• 제목/요약/키워드: refrigeration warehouse

검색결과 18건 처리시간 0.025초

냉동냉장창고에 대한 에너지 절약에 대한 연구 (A Study on Energy saving for refrigeration warehouse)

  • 정춘병;김대균;김익환;이상집;함년근;전기영;이훈구;한경희
    • 한국조명전기설비학회:학술대회논문집
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    • 한국조명전기설비학회 2005년도 춘계학술대회논문집
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    • pp.270-274
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    • 2005
  • The human beings have increased concern about Energy saving and alternative energy. The power demand has increased the growth of industry and the improvement of life. We have to explore alternate energy sources and utilize effectively domestic resources. The lighting equipments developed Energy saving by using an electric ballast. The load installation should be promoted to rational power management, according to the network, inteligent, and high-function. Therefore, this paper has studied the method of energy saving and consulting.

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에너지 절감 기법을 적용한 냉동 냉장 창고 운영에 관한 연구 (A Study on Refrigeration warehouse operation for Energy saving technique)

  • 김대균;권중동;함년근;이상집;김익환;이승환;이훈구;한경희
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2005년도 전력전자학술대회 논문집
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    • pp.182-184
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    • 2005
  • The human beings have Increased concern about Energy saving and alternative energy. The power demand has increased the growth of industry and the improvement of life We have to explore alternate energy sources and utilize effectively domestic resources. The lighting equipments developed Energy saving by using an electric ballast. The load installation should be promoted to rational power management, according to the network, intelligent, and high-function. Therefore, this paper has studied the method of energy saving and consulting.

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난방공간에서 에어커튼의 토출각도 변화에 따른 성능 변화 (Performance Variation of the Air Curtain for Various Discharge Angles in Feating Space)

  • 성순경
    • 설비공학논문집
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    • 제22권2호
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    • pp.57-63
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    • 2010
  • Air curtains are widely used for gates of shopping mall, warehouse, cold stores and refrigerated display cabinets. The purpose of the air curtain is to reduce the infiltration of outdoor air and heat loss from the air conditioning space to ambient air. The discharge angle of air curtain is very important as the sealing efficiency is affected by it. This paper presents a performance of single jet air curtain in heating space when the discharge angle of nozzle changes. A numerical simulation is used to study the influence of various parameters on the efficiency of the downward-blowing air curtain device which is installed inside of the wall above the door. The performance of the air curtain is evaluated by sealing efficiency which provides the assessment of the energy savings. A condition of discharge angle that has the highest sealing efficiency is proposed.

냉동 물류 창고 내 도크시스템을 통한 에너지 손실량 분석 (Analysis of Amount of Energy Loss for a Dock System in the Cold Distribution Center)

  • 양성준;김영주;허준;김태성
    • 설비공학논문집
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    • 제29권8호
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    • pp.419-428
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    • 2017
  • In this study, energy loss due to ventilation load in the dock system was analyzed through simulation. Also, flow generated in the dock system of the warehouse was measured using manufactured measuring devices. Numerical simulation was conducted by simulating the most common picking tasks by examining the actual working environment. Incompressible and unsteady turbulent flows were assumed, and the turbulence model was the k-e standard model. Proper grid was selected through grid dependency test. Measurement was conducted using Honeywell and Vaisala sensors, and flow and temperature inside the warehouse were measured and compared with simulation results to validate simulation. When comparing amount of loss occurring in two hours and amount of loss occurring in 15 minutes, docking time of the former was eight times longer but energy loss was 3.8 times lower. Ventilation load occurring during the initial period after opening docking system accounted for a large proportion of total ventilation load. Also, comparing the load when the dock was closed and the load when the truck was parked, ventilation load was significantly higher than load due to heat conduction from the wall. Therefore, in improving the docking system, it is effective to reduce the gap by improving compatibility of the docking system and truck, rather than wall material.

외부바람의 영향을 고려한 난방공간에서의 하향토출 에어커튼의 성능 (Performance of Downward-blowing Air Curtain m Heating Space Considering External Wind Condition)

  • 성순경
    • 설비공학논문집
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    • 제21권7호
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    • pp.417-423
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    • 2009
  • Air curtains are widely used for gates of shopping mall, warehouse, cold stores and refrigerated display cabinets. The purpose of the air curtain is to reduce the infiltration of outdoor air and heat loss from the air conditioning space to ambient air. Design data for the air curtain given by previous researchers do not mention the influence of wind speed. Thus, this paper presents a performance of single jet air curtain in heating space when the wind blows toward the opening space of the building. A numerical simulation is used to study the influence of various parameters on the efficiency of the downward-blowing air curtain device which is installed inside of the wall above the door. The performance of the air curtain is evaluated by sealing efficiency which provides the assessment of the energy savings. A new safety factor is also proposed for determination of air curtain jet velocity under the various wind conditions.

