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Increasing trends in regional heatwaves 期刊论文
NATURE COMMUNICATIONS, 2020, 11 (1)
作者:  Perkins-Kirkpatrick, S. E.;  Lewis, S. C.
收藏  |  浏览/下载:2/0  |  提交时间:2020/07/06
Increasing Escape of Oxygen From Oceans Under Climate Change 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2020, 47 (11)
作者:  Li, Changyu;  Huang, Jianping;  Ding, Lei;  Liu, Xiaoyue;  Yu, Haipeng;  Huang, Jiping
收藏  |  浏览/下载:6/0  |  提交时间:2020/05/13
Impact of Cloud Physics on the Greenland Ice Sheet Near-Surface Climate: A Study With the Community Atmosphere Model 期刊论文
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2020, 125 (7)
作者:  Lenaerts, Jan T. M.;  Gettelman, Andrew;  Van Tricht, Kristof;  van Kampenhout, Leo;  Miller, Nathaniel B.
收藏  |  浏览/下载:9/0  |  提交时间:2020/07/02
Vulnerability and resistance in the spatial heterogeneity of soil microbial communities under resource additions 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2020, 117 (13) : 7263-7270
作者:  Gravuer, Kelly;  Eskelinen, Anu;  Winbourne, Joy B.;  Harrison, Susan P.
收藏  |  浏览/下载:14/0  |  提交时间:2020/05/13
grasslands  homogenization  climate change  precipitation  eutrophication  
The Interplay of Recent Vegetation and Sea Ice Dynamics-Results From a Regional Earth System Model Over the Arctic 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2020, 47 (6)
作者:  Zhang, W.;  Doscher, R.;  Koenigk, T.;  Miller, P. A.;  Jansson, C.;  Samuelsson, P.;  Wu, M.;  Smith, B.
收藏  |  浏览/下载:15/0  |  提交时间:2020/07/02
Sea ice  Vegetation feedback  Arctic  Climatic warming  Regional climate modelling  Coupled  
CO2 mineralization and utilization by alkaline solid wastes for potential carbon reduction 期刊论文
NATURE SUSTAINABILITY, 2020, 3 (5) : 399-405
作者:  Pan, Shu-Yuan;  Chen, Yi-Hung;  Fan, Liang-Shih;  Kim, Hyunook;  Gao, Xiang;  Ling, Tung-Chai;  Chiang, Pen-Chi;  Pei, Si-Lu;  Gu, Guowei
收藏  |  浏览/下载:11/0  |  提交时间:2020/05/13
Greenspace, bluespace, and their interactive influence on urban thermal environments 期刊论文
ENVIRONMENTAL RESEARCH LETTERS, 2020, 15 (3)
作者:  Hu, Leiqiu;  Li, Qi
收藏  |  浏览/下载:6/0  |  提交时间:2020/07/02
urban thermal environment  green space  blue space  interactive effect  
Deep glacial troughs and stabilizing ridges unveiled beneath the margins of the Antarctic ice sheet 期刊论文
NATURE GEOSCIENCE, 2020, 13 (2) : 132-+
作者:  Morlighem, Mathieu;  Rignot, Eric;  Binder, Tobias;  Blankenship, Donald;  Drews, Reinhard;  Eagles, Graeme;  Eisen, Olaf;  Ferraccioli, Fausto;  Forsberg, Rene;  Fretwell, Peter;  Goel, Vikram;  Greenbaum, Jamin S.;  Gudmundsson, Hilmar;  Guo, Jingxue;  Helm, Veit;  Hofstede, Coen;  Howat, Ian;  Humbert, Angelika;  Jokat, Wilfried;  Karlsson, Nanna B.;  Lee, Won Sang;  Matsuoka, Kenichi;  Millan, Romain;  Mouginot, Jeremie;  Paden, John;  Pattyn, Frank;  Roberts, Jason;  Rosier, Sebastian;  Ruppel, Antonia;  Seroussi, Helene;  Smith, Emma C.;  Steinhage, Daniel;  Sun, Bo;  van den Broeke, Michiel R.;  van Ommen, Tas D.;  van Wessem, Melchior;  Young, Duncan A.
收藏  |  浏览/下载:9/0  |  提交时间:2020/07/02
Global-scale human impact on delta morphology has led to net land area gain 期刊论文
NATURE, 2020, 577 (7791) : 514-+
作者:  Nienhuis, J. H.;  Ashton, A. D.;  Edmonds, D. A.;  Hoitink, A. J. F.;  Kettner, A. J.;  Rowland, J. C.;  Tornqvist, T. E.
收藏  |  浏览/下载:7/0  |  提交时间:2020/05/13

River deltas rank among the most economically and ecologically valuable environments on Earth. Even in the absence of sea-level rise, deltas are increasingly vulnerable to coastal hazards as declining sediment supply and climate change alter their sediment budget, affecting delta morphology and possibly leading to erosion(1-3). However, the relationship between deltaic sediment budgets, oceanographic forces of waves and tides, and delta morphology has remained poorly quantified. Here we show how the morphology of about 11,000 coastal deltas worldwide, ranging from small bayhead deltas to mega-deltas, has been affected by river damming and deforestation. We introduce a model that shows that present-day delta morphology varies across a continuum between wave (about 80 per cent), tide (around 10 per cent) and river (about 10 per cent) dominance, but that most large deltas are tide- and river-dominated. Over the past 30 years, despite sea-level rise, deltas globally have experienced a net land gain of 54 +/- 12 square kilometres per year (2 standard deviations), with the largest 1 per cent of deltas being responsible for 30 per cent of all net land area gains. Humans are a considerable driver of these net land gains-25 per cent of delta growth can be attributed to deforestation-induced increases in fluvial sediment supply. Yet for nearly 1,000 deltas, river damming(4) has resulted in a severe (more than 50 per cent) reduction in anthropogenic sediment flux, forcing a collective loss of 12 +/- 3.5 square kilometres per year (2 standard deviations) of deltaic land. Not all deltas lose land in response to river damming: deltas transitioning towards tide dominance are currently gaining land, probably through channel infilling. With expected accelerated sea-level rise(5), however, recent land gains are unlikely to be sustained throughout the twenty-first century. Understanding the redistribution of sediments by waves and tides will be critical for successfully predicting human-driven change to deltas, both locally and globally.


A global study of river deltas shows a net increase in delta area by about 54 km(2) yr(-1) over the past 30 years, in part due to deforestation-induced sediment delivery increase.


  
Data Assimilation for Climate Research: Model Parameter Estimation of Large-Scale Condensation Scheme 期刊论文
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2020, 125 (1)
作者:  Kotsuki, Shunji;  Sato, Yousuke;  Miyoshi, Takemasa
收藏  |  浏览/下载:8/0  |  提交时间:2020/07/02