• 제목/요약/키워드: freezing air temperature

검색결과 159건 처리시간 0.026초

현장시험을 통한 Carbon fiber heating wire의 콘크리트슬래브 열전달 효과 (Field Test to Investigate Heat Transferring Effect of Carbon Fiber Heating Wire on the Concrete Slab)

  • 김희수;반호기
    • 한국지반환경공학회 논문집
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    • 제20권4호
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    • pp.31-38
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    • 2019
  • 기존 도로면 결빙방지기술은 염화물로 인한 도로파손 및 환경적인 문제점들 해결하기 위해 탄소섬유발열체를 콘크리트 슬래브에 'ㄷ'자 모양으로 삽입하여 현장시험을 수행하였다. iButton을 이용하여 중첩효과를 기대할 수 있는 구간과 그렇지 않은 구간에 대하여 12시간 발열하는 동안 온도를 측정하였다. 시험결과 중첩효과가 있는 구간에는 영상의 온도를 보였으며, 그렇지 않은 구간은 영상의 온도는 아니지만 콘크리트 표면 온도의 상승을 보였다. 따라서 CFHW는 발열체로 충분히 결빙방지 재료로 사용가능 함을 시험을 통해 검증하였다.

극지환경성능시험설비를 활용한 저온환경 시스템 구축 (Establishment of Low Temperature Environment System Using Polar Environment Performance Test Construction)

  • 성기영;한성종;이정희
    • 한국산업융합학회 논문집
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    • 제25권5호
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    • pp.843-851
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    • 2022
  • This paper was conducted to study the conditions for the manufacture and operation of artificial snow removal and ice-making test facilities so that the test equipment can be tested in a low-temperature environment using the polar environment performance test facility. The polar environment performance test Facility is designed to artificially simulate extreme environments up to -65 ℃, and is a mid-to-large low-temperature environment test facility that can perform performance tests on offshore plant equipment, ships, leisure, and offshore structures. To verify the safety of deck work of ships operating in polar environments, artificial snow removal and artificial ice making devices were manufactured, and we conducted research on various operating environments using these facilities. For the efficient operation of artificial snow and ice making facilities, it is important to continuously supply dry air, and it has been found that installing an additional heater at the tip of the nozzle is effective in preventing freezing.

액상분사식 LPG 인젝터의 아이싱 생성 특성 및 억제 방법 (Icing Characteristics in Liquid-Phase Injection of LPG Fuel)

  • 이선엽;김창업;최교남;강건용
    • 한국분무공학회지
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    • 제14권4호
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    • pp.147-152
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    • 2009
  • Since a liquid-phase LPG injection system allows accurate control of fuel injection and increase in volumetric efficiency, it has advantages in achieving higher engine power and lower emissions compared to the mixer type LPG supplying system. However, this system also leads to an unexpected event called icing phenomenon which occurs when moisture in the air near the injector freezes and becomes frost around the nozzle hole due to extraction of heat from surrounding caused by instant fuel vaporization. As a result, it becomes difficult to control air/fuel ratio in engine operation, inducing exacerbation of engine performance and HC emission. One effort to mitigate icing phenomenon is to attach anti-icing injection tip in the end of nozzle. Therefore, in this study, the effect of engine operation parameters as well as surrounding conditions on icing phenomenon was investigated in a bench test rig with commercially-used anti-icing injection tips. The test results show that considerable ice was deposited on the surface near the nozzle hole of the anti-icing tip in low rpm and low load operating conditions in ambient air condition. This is because acceleration of detachment of deposited ice from the tip surface was induced in high load, high rpm conditions, resulting in decrease in frost accumulation. The results of the bench testing also demonstrate that little or no ice was formed at surrounding temperature below a freezing point since the absolute amount of moisture contained in the intake air is too small in such a low temperature.

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Efficient Opaque Ice Sphere Formation Using a Lightweight Geometric Approach

