埃克斯纳定律对床形尺度沉积物非局部迁移的概括

IF 5.9 1区 地球科学 Q1 ENGINEERING, CIVIL Journal of Hydrology Pub Date : 2024-10-26 DOI:10.1016/j.jhydrol.2024.132236
ZhiPeng Li , Zhenyang Peng , Mehrdad Kiani-Oshtorjani , Mengyang Liu , Fuxin Zhang , Yilin Chen , Yantao Zhu
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引用次数: 0

摘要

最近的研究强调了非局部过程对理解地貌形态动力学和沉积物跨地貌迁移的重要意义。沉积物输运中的非局部过程指的是特定点附近以外的地貌特性对沉积物通量的影响。现有的非局部模型采用分数算子,旨在利用全局卷积算子捕捉全局相关的非局部性。然而,这些模型往往忽略了区域尺度上出现的非局部现象,由于对这些尺度上的沉积物输运过程表述不充分,可能会导致严重的误差。本研究利用周动态微分算子(PDDO),提出了一种新颖、更全面的非局部埃克斯纳定律数学表达式。所提出的区域非局部模型在 PDDO 框架内利用预先定义的权重函数和相互作用域,纳入了非局部沉积物输运过程。新的区域非局部模型通过整合沉积物输运中的短程和长程相互作用,有效地缩小了局部模型和全局模型之间的差距。应用结果表明,与局部和全局模型相比,区域非局部模型在描述床形尺度剖面方面的准确性明显提高。
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A generalization of the Exner law for sediment nonlocal transport at bedform scale
Recent researches have highlighted the significance of nonlocal processes in understanding the morphodynamics and sediment transport across landscapes. Nonlocal processes in sediment transport refer to the influence of landscape properties beyond the immediate vicinity of a given point on the sediment flux. Existing nonlocal models, employing fractional operators, aim to capture global correlated nonlocality using a global convolution operator. Nevertheless, such models tend to disregard nonlocal phenomena occurring at regional scales, potentially resulting in substantial inaccuracies due to an inadequate representation of sediment transport processes at these scales. This study presents a novel and more comprehensive mathematical formulation of the nonlocal Exner law, leveraging the peridynamic differential operator (PDDO). The proposed regional nonlocal model incorporates nonlocal sediment transport processes by utilizing a pre-defined weight function and interaction domain within the framework of the PDDO. The novel regional nonlocal model effectively bridges the gap between local and global models by integrating both short-range and long-range interactions in sediment transport. Application reveals that the regional nonlocal model provides a significantly enhanced accuracy in depicting profiles at the bedform scale compared to the local and the global models.
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来源期刊
Journal of Hydrology
Journal of Hydrology 地学-地球科学综合
CiteScore
11.00
自引率
12.50%
发文量
1309
审稿时长
7.5 months
期刊介绍: The Journal of Hydrology publishes original research papers and comprehensive reviews in all the subfields of the hydrological sciences including water based management and policy issues that impact on economics and society. These comprise, but are not limited to the physical, chemical, biogeochemical, stochastic and systems aspects of surface and groundwater hydrology, hydrometeorology and hydrogeology. Relevant topics incorporating the insights and methodologies of disciplines such as climatology, water resource systems, hydraulics, agrohydrology, geomorphology, soil science, instrumentation and remote sensing, civil and environmental engineering are included. Social science perspectives on hydrological problems such as resource and ecological economics, environmental sociology, psychology and behavioural science, management and policy analysis are also invited. Multi-and interdisciplinary analyses of hydrological problems are within scope. The science published in the Journal of Hydrology is relevant to catchment scales rather than exclusively to a local scale or site.
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