気候信号に対する重要なフィルターとしての河川の自己組織化
Colin B Phillips1, Douglas J Jerolmack2
1St. Anthony Falls Laboratory, University of Minnesota, Minneapolis, MN 55414, USA.
まとめ
河川の運河は 沈殿物を運ぶために 臨界に近い状態に自己組織化し 極端な降雨信号をフィルターします この普遍的なプロセスは,気候,地質学,岩床の影響に関係なく,風景を形作ります.
科学分野:
- 地形学
- 水学
- 堆積物学
背景:
- 降雨の変動は河川浸食や堆積物輸送によって 景観の進化を促すと考えられています
- 降雨と河川の動態の関係を理解するには,洪水-沈殿物の輸送フィードバックの知識が必要です.
研究 の 目的:
- 川の運河の幾何学,流れ,沈殿物の輸送能力との関係を調査する.
- 川系が降雨量の変化にどのように適応し,その影響が景観の進化に及ぼすかを決定する.
主な方法:
- アメリカ合衆国にある186の小川の運河の幾何学と流れデータを分析した.
- 洪水時の流体切断速度の分布を調べた.
主要な成果:
- 川の運河は,洪水の切断速度が沈殿物輸送の臨界値をわずかに超える状態に普遍的に適応します.
- この自己組織化プロセスは 気候,地質学,岩床の制御とは無関係です
- 切断速度の普遍的な分布は,川の運河が排水に及ぼす極端な降雨の影響をフィルターすることを示しています.
結論:
- 流域の自己組織化は,堆積物輸送の臨界状態に近い状態で,景観の進化における支配的要因である.
- このプロセスは,極端な降雨が景観の動態に与える影響を緩衝し,普遍的な地形反応につながります.
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