arrow
返回

Multi-model approach in a variable spatial framework for streamflow simulation

delete2024-04-04
delete3
delete
OA
AI
C
Cyril Thébault *
C
Claude Michel
V
Vazken Andréassian
G
Guillaume Thirel
S
Sébastien Legrand
O
Olivier Delaigue
DOI:10.5194/hess-28-1539-2024delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Accounting for the variability of hydrological processes and climate conditions between catchments and within catchments remains a challenge in rainfall-runoff modelling. Among the many approaches developed over the past decades, multi-model approaches provide a way to consider the uncertainty linked to the choice of model structure and its parameter estimates. Semi-distributed approaches make it possible to account explicitly for spatial variability while maintaining a limited level of complexity. However, these two approaches have rarely been used together. Such a combination would allow us to take advantage of both methods. The aim of this work is to answer the following question: what is the possible contribution of a multi-model approach within a variable spatial framework compared to lumped single models for streamflow simulation?To this end, a set of 121 catchments with limited anthropogenic influence in France was assembled, with precipitation, potential evapotranspiration, and streamflow data at the hourly time step over the period 1998-2018. The semi-distribution set-up was kept simple by considering a single downstream catchment defined by an outlet and one or more upstream sub-catchments. The multi-model approach was implemented with 13 rainfall-runoff model structures, three objective functions, and two spatial frameworks, for a total of 78 distinct modelling options. A simple averaging method was used to combine the various simulated streamflow at the outlet of the catchments and sub-catchments. The lumped model with the highest efficiency score over the whole catchment set was taken as the benchmark for model evaluation.Overall, the semi-distributed multi-model approach yields better performance than the different lumped models considered individually. The gain is mainly brought about by the multi-model set-up, with the spatial framework providing a benefit on a more occasional basis. These results, based on a large catchment set, evince the benefits of using a multi-model approach in a variable spatial framework to simulate streamflow.
Keyword:
MODEL PERFORMANCE
HYDROLOGICAL SIMULATION
FLOOD
UNCERTAINTY
PARAMETERS
FRANCE
COMBINATION
REANALYSIS
EVENTS

期刊

Hydrology and Earth System Sciences 封面图
Hydrology and Earth System Sciences
IF:
5.8
论文数:
6.0K
被引数:
2.8W

机构

I
INRAE
学者数:
4.3W
论文数: 3.1W
被引数: 105
U
Universite Paris Saclay
学者数:
7.3W
论文数: 5.3W
被引数: 540
引用论文

引用论文

Characterization, production and optimization of lipopeptide biosurfactant by new strain Bacillus pumilus 2IR isolated from an Iranian oil field
err2016-09-01
err0
PREAI
errTayebeh Fooladi; Nasrin Moazami; Peyman Abdeshahian; Abudukeremu Kadier; Hossein Ghojavand; Wan Mohtar Wan Yusoff; Aidil Abdul Hamid
err分享
err收藏
err分享
err收藏
SARS-CoV-2 Omicron variant causes brain infection with lymphoid depletion in a mouse COVID-19 model
err2023-05-09
err0
errOAAI
errNa Yun Lee; Youn Woo Lee; Seung-Min Hong; Dain On; Gyeong Min Yoon; See-He An; Ki Taek Nam; Jun-Young Seo; Jeon-Soo Shin; Yang-Kyu Choi; Seung Hyun Oh; Jun-Won Yun; Ho Young Lee; Kang-Seuk Choi; Je Kyung Seong; Jun Won Park
err分享
err收藏
Methods for combining the outputs of different rainfall-runoff models
err1997-10-01
err244
PREAI
errShamseldin, AY; OConnor, KM; Liang, GC
err分享
err收藏
Some Physicochemical Properties of Amylose‐free Potato Starch
err2006-10-26
err0
PREAI
errRichard G. F. Visser; Luc C. J. M. Suurs; P. A. M. Steeneken; Evert Jacobsen
err分享
err收藏
学者 查看更多内容