首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Relationships between discharge parameters and cross-sectional channel dimensions of rivers in an active margin influenced by tropical climate: The case of modern fluvial systems in the Indonesian islands
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Relationships between discharge parameters and cross-sectional channel dimensions of rivers in an active margin influenced by tropical climate: The case of modern fluvial systems in the Indonesian islands

机译:热带气候有源边缘河流放电参数与横截面通道尺寸的关系:印度尼西亚群岛现代河流系统的情况

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摘要

The present study investigates (1) the relationships between discharge parameters and bankfull channel width (W-b) based on statistical analyses of hydrological data obtained from 649 sites at rivers on the Indonesian islands of Java, Sumatra, and Kalimantan, and (2) the relationship between depth parameters and W-b using channel cross sections obtained from 86 sites at rivers on these three large islands. These analyses are used to describe geomorphological and hydrological features of fluvial systems developed in a convergent margin under the influence of a low-latitude tropical climate. The relationship between mean discharge (Q(mean)) and W-b shows distinct variation within the Indonesian rivers, and reflects regional variations in annual rainfall of a tropical climate. The relationship between bankfull discharge (Q(b)) and W-b shows only minor variations across the three islands, regardless of bed and bank material types. The Q(b)-W-b relationship in the Indonesian rivers has a pattern similar to that of fluvial systems in Europe and the North American continent, which are influenced by mid- and high-latitude climates. Minor regional variation in the Q(b)-W-b relationship, regardless of the tectonic and climatic settings, suggests that the development of fluvial morphology is controlled mainly by flood-related episodic discharge. In contrast, the empirical equations between maximum channel depth (d(b)) and W-b and between mean channel depth (d(m)) and W-b show distinct regional variations not only within the Indonesian fluvial systems but also in fluvial systems of Europe and the North American continent. These regional variations are thought to reflect the fact that d(b)-W-b and d(m)-W-b relationships are controlled by the tectonic and climatic settings of a drainage basin, and factors such as the interrelationships between precipitation, vegetation, and slope. Consequently, selection of an appropriate d(m)-W-b (or d(b)-W-b) equation combined with an appropriate Q(b)-W-b equation permits us to reconstruct spatial and temporal variations in hydrological features in both modern and ancient fluvial systems more precisely than applying previously proposed equations to fluvial systems formed in active margin and low-latitude climatic settings.
机译:本研究研究了(1)基于从爪哇,苏门答腊群岛印度尼西亚群岛的649个位点获得的水文数据的统计分析以及(2)的关系,基于从649个地点获得的水文数据的统计分析来调查(1)在深度参数和WB之间使用从这三个大岛上的河流的86个位点获得的通道横截面。这些分析用于描述在低纬度热带气候的影响下在会聚边缘开发的河流术和水文特征。平均放电(Q(平均值))和W-B之间的关系在印度尼西亚河流内显示出不同的变化,并反映了热带气候的年降雨量的区域变化。银行排放(Q(b))和w-b之间的关系仅显示了三个岛屿的轻微变化,无论床和银行材料类型如何。印度尼西亚河流中的Q(b)-w-b的关系具有类似于欧洲和北美大陆的河流系统的模式,这些大陆受到中高纬度气候的影响。 Q(B)-W-B的次要区域变异,无论构造和气候环境如何,都表明氟尿形态的发展主要由洪水相关的地区排放来控制。相反,最大沟道深度(D(B))和Wb之间以及平均沟道深度(D(m))和Wb之间的经验方程不仅显示出在印度尼西亚河流系统内,而且在欧洲的河流系统中显示出不同的区域变化北美大陆。这些区域变化被认为反映了D(b)-wb和d(m)-wb的关系由排水池的构造和气候环境控制,以及降水,植被和坡度之间的相互关系等因素。因此,选择与合适的Q(B)-WB方程组合的适当的D(M)-WB(或D(B)-WB)等式允许我们重建现代和古代河流中的水文特征的空间和时间变化更精确地比将先前提出的方程施加到主动边缘和低纬度气候环境中形成的河流系统。

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