Abstract

수자원분야에서 관측최대강수량은 주로 지점최대 강수량에 의해 평가되어 왔으나, 엄밀한 의미에서 강수량이라 함은 면적평균강수량으로 고려되어야 한다. 면적평균강수량은 관측호우의 DAD(rainfall Depth-Area-Duration) 분석을 통하여 계산된 추정치이고, 이로부터 대상면적-지속기간별 면적평균강수량 또는 최대관측강수량을 산정할 수 있다. 본 연구에서는 우리나라 전역을 수문학적으로 동질하다고 가정하여 호우중심의 DAD 분석을 수행하였으며, 이로부터 면적-지속기간별 최대관측강수량의 연도별 변화를 고찰하였다. 또한, 면적-지속기간별고 구성된 시계열로부터 확률강수량을 산정하여, 면적별 IDF와 관측치대강수량의 특성에 대하여 논하였다. Mainly, observed maximum rainfall has been evaluated by point rainfall, but actually it should be considered by means of average areal rainfall. Average areal rainfall is an estimated value computed through DAD(rainfall Depth-Area-Duration) analysis. By using this value, an average and maximum areal rainfall according to area-duration relationship could be computed. In this study, we assume that the whole Korea region is hydrologically homogeneous, and then analyze using the storm-centered DAD(moving-area DAD) method for the past century data. From this analysis, we evaluate the yearly variation of observed maximum areal rainfall through area-duration relationship. And we also construct an IDF(rainfall Intensity-Duration-Frequency) curve by using the annual time series data which is composed of maximum areal rainfall. The characteristics of IDF and observed maximum areal rainfall is also evaluated.

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