• 제목/요약/키워드: Quantity of drainage

검색결과 72건 처리시간 0.021초

토마토 수경재배 시 배액제로 센서를 이용한 배액제로화가 근권환경, 생육 및 수량에 미치는 영향 (Effect of Zero Drainage Using Drainage Zero Sensor on Root Zone Environment, Growth and Yield in Tomato Rockwool Culture)

  • 황연현;안철근;장영호;윤혜숙;안재욱;손길만;노치웅;정병룡
    • 생물환경조절학회지
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    • 제21권4호
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    • pp.398-403
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    • 2012
  • 폐양액 발생을 최소화할 수 있는 배액제로형 수경재배기술 개발을 위하여 토마토 수경재배 시 배액제로 센서를 이용하여 배액을 제로화 또는 최소화하였을 때 표준배액량 처리와 비교하여 근권환경 변화와 토마토의 생육, 수량, 품질 등에 미치는 영향을 구명하였다. 처리별 주당 1일 공급량은 표준배액률 처리가 1.4, 배액제로 1처리가 0.9, 배액제로 2처리가 0.8L이었고, 배액률은 표준배액률 처리가 23.8, 배액제로 1처리가 8.6, 배액제로 2 처리가 3.7%이었다. 표준배액률 처리, 배액제로 1과, 2처리의 함수율과 배지 내 EC는 각각 64.5~88.0%와 $1.5{\sim}3.5dS{\cdot}m^{-1}$, 40.3~76.0%와 $2.5{\sim}4.0dS{\cdot}m^{-1}$, 그리고 56.3~69.0%, $2.7{\sim}3.7dS{\cdot}m^{-1}$이었다. 토마토 생육은 표준배액률 처리에 비해 배액제로 처리에서 엽장, 엽수, 경경은 차이가 없었으나, 초장과 엽폭이 작은 경향을 보였다. 토마토 수량은 표준배액률 처리에 비해 배액제로 처리에서 상품수량이 7.7~12% 적고 1과중이 작았으나, 당도는 반대로 높았고 상품과률은 차이가 없었다.

도로 배수시설의 형상정보 표현을 위한 IFC 정보모델 확장 방안 (The Extension of IFC Model Schema for Geometry Part of Road Drainage Facility)

  • 조근하;원지선;김진욱
    • 한국산학기술학회논문지
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    • 제14권11호
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    • pp.5987-5992
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    • 2013
  • 본 연구는 도로분야의 정보모델 표준 구축을 목표로 하고 있으며 도로 배수시설을 대상으로 IFC 스키마의 토목요소 확장 방안을 제시하였다. 국내 도로설계 관련 문헌 분석을 통해 도로 배수시설 중 IFC 모델로 정의가 가능한 구성요소를 도출하였으며 IFC 엔티티를 정의하였고 속성으로 정의가 가능한 배수시설 별 설계 정보를 도출하여 IFC 프로퍼티로 제시하였다. 본 연구의 결과를 통해 IFC 스키마를 도로 배수시설에 적합하도록 확장 할 수 있으며 추가적인 도로 시설물을 수용할 수 있는 IFC 스키마가 개발된다면 이를 통해 향후 공정관리, 비용 산출 및 시뮬레이션 등이 가능한 어플리케이션에서 상호운용성을 유지하며 활용할 수 있을 것이다.

저수지의 퇴사에 관한 연구 -진양지구를 중심으로- (A Study for Sedimentation in Reservoir -on district of Chin Young-)

