• Title/Summary/Keyword: Greenhouse heating system

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온실의 냉난방시스템 설계용 외부기상조건 분석 (Analysis of the Outdoor Design Conditions for Greenhouse Heating and Cooling Systems in Korea)

  • 남상운;신현호
    • 생물환경조절학회지
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    • 제25권4호
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    • pp.308-319
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    • 2016
  • 온실의 냉난방시스템 설계 기준에 적용하기 위한 외부기상조건을 설정하기 위하여 난방 설계용 외기온, 난방 degree-hour, 냉방 설계용 건구온도, 습구온도, 일사량을 분석하여 제시하였다. 우리나라 전 지역을 대상으로 현재 기상청에서 제공하는 기후평년값 기준인 1981~2010년까지 30년간의 매 시각 기상자료를 분석에 사용하였다. 표준기상데이터의 이용이 제한적이기 때문에 30년간의 전체 기상자료를 이용하여 설계용 기상조건을 구하고, 전체 자료기간의 평균값을 설계기준으로 제시하였다. TAC 방식으로 위험률 1, 2.5, 5%에 대한 설계용 기상자료를 분석하고, 설계기준에서 추천하고 있는 난방용은 위험률 1%, 냉방용은 위험률 2.5%의 기상조건 분포도를 제시하였다. 지역별, 위험률별 및 설정온도별로 최대난방부하, 기간난방부하 및 최대냉방부하의 변화를 고찰하였다. 제시된 각종 설계용 기상조건은 온실의 냉난방시스템 설계에 직접 이용할 수 있을 뿐만 아니라 냉난방 설비 보강이나 에너지 절감대책의 수립에 활용이 가능할 것으로 판단된다. 한편 기후변화로 인하여 최근 여름철 폭염이나 겨울철 이상고온 현상이 자주 발생하고 있으므로 주기적인 설계용 기상자료의 분석이 필요하고, 최소한 10년 주기로 설계기준을 개정할 필요가 있는 것으로 생각된다. 본 연구에서는 현재 기후평년값 기준인 1981~2010년까지의 기상자료를 분석하였으나 이 기준이 1991~2020년으로 바뀌는 2021년에는 즉시 이 기간의 기상자료를 분석하여 새로운 설계기준으로 제공해야 할 것으로 판단된다.

PLC와 컴퓨터를 이용한 식물생산공장의 환경제어 (Environmental Control of Plant Production Factory Using Programmable Logic Controller and Computer)

  • 김동억;장유섭;김종구;김현환;이동현;장진택
    • 생물환경조절학회지
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    • 제15권1호
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    • pp.1-7
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    • 2006
  • This study was conducted to develop a system and an control algorithm for control the environment of a plant factory. The greenhouse control system for environmental control was largely composed of a computer and a PLC. The screen of control program was composed of a greenhouse figure which was included machinery and equipments for greenhouse, the graph of environmental factors of inside greenhouse and the image of greenhouse. In order to reduce temperature change, the operation time of ventilation window was changed by 3 stage according to difference between a target and present temperature. When is heating, a temperature variation was shown to be $16.7{\pm}0.8^{\circ}C$. When is cooling, a temperature variation was shown to be $23.1{\pm}0.6^{\circ}C$. When is humidifing, a humidity variation was shown to be $39.3{\pm}1.6^{\circ}C$ %RH. An environmental control system and a control algorithm were proved that it was shown a good performance in a control accuracy. So a computer control system should be adapted to a control system of a greenhouse and a plant factory.

태양열 시설원예 난방시스템 장기실증 성능분석 연구 (Study on the performance analysis of long-term field test for protected horticulture heating system using solar thermal energy)

  • 이상남;강용혁;유창균;김진수
    • 신재생에너지
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    • 제1권2호
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    • pp.53-59
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    • 2005
  • Objective of the research is to demonstrate solar thermal space and ground heating system which is integrated to a green-house culture facility for reducing healing cost, Increasing the value of product by environment control, and developing advanced culture technology by deploying solar thermal system. Field test for the demonstration was carried out in horticulture complex In Jeju Island. Medium scale solar hot water system was installed in a ground heating culture facility. Reliability and economic aspect of the system which was operated complementary with thermal storage and solar hot water generation were analyzed by investigating collector efficiency, operation performance, and control features. Short term day test on element performance and Long term test of the whole system were carried out. Optimum operating condition and its characteristics were closely Investigated by changing the control condition based on the temperature difference which Is the most important operating parameter For establishing more reliable and optimal design data regarding system scale and operation condition, continuous operation and monitoring on the system need to be further carried out. However, It is expected that, in high-insolation areas where large-scale ground storage is adaptable, solar system demonstrated in the research could be economically competitive and promisingly disseminate over various application areas.

