배수갑문(排水閘門)의 관리(管理) 및 배제유량(排除流量)에 관(關)한 연구(硏究)

A Study on the Management and the Discharge of the Sluice Gates

  • Kim, Tai Cheol (Dept. of Agricultural Engineering, College of Agriculture, Chungnam National University) ;
  • Lee, Duk Joo (Graduate School, Chungnam National University) ;
  • Han, Young Soo (Graduate School, Chungnam National University)
  • 발행 : 1990.12.31

초록

본 연구는 배수갑문의 관리 및 운용 상황을 알기 위하여 삽교호를 모형으로 분석하였으며, 수리모형실험을 통하여 농지개량사업 계획설계기준의 제안식을 검토한 결과는 다음과 같다. 1. 삽교호의 9개년간의 평균 개문(開門)높이 4.13m이었고, 평균 조작연수(操作連數)는 4.04연(連), 연(年)평균 조작회수는 67회(回)이었으며, 배제시간은 연(年)평균 192시간 32분, 1회(回) 평균 2시간 53분 이었다. 2. 삽교호를 통하여 공급한 용수는 연(年)평균 8,815만톤으로 삽교호 유효저수량의 약 1.4배이며, 월별 최대 양수월(揚水月)인 5월의 양수량은 평균 2,956 만톤/년으로 유효저수량의 약 1/2을 양수하였다. 3. 설계기준에 제시된 오리피스 공식은 수중오리피스에서 완전오리피스 형태로 바뀌는 경계영역에서 급격한 배제량의 단절이 나타났으며, 이는 실제 수리현상과 다르므로 개선되어야 한다. 4. 오리피스의 공식은 수중과 완전으로 구분하여 사용하고 있으나, 내 외수위 및 수문 개방도를 고려하여 유량계수를 적용하면 수중 및 완전 오리피스의 모든 경우에도 $q=C{\cdot}W\sqrt{2gH_1}$의 공식을 적용할 수 있다.

This study was carried out to analyze the operation of the sluice gates by taking Sabkyo Reservoir as the model, and to examine the formulae of the design criteria for the Agricultural Land Improvement Project by hydraulic model experiments. The results were summarized as follows ; 1. According to the records of gate operation for 9 years, the mean height of the opened gates was 4.13 m, the mean number of operated gates were 4.04, the average annual number of operation were 67 times, the average annual operating time were 192.5 hours, and the average operating time were 2.88 hours. 2. The water supplied through Sabkyo Reservoir was 88.15 megatons per year, which was about 1.4 times the effective storage capacity. And the annual volume of pumping in May, which is the most water demanding season, was 29.56 megatons in average. 3. As the submerged orifice was transformed into the surface orifice, the suggested formulae for the orifice flow on the design criteria for the Agricultural Land Improvement Project showed a discontinuous line on the transition zone. It should be improved, because it is different from the real hydraulic phenomena. 4. The formulae for the orifice flow which are divided into the submerged and surface orifices are being used. However, these formulae could be substituted for the formular, $q=C{\cdot}W\sqrt{2gH_1}$, if the discharge coefficient considering the reservoir water level, the sea water level, and the gate opening height is used.

키워드