강원도의 내린천, 연곡천, 골지천, 오십천을 대상으로 영동 및 영서 하천의 하안단구 발달 과정을 지구조적인 측면에서 분석하였다. 하안단구 분포 패턴과 하천 하각 속도를 분석, 검토한 결과, 4개 하천 중 오십천 상류의 하안단구 4면, 5면, 6면에서는 태백산맥을 축으로 한 지반 융기의 영향이 뚜렷이 확인되었다. 태백산맥 분수계가 융기축이라면 영서하천 상류부 폭 $30\sim40km$ 구간이 융기대에 해당된다. 융기대 내부에 위치하는 내린천의 중 상류와 골지천 유역 전체는 하천 전 구간에서 융기작용이 활발하여, 상 하류 간의 융기량에 따른 하상비고 차이는 나타나지 않는다. 하안단구 2면$\sim$1면 사이와 1면$\sim$현재까지의 하각 속도는 두 시기의 기후 조건 차이로, 각각 $0.13\sim0.22m/ka,\;0.17\sim0.27m/ka$로 다르게 나타났다. 하안단구 1면 형성 이후부터 현재까지 영서 하천에 비해 영동 하천의 하각 속도가 다소 높다. 이는 하천 대부분 구간이 융기대에 포함되는 영서 하천에 비하여, 영동 하천은 하구가 최종적인 침식기준면인 해수면이므로 하각작용이 보다 활발했기 때문이다.
강원도의 내린천, 연곡천, 골지천, 오십천을 대상으로 영동 및 영서 하천의 하안단구 발달 과정을 지구조적인 측면에서 분석하였다. 하안단구 분포 패턴과 하천 하각 속도를 분석, 검토한 결과, 4개 하천 중 오십천 상류의 하안단구 4면, 5면, 6면에서는 태백산맥을 축으로 한 지반 융기의 영향이 뚜렷이 확인되었다. 태백산맥 분수계가 융기축이라면 영서하천 상류부 폭 $30\sim40km$ 구간이 융기대에 해당된다. 융기대 내부에 위치하는 내린천의 중 상류와 골지천 유역 전체는 하천 전 구간에서 융기작용이 활발하여, 상 하류 간의 융기량에 따른 하상비고 차이는 나타나지 않는다. 하안단구 2면$\sim$1면 사이와 1면$\sim$현재까지의 하각 속도는 두 시기의 기후 조건 차이로, 각각 $0.13\sim0.22m/ka,\;0.17\sim0.27m/ka$로 다르게 나타났다. 하안단구 1면 형성 이후부터 현재까지 영서 하천에 비해 영동 하천의 하각 속도가 다소 높다. 이는 하천 대부분 구간이 융기대에 포함되는 영서 하천에 비하여, 영동 하천은 하구가 최종적인 침식기준면인 해수면이므로 하각작용이 보다 활발했기 때문이다.
This study interprets evolution of fluvial terraces along the four Yeongdong- and Yeongseo streams such as Naerin River, Yeongok River, Golji River and Osip River, in Gangwon Province based on the tectonics. The results from the analyses of the distribution pattern of fluvial terraces and incision r...
This study interprets evolution of fluvial terraces along the four Yeongdong- and Yeongseo streams such as Naerin River, Yeongok River, Golji River and Osip River, in Gangwon Province based on the tectonics. The results from the analyses of the distribution pattern of fluvial terraces and incision rates of rivers show distinctively the evidence as the axis of uplift by Taebaek Mountains, especially on the 4th, 5th and 6th terraces in upper reach of Osip River among the four streams. The axis of uplift extends to the zone of $30\sim40km$ in width as well as the divide. The difference of uplift between upper and middle reaches of Naerin River and total reach of Golji River wasn't found from the height from riverbed by the active uplifting along all reaches, estimated to be set in inner area of uplift zone. Incision rate of period between formation age of 2nd terrace and 1st terrace is calculated $0.13\sim0.22m/ka$, and incision rate of period between formation age of 1st terrace and Present is diversely calculated $0.17\sim0.27m/ka$ by the climatic discrepancy between the two periods. The incision rate of Yeongdong streams whose mouths reach to the sea level eroded actively more than Yeongseo streams in the uplift zone. And Yeongdong streams between formation age of 1th terrace and present appears to much higher than that of Yeongseo streams, due to active down-cutting in oder to balance against the sea level.
This study interprets evolution of fluvial terraces along the four Yeongdong- and Yeongseo streams such as Naerin River, Yeongok River, Golji River and Osip River, in Gangwon Province based on the tectonics. The results from the analyses of the distribution pattern of fluvial terraces and incision rates of rivers show distinctively the evidence as the axis of uplift by Taebaek Mountains, especially on the 4th, 5th and 6th terraces in upper reach of Osip River among the four streams. The axis of uplift extends to the zone of $30\sim40km$ in width as well as the divide. The difference of uplift between upper and middle reaches of Naerin River and total reach of Golji River wasn't found from the height from riverbed by the active uplifting along all reaches, estimated to be set in inner area of uplift zone. Incision rate of period between formation age of 2nd terrace and 1st terrace is calculated $0.13\sim0.22m/ka$, and incision rate of period between formation age of 1st terrace and Present is diversely calculated $0.17\sim0.27m/ka$ by the climatic discrepancy between the two periods. The incision rate of Yeongdong streams whose mouths reach to the sea level eroded actively more than Yeongseo streams in the uplift zone. And Yeongdong streams between formation age of 1th terrace and present appears to much higher than that of Yeongseo streams, due to active down-cutting in oder to balance against the sea level.
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