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가정용 열병합 시스템의 국내 도입에 따른 온실가스 저감효과 예측 (Impact of Residential CHP Systems on Greenhouse Gas Emissions in Korea)

  • 강병하;윤창호;안준
    • 설비공학논문집
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    • 제25권10호
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    • pp.555-561
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    • 2013
  • The effects of applying the micro CHP system to the domestic sector in Korea were investigated using annual cooling and heating demand data. Four prime movers, micro gas turbine, PEMFC, gas engine and Stirling engine, were compared for three operational modes. Two way buy-back was assumed for both electricity and heat. The Stirling engine gave the lowest $CO_2$ emission per energy for 300kWh monthly electricity production. However, PEMFC became more effective when considering PURPA criteria. PEMFC generated the least greenhouse gas with higher electrical efficiency for cooling. The Stirling engine, however, became competitive for heating with higher total efficiency.

태양열 시설원예 난방시스템의 장기성능 특성 분석 연구 (Study on long-term Performance characteristics of various solar thermal system for heating protected horticulture system)

  • 이상남;강용혁
    • 한국태양에너지학회 논문집
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    • 제26권3호
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    • pp.1-8
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    • 2006
  • The objective of this research is to study on the analysis of long-term performance characteristics of various solar thermal system for heating protected horticulture system for reducing heating cost, increasing the value of product by environment control, and developing advanced culture technology by deploying solar thermal system. Long term field test for the demonstration was carried out in horticulture complex in Jeju Island. Reliability and economic aspect of the system which was operated complementary with thermal storage and solar hot water generation were analyzed by investigating collector efficiency, operation performance, and control features. Optimum operating condition and its characteristics were closely investigated by changing the control condition based on the temperature difference which is the most important operating parameter. However, it is expected that, in high-insolation areas where large-scale ground storage is adaptable, solar system demonstrated in the research could be economically competitive and promisingly disseminate over various application areas.

관부 난방시스템과 온수 양액 공급이 온실 에너지 사용량, 딸기 생육 및 생산성에 미치는 영향 분석 (Analysis on the Effect of the Crown Heating System and Warm Nutrient Supply on Energy Usage in Greenhouse, Strawberry Growth and Production)

  • 이태석;김진구;박석호;이재한;문종필
    • 생물환경조절학회지
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    • 제30권4호
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    • pp.271-277
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    • 2021
  • 본 연구에서는 '설향' 딸기의 관부를 부분 난방하고 양액을 온수로 공급하면서 관행 재배 방식에 비해 온실 공간 온도를 낮게 관리하는 딸기 부분 난방 시험을 수행하였다. 정식 후 11월까지는 특별한 처리가 없어 대조구, 시험구 모두 온실 내 환경이 유사하게 관리되었으며 관부 난방 및 온수 양액을 공급하기 시작한 12월부터는 야간의 온실 온도, 관부 온도 및 베드 온도가 차이를 보였다. 12월의 온실 야간 평균 온습도는 대조구 7.1℃, 87.2%, 시험구 5.7℃, 88.7%로 시험구의 온도가 낮았으나 관부 난방을 수행함으로써 시험구 온실의 관부 및 베드의 온도를 9.3℃, 12.7℃로 유지하였고, 대조구 온실의 관부 및 베드 온도 7.9℃, 10.8℃보다 높게 관리할 수 있었다. 시험기간 내에서 시험구 온실의 딸기 관부 및 베드 온도는 대조구에 비해 모두 약 2.0℃ 가량 높게 유지되는 것으로 나타났다. 주간에는 온수 양액을 공급함으로써 지하수를 이용했을 때보다 평균 8.7℃ 높은 온도 양액을 공급할 수 있었고 이로 인해 베드 온도도 약 5.0℃ 가량 높게 나타났다. 시험구에서는 시험기간 동안 온실 난방, 관부 난방 및 온수 양액 공급에 총 9,475.7×103 kcal의 에너지를 소비하였고 대조구에서는 온실 공간 난방에 총 16,847×103 kcal의 에너지를 소비하여 시험구에서 대조구 대비 약 43.8%의 에너지 절감 효과를 확인할 수 있었다. 시험구에서 딸기 관부의 온도를 높게 관리함으로써 작물의 생육을 촉진시킬 수 있었고 그로 인해 정식 후 초세가 대조구에 비해 좋지 않았던 시험구의 딸기가 25주 후에는 대조구와 생육적인 면에서 큰 차이가 없는 것으로 나타났다. 딸기의 수확량은 초세가 좋았던 대조구에서 1화방의 수확량이 시험구에 비해 많았으나 2화방, 3화방에서는 관부의 온도를 높게 관리한 시험구의 수확량이 더많았다. 3월 말까지의 주당 수확량은 시험구 412.7g/plant, 대조구 393.3g/plant로 유의미한 차이는 없었으나 시험구가 대조구에 비해 4.9% 많이 나온 것으로 보아 딸기의 온도 민감부인 관부의 온도를 높게 관리하는 것이 딸기 생육과 생산성에 영향을 미치는 것으로 판단된다.

