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Bedload transport: a walk between randomness and determinism. Part 2. Challenges and prospects

机译:载重运输:在随机性和确定性之间走一走。第2部分。挑战与前景

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By the late nineteenth century, the scientific study of bedload transport had emerged as an offshoot of hydraulics and geomorphology. Since then, computing bedload transport rates has attracted considerable attention, but whereas other environmental sciences have seen their predictive capacities grow over time, particularly thanks to increased computing power, engineers and scientists are unable to predict bedload transport rates to within better than one order of magnitude. Why have we failed to improve our predictive capacity to any significant degree? A commonly shared view is that the study of bedload transport has more in common with the earth sciences than hydraulics: bedload transport rates depend on many processes that vary nonlinearly, involve various time and space scales, and are interrelated to each other. All this makes it difficult to view bedload as merely particle transport in a turbulent flow - something which can be studied in the laboratory in isolation from the natural environment. Over the last two decades, more emphasis has been put on the noisy dynamics characterizing bedload transport. This Vision Paper makes a strong case for recognizing noise (e.g. bedload transport rate fluctuations) as an intrinsic feature of bedload transport. Improving our predictive capacities requires a better understanding of the origins and nature of noise in bedload transport. This paper also reviews some of the challenges that need to be addressed in current research and teaching.
机译:到19世纪后期,水力运输和地貌学的分支已经涌现出了对床载运输的科学研究。从那时起,计算床载运输量引起了极大的关注,但是尽管其他环境科学已经看到其预测能力随着时间的推移而增长,特别是由于计算能力的提高,工程师和科学家无法预测床载运输量的变化幅度不超过一个数量级。大小。为什么我们没有在很大程度上提高我们的预测能力?一个普遍的观点是,与地球科学相比,对水力运输的研究与水科学的共同点更多:水力运输的速度取决于许多非线性变化,涉及不同时间和空间尺度,相互关联的过程。所有这些使得很难将床载量仅仅看作是湍流中的颗粒运输-这可以在实验室中与自然环境隔离地进行研究。在过去的二十年中,更多的重点放在表征床载运输的嘈杂动力学上。该愿景文件为将噪声(例如床载运输速度波动)识别为床载运输的固有特征提供了有力的依据。要提高我们的预测能力,需要更好地了解床架运输中噪声的起源和性质。本文还回顾了当前研究和教学中需要解决的一些挑战。

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