• 제목/요약/키워드: Amount of Circulation

검색결과 276건 처리시간 0.028초

온풍난방기의 배기열을 이용한 지중 난방용 온수공급시스템의 열회수특성 (Heat Recovery Characteristics of the Hot Water Supply System with Exhaust Heat Recovery Unit Attached to the Hot Air Heater for Plant Bed Heating in the Greenhouse)

  • 김영중;유영선;장진택;강금춘;이건중;신정웅
    • Journal of Biosystems Engineering
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    • 제25권3호
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    • pp.221-226
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    • 2000
  • Hot air heater with light oil burner is the most common heater for greenhouse heating in the winter season in Korea. However, since the thermal efficiency of the heater is about 80∼85%, considerable unused heat amount in the form of exhaust gas heat discharges to atmosphere. In order to capture this exhaust heat a heat recovery system for plant bed heating in the greenhouse was built and tested in the hot air heating system of greenhouse. The heat recovery system is made for plant bed or soil heating in the greenhouse. The system consisted of a heat exchanger made of copper pipes, ${\Phi}12.7{\times}0.7t$ located in the rectangular column of $330{\times}330{\times}900mm$, a water circulation pump, circulation plastic pipe and a water tank. The total heat exchanger area is 1.5$m^2$, calculated considering the heat exchange amount between flue gas and water circulated in the copper pipes. The system was attached to the exhaust gas path. The heat recovery system was designed as to even recapture the latent heat of flue gas when exposing to low temperature water in the heat exchanger. According to the performance test it could recover 45,200 to 51,000kJ/hr depending on the water circulation rates of 330 to $690\ell$/hr from the waste heat discharged. The exhaust gas temperature left the heat exchanger dropped to $100^{\circ}C$ from $270^{\circ}C$ by the heat exchange between the water and the flue gas, while water gained the difference and temperature increased to $38^{\circ}C$ from $21^{\circ}C$ at the water flow rate of $690\ell$/hr. By the feasibility test conducted in the greenhouse, the system did not encounter any difficulty in operations. And, the system could recover 220,235kJ of exhaust gas heat in a day, which is equivalent of 34% of the fuel consumption by the water boiler for plant bed heating of 0.2ha in the greenhouse.

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하수처리수의 농업용수 재이용을 위한 관개수량 산정방법에 관한 연구 (A Study on the Estimation of Irrigation Water for Sewage Treated Water Reuse for Agriculture)

  • 조현경;김상민
    • 한국농공학회논문집
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    • 제61권2호
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    • pp.97-104
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    • 2019
  • The purpose of this study was to establish the estimation method of irrigation water amount for sewage treated water reuse for agricultural purpose. To calculate the irrigation water amount, we adopted Penman-Monteith for potential evapotranspiration estimation and applied crop coefficient and irrigation efficiency factor. We developed the irrigation water amount calculation program using C language in Xcode environment. The target district for calculation is having 259 ha of agricultural land located near the Jinyeong Clear Water Circulation Center in Hanrim-myeon, Gimhae city. The meteorological data of the study area were obtained from Changwon weather station from 1986 to 2017. Calculated average and maximum of annual mean potential evapotranspiration were 2.72 mm/day and 6.22 mm/day, respectively. We used K-S (Kolmogorov-Smirnov) for goodness-of-fit test to find optimal probability distribution of annual mean and maximum evapotranspiration. As a result, the normal distribution was selected for the appropriate distribution. The annual mean and maximum potential evapotranspiration for 10-year return period by applying normal distribution were 2.88 mm/day and 6.76 mm/day, respectively. Assuming that the irrigation efficiency is 80%, the irrigation water requirement was calculated as $36.05m^3/day/ha$ and $84.45m^3/day/ha$, respectively, when annual mean and maximum potential evapotranspiration were applied. The actual irrigation water amount can be calculated by applying the crop coefficient and cropping days for the study area based on the developed irrigation water amount estimation program in this study.