  • Jong-Hyun Kim
    • 한국컴퓨터정보학회논문지
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    • 제29권3호
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    • pp.91-98
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    • 2024
  • 본 논문에서는 공기방울이 있는 불투명한 얼음 구를 효율적으로 표현할 수 있는 기하학적 접근법 기반의 입자-격자 혼합 프레임워크를 소개한다. 격자를 통해 수온이 확산되고 입자를 통해 얼음 내부에 표현되는 공기방울을 표현한다. 노이즈한 용존공기장(Dissolved air field)이 생성되는 이전 기법의 문제를 해결하기 위해 본 논문에서는 레벨셋을 이용하여 알고리즘을 경량화한다. 즉, 활성화 입자(Active particle)의 개수와 초기 용존산소량(Dissolved oxygen)을 이용하여 열확산의 종료 조건을 효율적으로 제어한다. 또한 공기방울 근처에만 계산했던 이전 용존공기장 기법을 투명한 영역에도 확산하여 사실적인 얼음 구를 표현했고, 입자의 방향성을 정확하게 계산하기 위해 레벨셋 기반의 접근법을 소개한다. 결과적으로 본 논문에서 제시한 방법은 기존 기법에 비해 약 3배정도 빨랐으며 시각적으로 개선된 불투명 얼음 구의 가시화 결과를 보여주기 때문에 물리적인 가상 얼음 형태를 표현하는 분야에 활용될 수 있다.

디지털 농업기후도 해설 (Agroclimatic Maps Augmented by a GIS Technology)

  • 윤진일
    • 한국농림기상학회지
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    • 제12권1호
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    • pp.63-73
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    • 2010
  • A comprehensive mapping project for agroclimatic zoning in South Korea will end by April 2010, which has required 4 years, a billion won (ca. 0.9 million US dollars) and 22 experts from 7 institutions to complete it. The map database from this project may be categorized into primary, secondary and analytical products. The primary products are called "high definition" digital climate maps (HD-DCMs) and available through the state of the art techniques in geospatial climatology. For example, daily minimum temperature surfaces were prepared by combining the climatic normals (1971-2000 and 1981-2008) of synoptic observations with the simulated thermodynamic nature of cold air by using the raster GIS and microwave temperature profiling which can quantify effects of cold air drainage on local temperature. The spatial resolution of the gridded climate data is 30m for temperature and solar irradiance, and 270m for precipitation. The secondary products are climatic indices produced by statistical analysis of the primary products and includes extremes, sums, and probabilities of climatic events relevant to farming activities at a given grid cell. The analytical products were prepared by driving agronomic models with the HD-DCMs and dates of full bloom, the risk of freezing damage, and the fruit quality are among the examples. Because the spatial resolution of local climate information for agronomic practices exceeds the current weather service scale, HD-DCMs and the value-added products are expected to supplement the insufficient spatial resolution of official climatology. In this lecture, state of the art techniques embedded in the products, how to combine the techniques with the existing geospatial information, and agroclimatic zoning for major crops and fruits in South Korea will be provided.

판형 열교환기에서 유동 과냉도 및 냉각속도가 연속제빙에 미치는 영향 (Effect of supercooling and cooling rate on a continuous ice slurry formation using a plate heat exchanger)

  • 이동규;백종현;홍희기;강채동
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2006년도 하계학술발표대회 논문집
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    • pp.138-143
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    • 2006
  • The peculiarity of ice slurry, such as liquidity, high heat transfer rate and easy storage can also find to supercooled type dynamic ice storage system(DISS) which is one of the DISS. However, in order to accomplish continuous ice formation in the system without mechanical moving parts, supercooled aqueous solutionshould be formed stable through cooling heat exchanger and be dissoluted in storage tank. In previous research, the time of ice slurry increased as the pressure of the cooling heat exchanger(PHX) increased. In this study, a cooling experiment of an ethylene glycol 7mass% solution was performed with various inlet temperature of the PHX, which has constant brine inlet temperature of $-7^{\circ}C$. The temperature in the storage tank maintained to freezing point of the solution. At results, the time of ice slurry formation increased as the supercooling degree decreased and the cooling rate increased.

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과열방지장치가 설치된 복합열원 난방시스템에 관한 연구 (A Study on Hybrid Heating System with Anti-Superheating Devices)

  • 박윤철;고광수;한유리
    • 한국태양에너지학회 논문집
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    • 제27권2호
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    • pp.19-27
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    • 2007
  • The previous study was conducted to develop an air source multi heat pump system that could be operated with the solar collector and air source heat exchangers as heat source of the system. There is a winter-sowing problems in air source multi heat pump system when the outdoor temperature goes down under freezing point. The winter-sowing problem was solved by adapting R-22 refrigerant as working fluid in the previous study. However, when the system operated at high temperature, another problems are come out such as overheating of the solar collector outlet which lead to the superheat of the compressor inlet of the heat pump system. The condition could deteriorates a compressor in some case. In this study, we installed the anti-superheating devices on the previously developed system. As results of system performance test, COP of the system with anti-superheating technique is 2.4. It is a little improved COP compare to previous study's 2.23. In the results of multi heat source heating system, during operating solar collector, COP is relatively high between $200\;W/m^2$ and $400\;W/m^2$ solar intensity. It is recommended to extend the study on performance optimization with balancing the solar collect and capacity of compressor at higher solar irradiation conditions.

