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Global climate change and intensification of coastal ocean upwelling.全球气候变化与沿海上升流的增强。
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Grassland responses to global environmental changes suppressed by elevated CO2.二氧化碳浓度升高抑制了草原对全球环境变化的响应。
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Nonlinear grassland responses to past and future atmospheric CO(2).草原对过去和未来大气二氧化碳的非线性响应
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二氧化碳引起的土地覆盖反馈会改变近岸上升流状态吗?

Could CO(2)-induced land-cover feedbacks alter near-shore upwelling regimes?

作者信息

Diffenbaugh Noah S, Snyder Mark A, Sloan Lisa C

机构信息

Department of Earth Sciences, University of California, 1156 High Street, Santa Cruz, CA 95064, USA.

出版信息

Proc Natl Acad Sci U S A. 2004 Jan 6;101(1):27-32. doi: 10.1073/pnas.0305746101. Epub 2003 Dec 22.

DOI:10.1073/pnas.0305746101
PMID:14691256
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC314132/
Abstract

The response of marine and terrestrial environments to global changes in atmospheric carbon dioxide (CO(2)) concentrations will likely be governed by both responses to direct environmental forcing and responses to Earth-system feedbacks induced by that forcing. It has been proposed that anthropogenic greenhouse forcing will intensify coastal upwelling in eastern boundary current regions [Bakun, A. (1990) Science 247, 198-201]. Focusing on the California Current, we show that biophysical land-cover-atmosphere feedbacks induced by CO(2) radiative forcing enhance the radiative effects of CO(2) on land-sea thermal contrast, resulting in changes in eastern boundary current total seasonal upwelling and upwelling seasonality. Specifically, relative to CO(2) radiative forcing, land-cover-atmosphere feedbacks lead to a stronger increase in peak- and late-season near-shore upwelling in the northern limb of the California Current and a stronger decrease in peak- and late-season near-shore upwelling in the southern limb. Such changes will impact both marine and terrestrial communities [Bakun, A. (1990) Science 247, 198-201; Soto, C. G. (2001) Rev. Fish Biol. Fish. 11, 181-195; and Agostini, V. N. & Bakun, A. (2002) Fish. Oceanogr. 11, 129-142], and these and other Earth-system feedbacks should be expected to play a substantial role in shaping the response of eastern boundary current regions to CO(2) radiative forcing.

摘要

海洋和陆地环境对大气二氧化碳(CO₂)浓度全球变化的响应,可能既受对直接环境强迫的响应支配,也受该强迫引发的地球系统反馈的响应支配。有人提出,人为温室强迫将加剧东部边界流区域的沿岸上升流[巴昆,A.(1990年)《科学》247卷,第198 - 201页]。以加利福尼亚洋流为例,我们表明,由CO₂辐射强迫引起的生物物理陆地覆盖 - 大气反馈增强了CO₂对陆海热对比度的辐射效应,导致东部边界流总季节性上升流及上升流季节性发生变化。具体而言相对于CO₂辐射强迫,陆地覆盖 - 大气反馈导致加利福尼亚洋流北段近岸上升流在旺季和季末的增幅更大,而南段近岸上升流在旺季和季末的降幅更大。这种变化将影响海洋和陆地群落[巴昆,A.(1990年)《科学》247卷,第198 - 201页;索托,C.G.(2001年)《鱼类生物学与渔业评论》11卷,第181 - 195页;以及阿戈斯蒂尼,V.N.和巴昆,A.(2002年)《渔业海洋学》11卷,第129 - 142页],并且这些以及其他地球系统反馈应该会在塑造东部边界流区域对CO₂辐射强迫的响应中发挥重要作用。