강우 유형에 따른 저영향개발 기법별 물수지 분석 (An Analysis of the water balance of Low Impact Development Techniques According to the Rainfall Types)

  • 유소현;이동근;김효민;조영철
    • 환경영향평가
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    • 제24권2호
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    • pp.163-174
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    • 2015
  • 도시화로 인하여 자연적인 물순환이 파괴되었고 이는 도시 홍수 등의 문제를 야기하였다. 이를 해결하기 위해, 개발 이전의 상태로 물순환을 회복하는 것을 목표로 하는 저영향개발(Low Impact Development, LID) 기법이 대두되었다. 기존의 LID관련 연구는 주로 유출 저감 효과에 집중되어 있었으며 강우 유형에 따른 LID 기법별 효과에 관한 연구는 부족한 실정이다. 본 연구는 수문 모의를 통하여 LID의 물수지 개선 효과를 강우 및 공간 유형별로 정량적으로 평가하는 것을 목표로 하였다. 경기도 하남의 택지개발지구의 한 블록을 연구 대상지로 하여, 개별 LID시설의 모의가 가능한 STORM모형을 사용하였다. 강우 유형은 강우 강도에 따라서 두 가지로 구분하였으며 모의한 LID시설은 옥상녹화, 투수성 포장, 식생수로에 한하였다. 연구 결과 LID의 물수지 개선은 극한 강우 사상보다 낮은 강우강도의 강우에 더 효과적이며 기법별로는 낮은 강우강도일 때에는 투수포장, 높은 강우강도일 때에는 생태수로가 가장 낮은 유출률과 높은 침투율을 나타냈다. 본 연구 결과는 향후 물순환을 고려한 공간 계획 시 참고자료로 활용될 수 있을 것이다.

코발트와 팔라듐 폐금속자원의 흐름분석을 통한 자원순환 활성화 방안 (Resource Circulation Plan using Material Flow Analysis of Waste Metals of Cobalt and Palladium)

  • 이희선;이정민;이소라
    • 자원리싸이클링
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    • 제27권1호
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    • pp.14-21
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    • 2018
  • 희유금속이 포함된 제품의 소비 급증으로 이를 재활용을 통해 자원화하는 것이 매우 중요한 이슈로 떠오르고 있다. 본 연구에서는 폐금속자원 중 코발트와 팔라듐의 폐자원흐름분석을 통해 자원순환 활성화 방안을 각 단계별로 모색하였다. 자원순환 활성화를 위해서 배출/수입단계에서는 대상금속이 포함된 폐기물을 자원으로 분류하는 것이 필요하며, 해당 폐금속자원에 대해 할당관세를 적용할 것을 제안하였다. 수거/폐기단계의 가장 큰 문제는 스크랩 원료 확보의 불안전성으로, 이를 해결하기 위해 현재의 입찰 시스템 개선과 같은 수급안정화 방안의 모색이 필요하다. 전처리 단계에서는 기술 개발 지원, 물질재활용 효율 향상 방안 등의 기술적 부분과 친환경 설계 의무 강화, 클로즈드 리사이클링에 대한 인센티브 부여, 재활용 방법과 기준의 강화 등 제도적 개선이 추진되어야 할 것이다. 자원회수 단계에서는 대기업과 중소기업의 경쟁력 확보를 위해 대 중소기업 상생방안이 마련되어야 할 것이다. 마지막으로 제품생산/수출단계에서는 폐금속자원의 국외 반출량 억제를 위해 코발트와 팔라듐이 포함된 폐자원 수출에 대한 관세를 부과하여야 할 것이다.

