Overnight formation of a bouldery alluvial fan by a torrential rain in a granitic mountain (Mt. Seoraksan, Republic of Korea)

Jisu Kim, K. Woo, K. Lee, Y. Sohn
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引用次数: 2

Abstract

Mt. Seoraksan, Korea, is a rugged granitic mountain where extremely steep slopes and strongly seasonal rainfall have facilitated bedrock exposure and geomorphic changes mainly by rockfalls and streamflows. Although the environment was not suitable for alluvial fan formation, a bouldery alluvial fan, 170 m long and 330 m wide, formed overnight by a heavy summer rain in 2006. The fan consists of several meter-high boulder mounds and gently undulating cobble bars/sheets that are arranged in a fluvial longitudinal bar-like pattern. They are interpreted to have formed by highly competent and turbulent sheetfloods, which temporarily had the properties of hyperconcentrated flood flows. Formation of the whole alluvial fan by a single, casual hydro-meteorological event is inferred to have been possible because a threshold condition was reached in the source area. A rainfall event, which would have had no extreme effects before reaching the threshold, could probably trigger massive remobilization of bouldery sediments on the valley floors. The Seoraksan alluvial fan thus demonstrates the role of a geomorphic threshold in causing drastic changes in the hydrologic performance of the watershed. The morphology and sedimentology of the Seoraksan alluvial fan suggest that the fan is a modern example of a sheetflood-dominated alluvial fan, which has largely been ignored in spite of their potential diversity and abundance in glacial to periglacial, tropical, and temperate environments.
在花岗岩山(韩国雪岳山),暴雨在一夜之间形成了一个卵石冲积扇。
韩国的雪岳山是一座崎岖不平的花岗岩山,陡峭的山坡和强烈的季节性降雨使基岩暴露,主要由落石和溪流引起地貌变化。虽然环境不适合冲积扇的形成,但在2006年的一场夏季暴雨中,一夜之间形成了一个长170米、宽330米的砾质冲积扇。扇由几米高的巨石丘和轻轻地起伏的鹅卵石条/片组成,这些鹅卵石条/片以河流纵向的条形图案排列。它们被解释为由高度称职和湍流的片状洪水形成,这些片状洪水暂时具有高浓度洪水的性质。推断整个冲积扇是由一个单一的、偶然的水文气象事件形成的,因为在源区达到了一个阈值条件。在达到阈值之前,降雨事件不会产生极端影响,但可能会引发谷底砾石沉积物的大规模重新活化。因此,雪岳山冲积扇证明了地貌阈值在引起流域水文表现剧烈变化中的作用。雪岳山冲积扇的形态和沉积学表明,该扇是一个以片洪为主的冲积扇的现代例子,尽管它在冰川到冰缘、热带和温带环境中具有潜在的多样性和丰富性,但在很大程度上被忽视了。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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