Evaluation of approaches to estimate discharge indices based on mean sediment load for suspended sediment transport in South Indian catchments

IF 2.2 Q3 WATER RESOURCES
S. Maheshwari, S. Chavan
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引用次数: 4

Abstract

ABSTRACT Discharge indices based on mean sediment load such as fraction-load (f-load) discharge and functional-equivalent discharge represent long-term sediment transfer through river networks. These discharge indices can be used as design flows for the restoration of river channels and in geomorphic and eco-hydrologic studies. In this paper, lognormal distribution-based and Gamma distribution-based Magnitude-Frequency Analysis (MFA) approaches are evaluated to determine reliable estimates of discharge indices for suspended sediment transport in South Indian catchments. The discharge indices are estimated by considering (i) total suspended sediment load and (ii) fine, medium, and coarse suspended sediment loads, separately, as various fractions of suspended sediments have different hydraulic characteristics, transport behaviour, and effect on the ecological system. Results indicate that the lognormal distribution being heavy-tailed tends to assign considerable frequency densities to higher discharges which results in unreliable and magnified estimates of mean sediment load and subsequent discharge indices for most of the catchments. Overall, the Gamma distribution-based MFA approach is found to yield reliable estimates of the f-load discharge and functional-equivalent discharge in comparison to the lognormal distribution-based MFA approach.
基于南印度流域悬沙运输平均泥沙负荷估算流量指数的方法评价
摘要基于平均输沙量的流量指数,如分数负荷(f-load)流量和功能当量流量,代表了通过河网的长期输沙。这些流量指数可作为河道恢复以及地貌和生态水文研究的设计流量。本文对基于对数正态分布和基于伽玛分布的幅频分析(MFA)方法进行了评估,以确定南印度集水区悬移质输运流量指数的可靠估计值。流量指数是通过分别考虑(i)总悬浮泥沙量和(ii)细、中、粗悬浮泥沙量来估计的,因为悬浮泥沙的不同部分具有不同的水力特性、运输行为和对生态系统的影响。结果表明,重尾对数正态分布倾向于为较高的流量分配相当大的频率密度,这导致对大多数集水区的平均输沙量和随后的流量指数的估计不可靠和放大。总体而言,与基于对数正态分布的MFA方法相比,基于伽马分布的MFA方法可以可靠地估计f载荷放电和功能等效放电。
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来源期刊
CiteScore
6.00
自引率
4.00%
发文量
48
期刊介绍: include, but are not limited to new developments or applications in the following areas: AREAS OF INTEREST - integrated water resources management - watershed land use planning and management - spatial planning and management of floodplains - flood forecasting and flood risk management - drought forecasting and drought management - floodplain, river and estuarine restoration - climate change impact prediction and planning of remedial measures - management of mountain rivers - water quality management including non point source pollution - operation strategies for engineered river systems - maintenance strategies for river systems and for structures - project-affected-people and stakeholder participation - conservation of natural and cultural heritage
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