농림부산물 원료 펠릿 및 농업용 펠릿 난방기 (Pellet Made of Agricultural By-product and Agricultural Pellet Boiler System)

  • 강연구;유영선;강금춘;김종구;김영화;장재경;이형모
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 춘계학술대회 초록집
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    • pp.252.2-252.2
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    • 2010
  • Biomass is considered to be a major potential fuel and renewable resource for the future. In fact, there is high potential to produce the large amount of energy from biomass around the world. In this study, to obtain basic data for practical application of wood pellet and wood pellet boiler system as heating system in agriculture, agricultural biomass resources were surveyed, pellet was made of agricultural by-product such as stem of rape, oat and rice, ricehusk and sawdust and wood pellet boiler system with capacity of 116 kW was manufactured and installed in greenhouse of $38.5m{\times}32m$. High heating value, bulk density and ash content of pellet made of agricultural by-product and efficiency and heating performance of this system was estimated. Rice straw was the largest agricultural biomass in 2005 and the total amount of rice straw converted into energy of $131.71{\times}10^{11}$ kJ. And in 2005, total amount of forest' by-product converted into energy of $29,277.05{\times}10^{11}$ kJ. High heating values of pellets made of agricultural by-products of stem and seed of rape, stem of oat, rice straw and rice husk were 16,034, 16,026, 16,089, 15,650, 15,044 kJ/kg respectively. High heating values of pellets made of agricultural by-products were 83.6% compared to that of wood pellet. Average bulk density of pellets made of agricultural by-products of stem and seed of rape, stem of oat, rice straw and rice husk was 1,400 $kg/m^3$. Ash contents of the pellets were 6.6, 7.0, 6.2, 5.5, 33% respectively. Ash content of rice husk pellet was the largest compared to other kind of pellets. To increase efficiency of agricultural pellet boiler, the boiler adopted secondary heat exchanger. The agricultural pellet boiler designed and manufactured in this study had high efficiency of 84.2% compared to the conventional agricultural pellet boiler, when water flow rate, exhaust gas temperature and average combustion furnace temperature were 39L/min, $180^{\circ}C$, $680^{\circ}C$ respectively. And pellet supplying and pausing time were 13, 43 seconds respectively. In March of 2010, prices of wood pellet, agricultural tax free diesel, diesel, kerosene were 350 won/kg, 811 won/L, 1,422 won/L, 976 Won/L respectively. Also in terms of energy, prices per same heating value were 77.8, 90.1, 158, 108.4 Won/Mcal. Energy saving rate of wood pellet was 16, 50, 39% compared to agricultural tax free diesel, diesel and kerosene respectively.

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지역난방용 콤팩트 유닛 및 제어기 개발 (Compact module and control system for district heating system)

  • 이영수;백영진;정대헌;김진;엄철준
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2009년도 하계학술발표대회 논문집
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    • pp.1343-1347
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    • 2009
  • In order to comply with the global energy crisis and environment problem, it is necessary to research and develop the energy utilization technology with the reduction of the primary energy usage. Although the increasing rate of energy consumption started to attenuate, the entire consumption of energy as well as $CO_2$ emission rate tends to increase steadily along with an economic growth in Korea. The energy demand in Korea increases by annual 3.7% during the period from 2000 to 2006. And it is expected that we should take a charge of the greenhouse gas reduction obligation by the Climatic Change Convention(Kyoto Protocol) during the 2nd pledge period($2013{\sim}2017$). According to the IEA report in 2005, the emission amount of carbon dioxide is the 10th place in the world, and the increasing rate is 4.7% annually. Considering the economic scale of Korea, the degradation of energy usage is inevitable when the greenhouse gas reduction obligation come into effect. Therefore, effective energy usage is a very important issue to minimize baneful influence on industrial and economic activities.

