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首页> 外文期刊>Journal of Hydrology >Explanation of climate and human impacts on sediment discharge change in Darwinian hydrology: Derivation of a differential equation
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Explanation of climate and human impacts on sediment discharge change in Darwinian hydrology: Derivation of a differential equation

机译:达尔文水文沉积物排放变化的气候和人体影响解释:辐射方程的推导

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摘要

The assessment for impacts of climate variability and human activities on suspended sediment yield (SSY) change has long been a question of great interest. However, the sediment generation processes are sophisticated with high nonlinearity and great uncertainty, which give rise to extreme complexity for SSY change assessment in Newtonian approach. Consequently, few approaches can be simply but widely applied to decompose impacts of climatic variability and human activities on SSY change. Thus, it is an urgent need to develop advanced methods that are simple and robust. Since that the Newtonian approach is hardly achievable due to limitation of either observations or knowledge of mechanisms, there have been repeated calls to capture the hydrologic system in Darwinian approach for hydrological change prediction or explanation. As streamflow is the carrier of suspended sediment, SSY change are thus documented in changes of sediment concentrated flow and suspended sediment concentration - water discharge (C-Q) relationships. By deduced corollaries, a differential equation of sediment discharge change was derived to explicitly decompose impacts of climate variability and human activities in Darwinian hydrology. Besides, a new form of sediment rating curves was proposed and curved as C-Q relationships and probability distribution of sediment concentrated flow. River sediment flux can be revealed by this representation, which simply elucidates mechanism of SSY generation covering a range of time scales from finer than rainfall-event to long term. By the new sediment rating curves, the differential equation was partly solved using a segmentation algorithm proposed and validated in this paper, and then was submitted to water balance framework expressed by Budyko-type equation. Thus, for catchment management, hydrologists can obtain explicit explanation of how climate variation and human activities propagate through landscape and result in sediment discharge change. The diffe
机译:气候变异性和人类活动对悬浮沉积物(SSY)变化的影响的评估长期以来一直是一个极其兴趣的问题。然而,沉积物发电过程具有高度的非线性和巨大的不确定性,这引起了牛顿方法的SSY变化评估的极端复杂性。因此,很少有方法可以简单地,但被广泛应用于分解气候变异性和人类活动对SSY变化的影响。因此,迫切需要开发简单且坚固的先进方法。由于牛顿的方法几乎无法实现,因为由于任何观察或机制知识的限制,已经反复呼吁捕获达尔文人方法中的水文改变预测或解释。由于流出是悬浮沉积物的载体,因此在沉积物浓缩流动和悬浮沉积物浓度 - 排水(C-Q)关系的变化中,SSY变化记录了SSY变化。通过推导的推动,得出了沉积物排放变化的微分方程,以明确地分解达尔文水文中气候变异性和人类活动的影响。此外,提出了一种新的沉积物曲线形式,并作为C-Q关系和沉积物集中流动的概率分布弯曲。这种代表可以揭示河流沉积物,这简单地阐明了覆盖了覆盖了一系列时间尺度的SSY发电的机制,从更精细地到长期。通过新的沉积物曲线,使用本文提出和验证的分段算法部分解决了微分方程,然后提交给Budyko型方程表示的水平衡框架。因此,对于集水科管理,水文学家可以明确解释气候变化和人类活动如何通过景观传播并导致泥沙排放变化。 diffe

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