A Channel Flood Routing by Muskingum Method Incorporating Lateral Inflows

측방 유입수를 고려한 자연 하도의 Muskingum 홍수추적

  • Published : 1990.09.01

Abstract

Three-parameter Muskingum flood routing model which incorporated the inflows alongside the river channel is applied for the Waegwan-Jeukpogyo reach of the Nakdong River using the flood data of 12 selected flood events experienced in this reach. The flood routing equations for three-parameter model were expressed as a system of finite difference equations and the routing constants were directly computed by matrix inversion method. Then, the three parameters, which consist of the storage constants(K), weighting fator(x), and lateral inflow parameter(α), were determined from the computed routing constants. The results of the present study showed that the model can predict with a fair accuracy the flood discharges at the downsteam end of the reach. The parameters K and x were seen as channel parameters which have close relations with the flood magnitude, whereas the lateral inflow parameter was shown to be strongly governed by the rainfall characteristics of the tributary watersheds contributing to the lateral inflows.

측방유입수가 고려되는 3변수 Muskingum하도추적모형을 낙동강 수계중 왜관에서 적포교구간의 12개 홍수사상에 대하여 적용하였고, 기존 방법인 2변수 Muskingum방법의 저류상수 K와 가중계수 x에 추가된 α는 측방유입수를 고려해주는 변수이다. 3변수모형의 추적방정식은 유한차분방정식으로 표현되며, 추적상수 결정은 Matrix Inversion에 의하여 직접 계산 가능하며, 이로부터 각 홍수사상의 K x 값을 구할 수 있다. 본 연구를 실유역에 적용하여 실측치와 비교하여본 결과 비교적 잘 맞음을 알 수 있어쓰ㅇ며 K와 x값은 하도특성인자로서 홍수규모와 관계되고 측방유입인자 α는 강우 특성에 의하여 지배되는 변수로 판단되었으며 α값은 측방유입량이 클수록 값이 커지는 성향으로 나타났다.

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