Utilization of the Outflowing Groundwater Resources in an Underpass Structure

  • Jin, Kyu-Nam;Park, Jae-Hyeon;Lee, Jung-Min;Lee, Sang-Ho
    • Environmental Engineering Research
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    • 제18권3호
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    • pp.117-121
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    • 2013
  • For underpasses in Yeongjong Sky City business district, the guided drainage system, as a buoyancy prevention system has been designed, and is under construction. This paper investigates the safety of the guided drainage system for underpass structures being constructed in Yeongjong Sky City business district. This paper also calculates the amount of outflowing groundwater generated by the guided drainage system, and proposes alternative usages of the water. In order to investigate safety and field applicability of the guided drainage system for underpasses, characteristics of the surface flow for the area of interest have been analyzed, and the flow change of groundwater following the underpass structure construction has been evaluated using the 3-dimensional groundwater program MODFLOW. The influence of ground water on safety of the underpass structures has been calculated by FLAC2D analysis. For alternative usages for the outflowing groundwater generated by the guided drainage system, utilization methods of the outflowing groundwater in national and international resources have been researched. The amount of an outflowing groundwater to be generated in the area of interest has been analyzed, and efficient potential usages of this groundwater have been researched. When guided drainage technique is applied, the change in flow of groundwater must be evaluated and considered as safety factor relating to the buoyancy of the structure. As a result, safety factor demonstrated more than 1.2, meaning that the underpass structure is safe. The amount of subsoil drain generated by the guided drainage system was also analyzed. The quality and amount of water satisfied the standards and volume requirements, so as to make it applicable for a number of uses, such as X, Y, and Z, and should prove to be a valuable resource as the circumstances of the neighboring area change over time. These resources can be used as basic data for future urban water circulation studies, as well as generating research of alternative water usages.

중간기 열원수 온도에 따른 만액식 해수냉각시스템의 성능 특성 (Performance Characteristics of Flooded Type Evaporator for Seawater Cooling System with Heat Source Temperature of Mid-year)

  • 윤정인;손창효;이정목;강인호
    • 동력기계공학회지
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    • 제21권2호
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    • pp.64-69
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    • 2017
  • The purpose of this study is to investigate the performance characteristics of seawater cooling system for a fishing vessel. The circulation amount of refrigerant, condensation capacity, evaporation capacity, compression work and coefficient of performance(COP) were analyzed as the heat source temperature changed. The experimental setup consisted of an open-type compressor, a shell&tube type condenser, an evaporator and an expansion valve. The heat source was controlled by a constant temperature chamber. The main results of this study are summarized as follows. The condensation capacity increased with increasing heat source temperature, and it was confirmed that the effect of circulating amount of refrigerant was dominant. The amount of heat for vaporization was almost constant even though the temperature of the heat source increased. On the other hand, the compression power was increased. This is because the compression ratio increases as the condensation pressure, the enthalpy difference between inlet and outlet, the amount of circulating refrigerant increases. The performance coefficient of this system showed a tendency decreasing with increasing heat source temperature. Therefore, the basic data of the seawater cooling system for the maintenance of the catch line of the shore fishing boats was acquired through this study, and it is considered that it will be sufficient for the actual design.

분산형 저류지 생태환경복원 설계 - 신정3지구 생태환경저류지에 적용된 생태적수질정화비오톱(SSB)시스템을 중심으로 - (A Design for Ecological and Environmental Restoration of a Dispersal Detention System - a Case of Sustainable Structured wetland Biotop (SSB) System Applied to Ecological and Environmental Detention in the Housing District of Sinjeong 3-jigu -)

  • 변찬우
    • 한국환경복원기술학회지
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    • 제16권1호
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    • pp.181-191
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    • 2013
  • The design process of ecological and environmental detention system located in the housing district of Sinjeong 3-jigu in Seoul are as follows. At stage one, a new dispersal detention was created in the neighborhood park located near the originally planned detention. From this, the amount of storage of this dispersal detention system was enlarged from $28,337m^3/d$, the initial storage amount, to $33,606m^3/d$ as the post storage amount, responsible to the amount of rainfall which happens every 100 years. In particular, the SSB (Sustainable Structured wetland Biotop) system, which was the New Excellent Technology verified by the Ministry of Environment (No. 258) was applied to enhance ecological functioning and water quality with the detention as a constructed wetland. At stage two, the treatment plans for non-point pollutant source occurred at the initial period of rain, flowing into the detention system were built for purifying the water of the retention pond at the base of the detentions, and the water-circulation system was designed at the dispersal detentions on the period of regular rainfalls. The non-point pollutant source flowing into detention site was calculated as $11,699m^3/d$ flowing down from seven small watersheds, which occurred at the initial period of rain. In particular the SSB systems improved the average efficiency of the water processing performance to BOD 60%, SS 90%, T-N 30%, T-P 60%. At stage three, the ecological network and biological diversity were strongly considered so that it brought the residents with amenity places. In particular, the dispersal detentions were successfully designed to restore the ecological habitat of endangered plant and animal species such as narrow-mouthed.

