Scenario Projecting of Changes in Water Availability for Ecosystems in the Steppe Crimea in the 21st Century

IF 0.6 Q4 ECOLOGY
E. M. Gusev, O. N. Nasonova, E. E. Kovalev
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引用次数: 0

Abstract

Based on the use of the SWAP land sutface model in combination with scenario projections of the dynamics of the daily values of meteorological characteristics in the territory of the Steppe Crimea until the end of the 21st century obtained using climate models with a spatial resolution of 0.5° × 0.5°, simulations of the components of the water balance and the characteristics of water availability for the region’s ecosystems were carried out for 1961–2100. The climatic values of the average annual near-surface air temperature, annual precipitation, evapotranspiration, surface runoff, underground runoff, real transpiration, potential transpiration, water availability for ecosystems and the efficiency of ecosystem use of soil water resources were obtained for the historical (1981–2010) and two projection (2031–2060 and 2071–2100) periods under different global climate change scenarios: SSP1-2.6, SSP3-7.0 and SSP5-8.5. An analysis of changes in these characteristics for the territory of the Steppe Crimea in the 21st century was carried out.

Abstract Image

Abstract Image

21 世纪克里米亚草原生态系统可用水量变化情景预测
摘 要 在使用 SWAP 陆面模型的基础上,结合使用空间分辨率为 0.5°×0.5° 的气候模型对克里米亚草原地区至 21 世纪末的气象特征日动态值进行的情景预测,对 1961-2100 年期间该地区生态系统的水平衡组成部分和可用水特征进行了模拟。在不同的全球气候变化情景下,获得了历史时期(1981-2010 年)和两个预测时期(2031-2060 年和 2071-2100 年)的近地面年平均气温、年降水量、蒸散量、地表径流、地下径流、实际蒸腾量、潜在蒸腾量、生态系统可用水量和生态系统利用土壤水资源效率的气候值:SSP1-2.6、SSP3-7.0 和 SSP5-8.5。对 21 世纪克里米亚草原地区这些特征的变化进行了分析。
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来源期刊
Arid Ecosystems
Arid Ecosystems ECOLOGY-
CiteScore
1.50
自引率
25.00%
发文量
59
期刊介绍: Arid Ecosystems  publishes original scientific research articles on desert and semidesert ecosystems and environment:systematic studies of arid territories: climate changes, water supply of territories, soils as ecological factors of ecosystems state and dynamics in different scales (from local to global);systematic studies of arid ecosystems: composition and structure, diversity, ecology; paleohistory; dynamics under anthropogenic and natural factors impact, including climate changes; studying of bioresources and biodiversity, and development of the mapping methods;arid ecosystems protection: development of the theory and methods of degradation prevention and monitoring; desert ecosystems rehabilitation;problems of desertification: theoretical and practical issues of modern aridization processes under anthropogenic impact and global climate changes.
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