  • 류시창;민병향
    • 한국농공학회지
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    • 제17권3호
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    • pp.3840-3847
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    • 1975
  • With 30 excisting reservoirs in the Chin-Young area, the Sedimentation of the reservoirs has been calculated by comparing the present capacity with the original value, which revealed its reduced reservoir capacity. The reservoirs has a total drainage area of 3l4l ha, with a total capacity of 43.23 ha-m, and are short of water supply due to reduction of reservoir capacity, Annual sedimentation in the reservoir is relation to the drainage area, the mean of annual rainfall, and the slop of drainage area. The results of obtained from the investigation are summarized as follows: (1) A Sediment deposition rate is high, being about 7.03㎥/ha of drainage area, and resulting in the overage decrease of reservoir capacity by 16.1%. This high rate of deposition coule be mainly attributed to the serve denudation of forests due to disorderly cuttings of tree. (2) An average unit storageof 116mm as the time of initial construction is decreased to 95.6mm at present. This phenomena cause a greater storage of irrigation water, sinceit was assumed that original storage quantity itself was already in short. (3) A sediment deposition rate as a relation to the capacity of unit drainge area is as follow: Qs=1.27(C/A)0.6 and standard deviation is 185.5㎥/$\textrm{km}^2$/year. (4) A sediment deposition rate as a relation to the mean of annual rainfall is as follow: Qs=21.9p10.5 and the standard deviation is 364.8㎥/$\textrm{km}^2$/year. (5) A sediment deposition rate as a relation to the mean slop of drainage area is follow: Qs=39.6S0.75 and the standard deviation is 190.2㎥/$\textrm{km}^2$/year (6) Asediment deposition rate as a relation to the drainage area, mean of rainfall, mean of slope of drainage area is: Log Qs=0.197+0.108LogA-6.72LogP+2.20LogS and the standard deviation is 92.4㎥/$\textrm{km}^2$/year

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새만금 간척지 포화상태 흙의 제염예측기법 개발 (Development of Prediction Method of Desalination on a Saturated Soil in Saemanguem Reclaimed Area)

  • 서동욱;김현태;장병욱;이상훈
    • 한국농공학회논문집
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    • 제51권2호
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    • pp.29-34
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    • 2009
  • A series of laboratory model tests and numerical analysis is performed to analyze characteristics of desalination and to predict a period of desalination for subsurface saturated soil in Saemanguem reclaimed area. The results show that quantity of desalination is small as salinity of water is increased. On the contrary, quantity of desalination is increased as salinity of soil is high. In order to decrease the salinity to 10 % of initial salinity of soil at depth of 2 m, it takes 11 years to desalinate the soil 50 m away from drainage ditch. For soil at depth of 1.5 m only 1 year to desalinate the soil near drainage ditch. Also, water head of 80 cm is required to desalinate to 10 % of initial salinity for 60 cm thick soil. Because the following results is based upon the Saemangeum soil, an application of this result for another field will be cautious. More research will be required on this matter.

석탄광의 산성갱내배수 처리.이용.제어에 관한 연구 -한국형 특수갱배수 정화장치 시작품 현지적용실험- (Study on the Treatment, Utilization and Control of the Acid Mine Drainage for Colliery - An on-site test on the Applicability of a Korean-type Prototype for Mine Drainage Purification-)

  • 이춘택
    • 기술사
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    • 제19권4호
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    • pp.11-21
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    • 1986
  • Mine drainage from coal mines is mostly acidic, polluted and/or contaminated, even if its quantity has increased substantially during recent days. This causes two kinds of problems arising at mining districts; one is the environmental disruption and the other is insufficient water supply for living, employee's bathing and industrial purposes. In order to mitigate the aforementioned problems, a specific equipment of Korea type for mine drainage purification has been developed and its prototype manufactured, followed by its applicability tests implemented at mine site. The results of the tests indicates that the new equipment developed is much lower than and economical compared to, other existing neutralization facilities at home and abroad in capital investment at installation stage, the consumption of neutralizing chemicals at operation stage and the requirements of installation site. Whangji area where the prototype water treatment equipment is installed has been sustaining a short supply of usable water, especially in dry seasons and supplementing about 40㎥ of water brought from a location farther than 4km in distance to meet water requirements. The prototype water treatment equipment is however considered capable of providing compressor cooling water in sufficient amount from winter season In the future.

