Daecheong Reservoir has suffered eutrophication and water-blooms by blue-green algae from initial impoundment, and algae alert system (AAS) was introduced in 1997. The purpose of this study was to investigate the effect of rainfall and hydrological factors in increase or decrease variability of green-tide and prolonged AAS, studied and analyzed the current situation of AAS has been operating for 19 years(1997~2015) in Daecheong Reservoir. The total issued number of AAS was 46 times, the most frequent period in August and September were 22 times (752 days) and 16 times (431 days), respectively, it accounted for 82.6%. Many number and frequency during this period were significantly associated with rainfall, various discharge and water level. Rainfall and hydrological events are associated with the rainy season of monsoon-Changma and the typhoon, it was concentrated in June~September, total rainfall in this period accounted for 69.9% of the annual rainfall. An increase in inflows was dependent on the intensity, frequency and the amount of rainfall. Accounted for 68.4% of the total annual inflow, it was a time when the most rapidly changing hydrological variability in the reservoir. The total outflow was closely related to rainfall, and compared the distinctive characteristics of hydropower generation and watergate-spillway discharge. In addition, the upreservoir zone of Daecheong Reservoir could be vulnerable to green-tide by regulating discharge of the upstream dam. The issue of AAS was strongly related to the with and without of watergate-spillway discharge. The watergate-spillway discharge had a total of 25 times, it was maximum 17 days from July to September in the year. And the opening times and each duration of the watergate were 1~4 times and the range of 3~37 days, respectively. When the watergate opened, the issue of AAS was maintained to 13 years and the movement of water bodies and green-tide was great about five times than that of non-open, had a profound effect on prolonged AAS within reservoir. In Daecheong Reservoir, Chusori (CHU) area of the So-ok Stream was still showing serious symptoms green-tide levels in the summer, but Janggye (JAN) waters of the main reservoir was pointed out that more important. AAS will be operated by an absolutely consider the rainfall and hydrological effects around the watergate-spillway discharge. The measures of green-tide will be included in the limnological studies more suited to the characteristics of the watershed and reservoir of the our country. Finally, from now on, we will prepare the systematic management and guidelines for vulnerable zone water-blooms that are the source within the reservoir before the monsoon rather than waiting for the arrival of green-tide on the operating stations of AAS.
겨울철 동해안 강수 현상에 대한 규명을 위하여 라디오존데를 활용한 특별관측을 2012년 1월 5일부터 2월 29일까지 실시하였고, 이 연구는 대기의 불안정을 나타내는 다양한 변수를 활용하여 강수 사례의 분석을 수행하였다. 그 결과, 강수가 발생할 때 지표면(1000 hPa)에서 중층(약 750 hPa)까지의 상당온위가 증가하는 것을 볼 수 있었고, 이러한 대기층(1000~750 hPa)은 불안정을 일으키기에 충분한 수준의 수증기를 함유하고 있었다. 대류가용잠재에너지의 시간적인 변화를 살펴본 결과 강수가 발생하였을 때 증가하는 것을 볼 수 있었고, 연직바람쉬어의 경우에서도 대류가용잠재에너지와 마찬가지로 강수 기간 동안 상승하여 일정수준 이상의 값을 유지하는 것을 확인할 수 있었다. 강수에 따른 대기 구조의 상세한 분석을 위하여 지상 원격 탐사 자료와 지상 관측 자료를 활용하여 분석을 수행하였다. 또한 가강수량과 바람벡터를 이용하여 가강수량플럭스를 계산하였다. 가강수량플럭스와 강수량은 북동풍 계열의 바람이 발생하였을 때 높은 관계성을 보였다. 그 결과 동해안영역에서 발생하는 강수 현상에서는 풍계와 같은 역학적인 작용의 이해가 중요한 것으로 판단되었다.