LNG 냉열을 이용한 공기액화분리시스템의 시뮬레이션 및 공정 해석 (Process Analysis and Simulation for System of Air Liquefaction Separation Using LNG Cold Energy)

  • 한단비;백영순
    • 한국수소및신에너지학회논문집
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    • 제30권3호
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    • pp.276-281
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    • 2019
  • The process of separating oxygen and nitrogen from the air is mainly performed by electric liquefaction, which consumes a lot of electricity, resulting in higher operating costs. On the other hand, when used for cold energy of LNG, electric power can be reduced compared to the electric Linde cycle. Currently, LNG cold energy is used in the cold refrigeration warehouse, separation of air-liquefaction, and LNG cold energy generation in Japan. In this study, the system using LNG cold energy and the Linde cycle process system were simulated by PRO/II simulators, respectively, to cool the elevated air temperature from the compressor to about $-183^{\circ}C$ in the air liquefaction separation process. The required amount of electricity was compared with the latent heat utilization fraction of LNG, the LNG supply pressure, and the LNG cold energy usage. At the air flow rate of $17,600m^3/h$, the power source unit of the Linde cycle system was $0.77kWh/m^3$, compared with $0.3kWh/m^3$.

수소액화공정에서 LNG 냉열 적용에 관한 시뮬레이션 연구 (Simulation Study on the Application of LNG Cold Energy for Hydrogen Liquefaction Process)

  • 한단비;변현승;백영순
    • 한국수소및신에너지학회논문집
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    • 제31권1호
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    • pp.33-40
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    • 2020
  • As hydrogen utilization becomes more active recently, a large amount of hydrogen should be supplied safely. Among the three supply methods, liquefied hydrogen, which is an optimal method of storage and transportation convenience and high safety, has a low temperature of -253℃, which is complicated by the liquefaction process and consumes a lot of electricity, resulting in high operating costs. In order to reduce the electrical energy required for liquefaction and to raise the efficiency, hydrogen is cooled by using a mixed refrigerant in a precooling step. The electricity required for the precooling process of the mixed refrigerant can be reduced by using the cold energy of LNG. Actually, LNG cold energy is used in refrigeration warehouse and air liquefaction separation process, and a lot of power reduction is achieved. The purpose of this study is to replace the electric power by using LNG cold energy instead of the electric air-cooler to lower the temperature of the hydrogen and refrigerant that are increased due to the compression in the hydrogen liquefaction process. The required energy was obtained by simulating mixed refrigerant (MR) hydrogen liquefaction system with LNG cold heat and electric system. In addition, the power replacement rate of the electric process were obtained with the pressure, the temperature of LNG, the rate of latent heat utilization, and the hydrogen liquefaction capacity, Therefore, optimization of the hydrogen liquefaction system using LNG cold energy was carried out.

CIPC 처리한 조·중생종 감자의 반지하 저장고를 이용한 하계 실온저장 중 맹아 억제 효과 비교 (Sprouting Inhibition after CIPC Spraying on Early and Mid-season Potato Varieties during Storage in Semi-underground Warehouse at Room Temperature in Summer)

  • 한규석;김병섭;홍세진;이영훈
    • 생물환경조절학회지
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    • 제32권2호
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    • pp.172-180
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    • 2023
  • 감자의 저장 한계기간을 결정하는 가장 주요한 요인은 병과 특히 맹아의 발생이다. 본 연구는 조·중생종 봄감자의 하계 저장기간 동안 고랭지 감자 재배단지에서 이용되고 있는 냉장 시스템이 없는 반지하 저장고에서 '대서', '수미', 그리고 '추백' 품종의 맹아 출현 시기를 확인하고, CIPC 처리 시 품종별 감자 괴경의 맹아억제 효과를 구명하고자 수행되었다. 본 연구는 농약 허용물질목록관리제도(PLS, positive list system)에서 규정한 처리농도보다 낮은 농도인 10mg와 20mg, 그리고 규정에 준하는 농도인 30mg의 CIPC가 감자 괴경 1kg에 도포되도록 처리 시 맹아 억제 효과를 보이는지 구명하였다. 본 실험에 이용된 토굴형 저장고는 내부 온도가 외기 온도보다 5℃ 이상 저하되었고, 특히 주야간 온도를 포함하여 실험기간 동안 최저와 최고 온도의 차이가 5℃ 정도로 외기온도 차이의 1/2 수준으로 줄였다. 품종별 감자의 맹아는 대조구에서 극조생종인 '추백'이 가장 빨라 저장 6주차에 50% 이상 맹아가 출현하였고 신장도 진행되었으며, '수미'는 저장 6주차에, '대서'는 저장 8주차에 각각 맹아가 출현하기 시작하였다. CIPC 처리 시 '대서'와 '수미'는 모든 처리구에서 맹아 출현이 억제되었다. '추백'은 7주차에 모든 처리구에서 맹아는 관찰되었으나 저장 8주차까지 괴경에서 맹아의 신장은 완전히 억제되었다. 휴면이 빨리 타파되는 극조생종인 '추백'을 제외하면 '대서'와 '수미'는 CIPC 처리 시 10mg·kg-1의 저농도 처리로도 맹아억제 효과를 보이는 것으로 판단된다. 저장 중 지속적으로 감모가 발생하였으나 저장 8주차까지 0.7-1.6%의 낮은 감모율을 보였으며, 품종 또는 CIPC 처리에 따른 변화는 일정한 경향이 없었다. 품종별 및 CIPC 처리구별로 저장 중 육안으로 관찰되는 병리장해는 대부분 마른썩음병(건부병)이었으나 발병 개체는 많지 않았다. 감모율과 병 발생이 적었던 이유는 본 실험에 이용된 시료가 18℃와 RH 90%에서 10일간 큐어링 처리한 후 육안 선별한 건전한 괴경이었으며, 저장고에 냉장시스템이 없어 대류현상이 발생하지 않아 무게감소와 병원균의 확산이 억제되었기 때문으로 사료된다.