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Riverbed dune morphology of the Lowermost Mississippi River -Implications of leeside slope, flow resistance and bedload transport in a large alluvial river

机译:河床沙丘形态的莱斯德利斯皮希河 - 腰坡,抗震和床荷载在大型冲积河中的河流

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摘要

Dunes are critical for understanding riverine sediment transport, deposition, flow resistance and channel flow processes. Although previous studies have examined the riverbed micromorphology of the Lower Mississippi River in the USA, our knowledge of detailed quantification of dune morphology in this and other large alluvial rivers is still limited. It is also not well understood how dunes in a straight channel reach and a meander bend differ in their characteristics, as well as how dune morphology may have been affected by human activities (i.e., river engineering). In this study, we utilized multi-beam bathymetric measurements over four 1.6 & ndash;8.0 km long reaches in the Lowermost Mississippi River (LmMR) to analyze riverbed micromorphologic features. Three of the four reaches were located in the upper part of the LmMR between river kilometers (RK) 474 & ndash;477, 483.6 & ndash;485.2 and 491.7 & ndash; 493.3, and the other reach was located in the lower part, between RK 120 and RK 128. We analyzed a total of 3258 dunes in these river reaches and found that large dunes were dominant in the LmMR. These dunes were characterized by low mean leeside slope angle (10.8 degrees), indicating that flow resistance caused by dunes should be relatively small. When compared with dunes in the straight reaches, dunes in the meander bends were much larger (1.06 m vs. 0.81 m) and had a higher bed roughness (0.91 vs. 0.68), which maybe related to the varied flow velocity. Dune size increased with increasing water depth across the river channel of a straight reach, while it decreased with increasing water depth across the river channel of a meander bend. When compared with the dunes in the lower river reach, the dunes in the upper-river reach were significantly higher in height and shorter in wavelength, and showed much higher bed roughness (1 vs. 0.68), which may be closely related to the greater riverbed slope and grain size of bed sediment occurred in the upper-river reach, as well as a combined effect of the Old River Control Structure (RK 500) and backwater. These findings indicate the strong impact of turbulent flow, slope and sand source on dune formation and riverbed deposition.(c) 2021 Elsevier B.V. All rights reserved.
机译:沙丘是用于理解河流沉积物输送,沉积,流动阻力和通道流动过程的关键。尽管以前的研究已经检查了密西西比河下游在美国的河床微观,我们在这方面和其他大型河流冲积沙丘形态的细致的量化的了解仍然有限。它也不能很好地理解在直通道范围和蜿蜒弯曲的沙丘如何在它们的特性不同,以及如何沙丘形态可能已受人类活动(即河道工程)。在这项研究中,我们利用在四个1.6&ndash的多光束的测深数据; 8.0公里长达到在最低密西西比河(LmMR)分析河床micromorphologic特征。四个到达的三个分别位于河公里之间的LmMR(RK)的上部474&ndash的; 477,483.6&ndash的; 485.2和491.7&ndash的; 493.3,与其他触及位于中下部,RK 120和RK 128之间,我们在这些河段共有3258个沙丘分析,发现大沙丘均在LmMR占主导地位。由低的平均背风面的倾斜角(10.8度)这些沙丘进行表征,表明引起沙丘流阻力应相对较小。当与在直达到沙丘相比,在曲折弯曲沙丘是大得多(1.06米与0.81米)和有较高的床粗糙度(0.91对0.68),这可能涉及到多样流速。沙丘的大小与整个直河段河道增加水深增加,而它与整个蜿蜒弯曲的河道增加水深下降。当与下河段沙丘相比,在上层河段沙丘在高度分别显著较高,在波长较短的,并表现出高得多的床粗糙度(1对0.68),其可以被密切相关的更大河床斜率和床沉积物的粒度发生在上部河段,以及旧河控制结构(RK 500)和回水的组合效果。这些发现表明紊流,坡度和砂源沙丘的形成和沉积河床的强烈冲击。保留(c)中2021爱思唯尔B.V.所有权利。

著录项

  • 来源
    《Geomorphology》 |2021年第15期|107733.1-107733.12|共12页
  • 作者单位

    Louisiana State Univ Sch Renewable Nat Resources Agr Ctr 227 Highland Rd Baton Rouge LA 70803 USA|Tsinghua Univ State Key Lab Hydrosci & Engn Beijing 100084 Peoples R China|East China Normal Univ State Key Lab Estuarine & Coastal Res Shanghai 200062 Peoples R China;

    Louisiana State Univ Sch Renewable Nat Resources Agr Ctr 227 Highland Rd Baton Rouge LA 70803 USA|Louisiana State Univ Coastal Studies Inst Baton Rouge LA 70803 USA;

    Louisiana State Univ Sch Renewable Nat Resources Agr Ctr 227 Highland Rd Baton Rouge LA 70803 USA;

    East China Normal Univ State Key Lab Estuarine & Coastal Res Shanghai 200062 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    River dunes; Fluvial geomorphology; Channel morphology; River bedform; Meandering bend; Multi-beam profiling; Mississippi River;

    机译:河道;河流晶形;通道形态;河床形;蜿蜒弯道;多束剖面;密西西比河;

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