녹색자연환경 보존을 위한 지속가능한 자원순환시스템 콘크리트 (Using Recycled Aggregates in Sustainable Resource Circulation System Concrete for Environment Preservation)

  • 이영주;장정권;김윤일;임칠순
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2010년도 춘계 학술논문 발표대회 1부
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    • pp.57-61
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    • 2010
  • In this study, many concrete specimens were tested to investigate the variations of strength characteristics of high-strength concrete due to amount of recycled coarse aggregates, and to investigate the effect of steel-fiber reinforcement on concrete using recycled coarse aggregates. Test results showed that all of the variations of compressive, tensile and flexural strength appeared in linear reduction according to icrease the amount of recycled coarse aggregates, and steel-fiber reinforcement of 0.75% volumn of concrete recovered completely spliting tensile strength and flexual strength and recovered greatly compressive strength of concrete using recycled coarse aggregates of 100% displacement. And test results showed that the shear strength falled rapidly at 30% of replacement ratio so far as 34% of strength reduction ratio, but after that it falled a little within 3% up to the replacement ratio 100%, and steel-fiber reinforcement of 0.75% of concrete volumn recovered completely the deteriorated shear strength, moreover improved the shear strength above 50% rather than that of concrete using natural coarse aggregates.

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우리나라에서 계절별 일교차의 분포 특성과 그 원인 (Characteristics of Seasonal Mean Diurnal Temperature Range and Their Causes over South Korea)

  • 서명석;홍성근;강전호
    • 대기
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    • 제19권2호
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    • pp.155-168
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    • 2009
  • Characteristics of seasonal mean diurnal temperature range (DTR) and their causes over South Korea are investigated using the 60 stations data of Korea Meteorological Administration from 1976 to 2005. In general, the seasonal mean DTR is greatest during spring (in inland area) and least during summer (urban and coastal area). The spatial and seasonal variations of DTR are closely linked with the land surface conditions (especially vegetation activity and soil moisture) and atmospheric conditions (cloud amount, precipitation, local circulation). The seasonal mean DTR shows a decreasing trend at the major urban areas and at the north-eastern part of South Korea. Whereas, it shows an increasing trend at the central area of the southern part. Decreasing and increasing trends of DTR are more significant during summer and fall, and during spring and winter. The decrease (increase) of DTR is mainly caused by the stronger increase of daily minimum (maximum) temperature than daily maximum (minimum) temperature. The negative effects of precipitation and cloud amount on the DTR are greater during spring and at the inland area than during winter and at the coastal area. And the effect of daytime precipitation on the DTR is greater than that of nighttime precipitation.

Intra-abdominal hypertension during hip arthroscopy: a case report

  • Saeyoung Kim;Hyun-Su Ri;Ji Hyun Kim;iyong Yeom
    • Journal of Yeungnam Medical Science
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    • 제40권1호
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    • pp.102-105
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    • 2023
  • Symptomatic extravasation of irrigation fluid is a rare complication of hip arthroscopy. However, depending on the amount of fluid, intra-abdominal hypertension (IAH) may occur and even develop into abdominal compartment syndrome, which can seriously alter hemodynamic circulation. Therefore, it is important for anesthesiologists to promptly recognize the abnormal signs of IAH for early diagnosis and better clinical outcomes. Nevertheless, these signs are difficult to detect because they are usually obscured when the patient is under anesthesia and masked by surgical drapes. We report a case of IAH under general anesthesia during hip arthroscopy to highlight possible symptoms and signs.