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담수심과 오수처리수 관개가 벼재배에 미치는 영향 (Effects of fended-Water Depth and Reclaimed Wastewater Irrigation on Paddy Rice Culture)

  • 윤춘경;황하선;정광욱;전지홍
    • 한국농공학회지
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    • 제45권4호
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    • pp.55-65
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    • 2003
  • Pilot study was conducted to examine the effects of ponded-water depth and reclaimed wastewater irrigation on paddy rice culture. For the ponded-water depth effect, three treatments of shallow, traditional, and deep water depths were applied, and each treatment was triplicated. The irrigation water for the treatment pots was an effluent from constructed wetland system for sewage treatment, while the control pot was irrigated with tap water kept traditional ponded-water depth. Irrigation water quantity varied with ponded-water depth as expected and drainage water quantity also varied similarly, which implies that shallow irrigation might save irrigation water and also reduce environmental impacts on downstream water quality. Rice growth and production were not significantly affected by ponded-water depth within the experimental condition, instead there was an indication of increased production in shallow and deep ponded-water depths compared to the traditional practice. Raising drainage outlet to the adequate height in paddy dike might be beneficial to save water resources within the paddy field. There was no adverse effect observed in reclaimed wastewater irrigation on the rice production, and mean yield was even greater than the control pots with tap water irrigation although statistically not significant. Water-saving irrigation by shallow ponded-water depth, raising the outlet height in diked rice paddy fields, minimizing forced surface drainage by well-planned irrigation, and reclaimed wastewater irrigation are suggested to save water and protect water quality. However, deviation from traditional farming practices might affect rice growth in long term, and therefore, further investigations are recommended before full scale application.

초기 설계단계의 가용정보를 활용한 도로 배수공종의 LCA기반 환경부하량 산정모델 (LCA Based Environmental Load Estimation Model for Road Drainage Work Using Available Information in the Initial Design Stage)

  • 박진영;김병수
    • 한국건설관리학회논문집
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    • 제19권3호
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    • pp.70-78
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    • 2018
  • 기후변화에 대한 우려가 커지면서 건설산업에서도 환경부하를 줄이기 위해 지속적으로 노력하고 있으며, 환경부하를 산정하기 위한 효과적인 방법론으로써 LCA (life cycle assessment)가 제시되고 있다. 그러나, LCA는 환경부하량 산정을 위해 작업에 투입되는 자원량에 대한 정보가 필요하기 때문에 이러한 정보의 확보가 어려운 초기 설계단계의 환경적 검토에는 활용되지 못하고 있다. 이 연구에서는 도로의 배수시설물을 대상으로 표준단면에 기반한 작업물량산출체계를 개발하고 환경부하량을 산출할 수 있는 모델에 활용하였다. 이 모델은 초기 설계단계의 가용정보만으로 LCA에 필요한 자원량을 산정함으로써 환경부하량을 산출할 수 있다. 모델의 유효성을 검증하기 위해 5개의 검증사례를 적용하였으며 원단위추정모델 및 회귀모델과 비교하였다. 그 결과 평균 9.94%의 절대오차율평균을 나타내 다른 모델보다 상대적으로 정확하며 초기 설계단계에서 사용할 수 있는 유효한 모델이라는 점이 확인되었다.

도시지역의 지하수수지 (Groundwater Balance in Urban Area)

  • 이승현;배상근
    • 한국환경과학회지
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    • 제20권12호
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    • pp.1553-1560
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    • 2011
  • The study analyzes groundwater balance with regard to the water recharge and discharge which contain urbanization components in Suyeong-gu, Busan. It also verifies the reliability and accuracy improvement on the analysis of the balance. The result of the study is viewed as preliminary data which are useful to develop, utilize and manage groundwater. The average quantity of groundwater recharge is 6,014.1 $m^3$/day in the research area during the last ten year period(from 1998 to 2007). The outflow from drainage areas to rivers and coasts is 149.3 $m^3$/day, the inflow from rivers and coasts to drainage area is 439.9 $m^3$/day. The use of the water is 4,243.0 $m^3$/day. The outflow caused by subway in line No.2 and No.3 through Suyeong-gu and the one by building an underground electric complex is 1,500.0 $m^3$/day. The leakage of water works is 6514.9 $m^3$/day. The inflow and outflow of sewerage is 5082.2 $m^3$/day from groundwater to sewer. The amount of groundwater recharge, the inflow from rivers and coasts to drainage area, and the leakage of water works belong to the amount of groundwater inflow and the total amount is 12,968.9 $m^3$/day. The amount of outflow from drainage area to rivers and coasts, the use of groundwater, outflow by subway and underground electric complex tunnel and the amount of inflow of the water to sewerage belong to the amount of outflow of groundwater and the sum amount is 13,031.5 $m^3$/day. The gap between the amount of inflow and outflow of groundwater is 62.6 $m^3$/day, which is considered to reflect the trend that the short term drop in the amount of rainfall results in the amount of groundwater recharge and that the amount of outflow from drainage area to rivers and coasts decreases.