구동장치 및 열교환기 변경에 따른 냉매가열식 열펌프의 성능특성 (Performance of a Refrigerant Heating Type Heat Pump by Changing of Driving Devices and Heat Exchangers)

  • 박윤철;김상혁;김지영
    • 설비공학논문집
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    • 제20권1호
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    • pp.49-56
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    • 2008
  • When the outdoor air temperature decreased less than the freezing temperature, frost forms at the surface of heat exchangers and it makes the performance degradation of a heat pump system. In this study, a heat pump system has been developed which has a refrigerant heating device as an auxiliarly heating equipment. To reduce power consumptions of the system, a liquid pump, rather than a compressor, was used to drive refrigerant in the heat pump cycle. Ratio of refrigerant mass flow between a refrigerant heating heat exchanger(GHX) and a outdoor plate heat exchanger(PHX) was varied and the system performance was measured and analyzed. As results, when the refrigerant flow rate to the GHX was decreased, the system performance is decreased due to heat absorption capability restriction of the GHX and small variation of the power consumption in the compressor. The effect on the evaporating and condensing pressure by the distribution ratio of the refrigerant to the each heat exchanger is small compare to the effect by the frequency change in the compressor. When the compressor was replaced by the liquid pump, the capacity of the system decreased a little, however the power consumption decrease approximately 80% compare with the power used in the compressor.

수막재배 단동비닐하우스의 태양열 축열이용 효과분석 (Analysis of Solar Energy Storage Using Effectiveness on Single Span Plastic Greenhouse with Water Curtain System)

  • 이성현;유영선;문종필;윤남규;이수장;김경원
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 춘계학술대회 초록집
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    • pp.200.2-200.2
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    • 2010
  • This study was carried out in order to reduce the amount of underground water which is used in the water curtain system for retaining heat. To proceed to the research, two plastic green houses of water curtain system were installed. One was equipped of internal small tunnel for keeping warm air in the interior of the house. Then the internal small tunnel for keeping warm air was fitted with PVC duct of 50cm in diameter filled with subsurface water. Storing surplus solar energy in the water filled in PVC duct was the method used to this house. Another was installed with FCU in the middle of the house, and was fitted a circulation motor in water tank for heat storage which was operated from 10 a.m. to 4 p.m. in order to interchange heat with FCU. The latter was installed with four FCUs which has a capacity of 8000kcal per hour. Consequently about 5 degrees celsius could be maintained in the interior of the internal small tunnel for keeping warm air with the external temperature of more than minus 5 degrees celsius. It appeared that the alteration of an internal temperature of the house was flexible depending on the sunlight during daytime. It happened that to prevent the water from freezing, mixing antifreezing liquid in the flowing water of FCU or changing the operating method of FCU was a suitable measure. Also, in order to use the surplus solar thermal energy on plastic green house of water curtain system efficiently, storing the surplus heat during daytime simultaneously finding a method of using water curtain systematic underground water happened to be important. As a result of this research, when the house's interior temperature is below zero the operation of FCU appeared to be impossible. Therefore when supposed that the amount of water used in the house is 150~200ton for stable operation of FCU, using the system mentioned in the above research happened to be appropriate of reducing the amount of subsurface water from 80% to 100% when maintaining the interior of internal small tunnel's temperature for keeping warm air of 5 degrees celsius at the extreme temperature of minus 5 degrees celsius.

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한중콘크리트에 있어서 폐부동액을 이용한 내한제의 효율성에 관한 기초적 연구 (A Fundamental Study on the Effectiveness of Anti-freeze Agent Using Waste Coolant in Cold Weather Concreting)

  • 김경민;원철;김기철;오선교;한천구
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 봄 학술발표회 논문집
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    • pp.231-236
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    • 2001
  • In this paper, tests are carried out in order to investigate the validities of anti-freeze agent, which is developed using waste coolant and existing anti-freeze agent through previous study, under various W/C and contents. According to test results, adequate dosage of developed anti-freeze agent shows positive performance in slump, air content and chloride contents in the mixture of 40% and 50% of W/C, accelerates setting time and drops the freezing temperature of concrete. Meanwhile, in the region of 30% of W/C, followings can be indicated that increasing the contents of anti-freeze agent leads to reduce fluidity, rapid setting and excessive chloride contents. Improved strength gain is shown when anti-freeze agent is used with in 8%.

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