A simple method of bias correction for GCM derived streamflow at catchment scale

IF 2.8 3区 环境科学与生态学 Q2 WATER RESOURCES Hydrological Sciences Journal-Journal Des Sciences Hydrologiques Pub Date : 2023-05-25 DOI:10.1080/02626667.2023.2218036
Syed Ataharul, Faisal Anwar, M. Bari
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Abstract

ABSTRACT In this study, a simple polynomial bias correction method is developed to correct the bias in the forecasted streamflow (runoff) derived from a global circulation model (GCM). First, a set of polynomial correction factors was derived comparing observed and GCM-derived runoff for a hindcast period (1961–2000) for each of the 11 selected GCMs. The correction factors are used to correct the GCM-derived streamflow for projected periods (2046–2065 and 2081–2100) for the Intergovernmental Panel on Climate Change scenarios A2 and B1 (CMIP3) for the Murray-Hotham catchment of Western Australia. The assumption is that the correction factors derived for each GCM for the observed period (1961–2000) are valid for the projected periods. Results show the method reduces biases considerably for the projected runoff at a catchment scale. The method developed here uses CMIP3 data but it may be applicable to any GCM data, such as CMIP5/CMIP6.
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流域尺度上GCM衍生流量的一种简单偏差校正方法
摘要:本文提出了一种简单的多项式偏差校正方法,用于校正全球环流模型(GCM)预测径流(径流)的偏差。首先,对每一个选定的11个gcm进行了一组多项式校正因子的推导,比较了一个后发期(1961-2000)的观测径流和gcm径流。校正因子用于校正政府间气候变化专门委员会情景A2和情景B1 (CMIP3)预测期(2046-2065和2081-2100)西澳大利亚Murray-Hotham流域的gcm推导的流量。假设对观测期(1961-2000年)的每个GCM导出的校正因子对预估期有效。结果表明,该方法在流域尺度上显著降低了预测径流的偏差。本文采用的是CMIP3数据,但也适用于CMIP5/CMIP6等任何GCM数据。
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来源期刊
CiteScore
6.60
自引率
11.40%
发文量
144
审稿时长
9.8 months
期刊介绍: Hydrological Sciences Journal is an international journal focused on hydrology and the relationship of water to atmospheric processes and climate. Hydrological Sciences Journal is the official journal of the International Association of Hydrological Sciences (IAHS). Hydrological Sciences Journal aims to provide a forum for original papers and for the exchange of information and views on significant developments in hydrology worldwide on subjects including: Hydrological cycle and processes Surface water Groundwater Water resource systems and management Geographical factors Earth and atmospheric processes Hydrological extremes and their impact Hydrological Sciences Journal offers a variety of formats for paper submission, including original articles, scientific notes, discussions, and rapid communications.
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