Cazenave Anny, Pfeffer Julia, Mandea Mioara, Dehant Véronique, Gillet Nicolas
Université Toulouse III, LEGOS (CNES/CNRS/IRD/UT3), 18 Avenue Edouard Belin, 31401 Toulouse, Cedex 9, France.
Magellium, 1 Rue Ariane, 31520 Ramonville-Saint-Agne, France.
Surv Geophys. 2025;46(3):503-528. doi: 10.1007/s10712-024-09874-4. Epub 2025 Feb 10.
A 6-year cycle has long been recognized to influence the Earth's rotation, the internal magnetic field and motions in the fluid Earth's core. Recent observations have revealed that a 6-year cycle also affects the angular momentum of the atmosphere and several climatic parameters, including global mean sea level rise, precipitation, land hydrology, Arctic surface temperature, ocean heat content and natural climate modes. In this review, we first present observational evidences supporting the existence of a 6-year cycle in the Earth system, from its deep interior to the climate system. We then explore potential links between the Earth's core, mantle and atmosphere that might explain the observations, and investigate various mechanisms that could drive the observed 6-year oscillation throughout the whole Earth system.
长期以来,人们一直认为6年周期会影响地球自转、内部磁场以及地球液态核心的运动。最近的观测表明,6年周期还会影响大气角动量和几个气候参数,包括全球平均海平面上升、降水量、陆地水文、北极地表温度、海洋热含量和自然气候模式。在这篇综述中,我们首先展示支持地球系统中存在6年周期的观测证据,从其深部内部到气候系统。然后,我们探索地球核心、地幔和大气之间可能解释这些观测结果的潜在联系,并研究可能在整个地球系统中驱动观测到的6年振荡的各种机制。