지하수 관개지역 논에서의 배출부하 특성 (Characteristics of Pollutant Loading from Paddy Field Area with Groundwater Irrigation)

  • 윤춘경;김병희;전지홍;황하선
    • 한국농공학회지
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    • 제44권5호
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    • pp.116-126
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    • 2002
  • Discharge pattern and water quality were investigated in the drainage water from about 10 ha of groundwater-irrigated paddy field in the growing season of 2001. Total discharge quantity was about 1,117.2 mm in which about 75% was caused by management drainage due to cultural practice of paddy rice farming and the rest by rainfall runoff where total rainfall was about 515 mm. Dry-day sampling data showed wide variations in constituent concentrations with average of 26.14 mg/L, 0.37 mg/L, 3.54 mg/L at the inlet, and 43.60 mg/L, 0.34 mg/L, 3.58 mg/L at the outlet for CO $D_{cr}$ , T-P, and T-N, respectively. Wet-day sampling data demonstrated that generally CO $D_{cr}$ followed the discharge pattern and T-P was in opposite to the discharge pattern, but T-N did not show apparent pattern to the discharge. Discharge and load are in strong relationship. And based on regression equation, pollutant loads from groundwater irrigation area are estimated to be 288.34, 1.17, and 5.45 kg/ha for CO $D_{cr}$ , T-P, and T-N, respectively, which was relatively lower than the literature value from surface water irrigation area which implies that groundwater irrigation area might use less irrigation water and result in less drainage water, Therefore, total pollutant load from paddies irrigation with groundwater could be significantly lower than that with surface water. This study shows that agricultural drainage water management needs a good care of drainage outlet as well as rainfall runoff. This study was based on limited monitoring data of one year, and further monitoring and successive analysis are recommended for more generalized conclusion.

상이한 제원특성을 가진 빗물펌프장에서의 퍼지제어모형 적용 (An Application of Fuzzy Control Models to Inland Drainage Pumping Stations with Different Characteristics for Protection of Inland Flooding)

  • 심재현;이원환;조원철
    • 대한토목학회논문집
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    • 제13권3호
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    • pp.107-118
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    • 1993
  • 계속되는 도시화로 불투수성 면적이 증가되고, 환경변화에 의해 강우량이 증대되어 도시 저지대의 침수 우려가 더욱 가중되고 있는 실정이다. 따라서 서울특별시에서는 많은 예산을 들여 내수를 외수 쪽으로 강제배수시키는 빗물펌프장을 계속해서 보강 및 신설하고 있다. 그러나 상대적으로 경제적이라 할 수 있는 기존 빗물펌프장 시설의 적정 제어기법에 대한 연구나 투자는 전무한 상태라 할 수 있다. 본 연구는 퍼지제어기법을 적용하여 기존의 시설을 충분히 활용할 수 있는 기법을 개방하여 서울특별시 관내의 서로 다른 제원특성을 가진 57개의 유수지와 빗물펌프장에 적용하였다. 연구결과 현재의 펌프가동기준인 수위기준에 의한 펌프제어에 비하여 본 연구에서 적용한 퍼지제어기법이 전체 대상지점에 대하여 내수위를 같은 조건하에서도 충분히 낮출 수 있는 것으로 나타나 치수방재면에서 우수한 것으로 밝혀졌다.

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