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온실난방을 위한 태양열 지중 계간축열시스템의 최적 운전 방안 (Optimal Operation Methods of the Seasonal Solar Borehole Thermal Energy Storage System for Heating of a Greenhouse)

  • 김원욱;김용기
    • 한국산학기술학회논문지
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    • 제20권1호
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    • pp.28-34
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    • 2019
  • 태양열은 지구에서 가장 풍부한 재생에너지 중의 하나이지만, 일반적으로 태양열이 풍부한 계절과 열부하가 큰 계절이 서로 달라 사용에 제한이 있다. 유럽과 캐나다에서는 하절기의 풍부한 태양열을 저장하고 그 열을 동절기 난방부하에 활용하여 에너지를 절감하는 태양열 계간축열시스템을 활용하고 있다. 최근 물탱크방식 및 지중축열방식의 태양열 계간축열시스템이 국내에 소개되어 실증연구가 활발히 진행 중이다. 본 연구에서는 연간 2,164 GJ의 난방부하를 가진 경기도 화성시의 유리온실 1개동에 $2,000m^2$의 평판형 태양열 집열기, $20,000m^2$의 지중 계간축열조를 사용하고 단기축열조를 사용하지 않는 보어홀 방식의 태양열 지중 계간축열시스템을 모델링하여, 운전제어조건에 따른 태양열 이용률을 평가하였다. 시간에 따른 태양열 지중 계간축열시스템의 동적성능예측을 위하여 TRNSYS 18 프로그램을 이용하여 시뮬레이션 하였다. 결과적으로 본 연구에서 제안한 태양열 지중 계간축열시스템은 태양열 집열과 지중 계간축열조 방열에 각각 차온 제어 하였을 때, 5년간 평균 약 60%의 태양열 이용률을 나타내었다. 본 연구에서 제안된 시스템은 태양열 지중 계간축열시스템의 구성과 제어방법을 단순화하고 성능을 확보하였다.

폐열회수시설이 설비된 생활폐기물 소각자원화시설 온실가스 배출량 산정 시 오차분석 (2009~2013) (Study on the Measurement of GHG Emissions and Error Analysis in Form the MSW Incineration Plant Equipment with the Recovery Heat System (2009~2013))

  • 최원근;서란숙;박승철
    • 한국환경과학회지
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    • 제25권2호
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    • pp.239-246
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    • 2016
  • This study aims to analyze region-specific trends in changing greenhouse gas emissions in incineration plants of local government where waste heat generated during incineration are reused for the recent five years (2009 to 2013). The greenhouse gas generated from the incineration plants is largely $CO_2$ with a small amount of $CH_4$ and $N_2O$. Most of the incineration plants operated by local government produce steam with waste heat generated from incineration to produce electricity or reuse it for hot water/heating and resident convenience. And steam in some industrial complexes is supplied to companies who require it for obtaining resources for local government or incineration plants. All incineration plants, research targets of this study, are using LNG or diesel fuel as auxiliary fuel for incinerating wastes and some of the facilities are using LFG(Landfill Gas). The calculation of greenhouse gas generated during waste incineration was according to the Local Government's Greenhouse Emissions Calculation Guideline. As a result of calculation, the total amount of greenhouse gas released from all incineration plants for five years was about $3,174,000tCO_2eq$. To look at it by year, the biggest amount was about $877,000tCO_2eq$ in 2013. To look at it by region, Gyeonggido showed the biggest amount (about $163,000tCO_2eq$ annually) and the greenhouse gas emissions per capita was the highest in Ulsan Metropolitan City(about $154kCO_2eq$ annually). As a result of greenhouse gas emissions calculation, some incineration plants showed more emissions by heat recovery than by incineration, which rather reduced the total amount of greenhouse gas emissions. For more accurate calculation of greenhouse gas emissions in the future, input data management system needs to be improved.