 장문간;금종수;조관식;이기섭;최광환;정용현;김동규;김형철
    • Proceedings of the Korean Society for Emotion and Sensibility Conference
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    • 2001.05a
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    • pp.141-146
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    • 2001
  • 실내 공기조화를 하는 거주역에 대한 온열환경요소의 자극 변화를 통해 실내 에너지를 절약할 수도 있으며 쾌적감도 향상시킬 수 있다. 따라서 본 연구에서는 거주자의 온열감각을 자극할 수 있는 온열요소 중 비교적 영향이 크고 용이하게 제어할 수 있는 온도 및 기류의 변동으로 한국인의 온열감각(온냉감, 쾌적감, 만족감)에 미치는 영향을 실험을 통하여 파악하였다. 온도 및 기류별 실험을 통하여 22$^{\circ}C$, 24$^{\circ}C$, 26$^{\circ}C$의 각 온도에 대한 패케지 에어컨의 강, 중, 약 기류에 대한 인체순응 시간과 인체 변화를 파악하였다. 또한 인체순응시간을 고려한 온도 상승 실험을 통하여 24$^{\circ}C$, 26$^{\circ}C$에서 1$^{\circ}C$온도 상승시 인체의 온열쾌적감의 변화를 파악하였으며 온도 상승을 통한 인체 순응시간을 도출하였다. 본 실험을 통하여 초기공조 조건을 24C$^{\circ}C$ 로 한 경우 인체순응을 통한 온도 상승으로 30분 후의 공조중기와 공조후기에 온도 및 기류의 지속적인 변동 자극으로 온냉감은 "약간 서늘하다"를 지속적으로 유지하고 있으며 온도상승으로 인한 쾌적존의 높은 온도에서도 기류의 영향으로 쾌적감은 30분 이후부터 "쾌적"을 지속적으로 유지하는 것을 알 수 있었다. 따라서 본 연구를 통하여 인체순응을 고려한 온도 및 기류의 자극을 통하여 공조초기부터 공조말기의 장시간에도 인체가 지속적인 쾌적성을 유지한다는 것을 알 수 있었다.성을 유지한다는 것을 알 수 있었다.

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Study on Establishment of the Noise Grade Criteria for Household Appliances (가전제품 소음등급 기준설정에 관한 연구)

  • Park, Hyungkyu;Lee, Jaewon;Lee, Wooseok;Han, Jinseok;Gu, Jinhoi
    • Transactions of the Korean Society for Noise and Vibration Engineering
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    • v.22 no.12
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    • pp.1237-1242
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    • 2012
  • No matter how low it might be, noise from home appliances in indoor environment cause displeasure for residents as it is produced nearby. Electronic goods including vacuum cleaner and washing machine generate high frequency noise, which interrupts TV-watching or conversations and cause noises between floors in apartment houses. In particular, refrigerators make constant noise late at night, hampering the study for exams and causing sleeplessness. Korea, despite the government's efforts to promote low-noise goods based on the noise test by corporation, there is a lack of standardization in the test method, test condition and measuring equipments. This is a major reason that lowers the reliability of low-noise products. At present, low-noise home appliances are certified with eco labeling in the nation but, only 7 brands of refrigerators, 4 brands of washing machines and 97 brands of air-conditioners obtained certification as of august, 2011. In addition, none of Kimchi-refrigerator and vacuum cleaner brands were approved as low-noise home appliances. This shows Korea's relatively underdeveloped market for low-noise products, which, in part, is because of the difficulties companies face in being certified with eco labeling as they should satisfy various requirements such as power-saving and eco-friendly design besides low-noise features. As a result, low-noise labeling for home appliances should be established for the revised noise and vibration management law and the study was carried out to establish low-noise labeling system for major noise sources including vacuum cleaner, washing machine, air-conditioner and refrigerator.

Development of Home Automation Robots using Face Recognition Image Processing (안면인식 영상처리를 활용한 가정용 로봇 개발)

  • Choi, Min-kyu;Woo, In-hyuk;Kim, Dong-hyuk;Ahn, Yong-hyun;Han, Joon-ho;Park, Joo-young;Ko, Ji-hye;Park, Je-hee;Moon, Ha-young;Kim, Min-woo
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2018.05a
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    • pp.374-376
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    • 2018
  • In this study, we developed a mobile home robot using a face recognition method using a camera attached to a raspberry pie. It receives the real time image through the camera attached to the raspberry pie, recognizes the face of the person, and distinguishes the operation of the smart cool air temperature device according to the result. It is expected that the robot will be able to increase the energy utilization efficiency by allowing the robot to operate in cold and hot winds only where there is no human being, instead of operating the hot and cold air conditioner.

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