日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Limitation of super-resolution machine learning approach to precipitation downscaling

超分辨率机器学习方法在降水降尺度方面的局限性

Reddy, P Jyoteeshkumar; Matear, Richard; Taylor, John; Thatcher, Marcus

Marine nitrogen fixers mediate a low latitude pathway for atmospheric CO(2) drawdown

海洋固氮菌介导了大气二氧化碳吸收的低纬度途径

Buchanan, Pearse J; Chase, Zanna; Matear, Richard J; Phipps, Steven J; Bindoff, Nathaniel L

Future recovery of baleen whales is imperiled by climate change

须鲸的未来恢复受到气候变化的威胁

Tulloch, Vivitskaia J D; Plagányi, Éva E; Brown, Christopher; Richardson, Anthony J; Matear, Richard

Southern Hemisphere westerlies as a driver of the early deglacial atmospheric CO(2) rise

南半球西风带是早期冰消期大气二氧化碳浓度上升的驱动因素

Menviel, L; Spence, P; Yu, J; Chamberlain, M A; Matear, R J; Meissner, K J; England, M H

The exposure of the Great Barrier Reef to ocean acidification

大堡礁暴露于海洋酸化之中

Mongin, Mathieu; Baird, Mark E; Tilbrook, Bronte; Matear, Richard J; Lenton, Andrew; Herzfeld, Mike; Wild-Allen, Karen; Skerratt, Jenny; Margvelashvili, Nugzar; Robson, Barbara J; Duarte, Carlos M; Gustafsson, Malin S M; Ralph, Peter J; Steven, Andrew D L

Anticyclonic eddies are more productive than cyclonic eddies in subtropical gyres because of winter mixing

由于冬季混合作用,反气旋涡旋在亚热带环流中比气旋涡旋更具生产力。

Dufois, François; Hardman-Mountford, Nick J; Greenwood, Jim; Richardson, Anthony J; Feng, Ming; Matear, Richard J

Southern Ocean acidification: a tipping point at 450-ppm atmospheric CO2

南大洋酸化:大气二氧化碳浓度达到 450 ppm 时达到临界点

McNeil, Ben I; Matear, Richard J

Welcome to Carbon Balance and Management

欢迎来到碳平衡与管理

McNeil, Ben I; Matear, Richard J; Dickinson, Robert