Modelling the climate change impact on the largest White Sea estuarine areas

E. Panchenko, A. Alabyan, I. Krylenko, S. Lebedeva
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Abstract

Possible sea level rise and changes in hydrological regime of rivers are the major threats to estuarine systems. The sensibility of hydrodynamic regime of the Northern Dvina delta and the Onega estuary under various scenarios of climate change has been investigated. Hydrodynamic models HEC-RAS (USA, US Army Corps of Engineers Hydrologic Engineering Center) and STREAM_2D (Russia, authors V.Belikov et.al.) were used for analysis of estuarine flow regime (variations of water levels, discharges and flow velocities throughout tidal cycles). Input runoff changes were simulated for different climate scenarios using ECOMAG model (Russia, author Yu.Motovilov) based on data of global climate models (GSM) of CMIP5 project for the White Sea region.
模拟气候变化对最大的白海河口地区的影响
可能出现的海平面上升和河流水文状况的变化是对河口系统的主要威胁。研究了不同气候变化情景下北德维纳三角洲和奥涅加河口水动力变化的敏感性。水动力模型HEC-RAS(美国,美国陆军工程兵团水文工程中心)和STREAM_2D(俄罗斯,作者V.Belikov等)用于分析河口流态(整个潮汐周期中水位、流量和流速的变化)。以白海地区CMIP5项目全球气候模式(GSM)数据为基础,利用俄罗斯的ECOMAG模式(Yu.Motovilov)模拟了不同气候情景下的输入径流变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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