Oelsmann Julius, Marcos Marta, Passaro Marcello, Sanchez Laura, Dettmering Denise, Dangendorf Sönke, Seitz Florian
Deutsches Geodätisches Forschungsinstitut, Technische Universität München (DGFI-TUM), Munich, Germany.
IMEDEA, (UIB-CSIC), Esporles, Spain.
Nat Geosci. 2024;17(2):137-144. doi: 10.1038/s41561-023-01357-2. Epub 2024 Feb 12.
Vertical land movements can cause regional relative sea-level changes to differ substantially from climate-driven absolute sea-level changes. Whereas absolute sea level has been accurately monitored by satellite altimetry since 1992, there are limited observations of vertical land motion. Vertical land motion is generally modelled as a linear process, despite some evidence of nonlinear motion associated with tectonic activity, changes in surface loading or groundwater extraction. As a result, the temporal evolution of vertical land motion, and its contribution to projected sea-level rise and its uncertainty, remains unresolved. Here we generate a probabilistic vertical land motion reconstruction from 1995 to 2020 to determine the impact of regional-scale and nonlinear vertical land motion on relative sea-level projections up to 2150. We show that regional variations in projected coastal sea-level changes are equally influenced by vertical land motion and climate-driven processes, with vertical land motion driving relative sea-level changes of up to 50 cm by 2150. Accounting for nonlinear vertical land motion increases the uncertainty in projections by up to 1 m on a regional scale. Our results highlight the uncertainty in future coastal impacts and demonstrate the importance of including nonlinear vertical land motions in sea-level change projections.
垂直陆地运动可导致区域相对海平面变化与气候驱动的绝对海平面变化有很大差异。自1992年以来,卫星测高法已精确监测绝对海平面,但垂直陆地运动的观测数据有限。尽管有一些证据表明垂直陆地运动与构造活动、地表负荷变化或地下水开采有关的非线性运动,但垂直陆地运动通常被模拟为线性过程。因此,垂直陆地运动的时间演变及其对预计海平面上升的贡献及其不确定性仍未得到解决。在这里,我们生成了1995年至2020年的概率性垂直陆地运动重建,以确定区域尺度和非线性垂直陆地运动对2150年前相对海平面预测的影响。我们表明,预计沿海海平面变化的区域差异同样受到垂直陆地运动和气候驱动过程的影响,到2150年,垂直陆地运动导致的相对海平面变化高达50厘米。考虑非线性垂直陆地运动会使区域尺度预测的不确定性增加高达1米。我们的结果突出了未来沿海影响的不确定性,并证明了在海平面变化预测中纳入非线性垂直陆地运动的重要性。