Department of Earth and Atmospheric Sciences, NIT Rourkela, Rourkela, 769008, India.
National Centre for Seismology, Ministry of Earth Sciences, New Delhi, 110003, India.
Nat Commun. 2018 Oct 8;9(1):4140. doi: 10.1038/s41467-018-06371-2.
The interaction between seasonally-induced non-tectonic and tectonic deformation along the Himalayan plate boundary remains debated. Here, we propose that tectonic deformation along this plate boundary can be significantly influenced by the deformation induced by the non-tectonic hydrological loading cycles. We explore seasonal mass oscillations by continental water storage in Southeast Asia and Himalayan arc region using continuous Global Positioning System measurements and satellite data from the Gravity Recovery and Climate Experiment. We suggest that the substantially higher transient displacements above the base of the seismogenic zone indicate a role of changes in aseismic slip rate on the deep megathrust that may be controlled by seasonal hydrological loading. We invoke modulation of aseismic slip on the megathrust down-dip of the seismogenic zone due to a fault resonance process induced by the seasonal stress changes. This process modulates mid-crustal ramp associated micro-seismicity and influences the timing of Central Himalayan earthquakes.
沿喜马拉雅板块边界的季节性非构造和构造变形之间的相互作用仍存在争议。在这里,我们提出,沿该板块边界的构造变形可能会受到非构造水文负荷循环引起的变形的显著影响。我们利用连续的全球定位系统测量和重力恢复和气候实验的卫星数据,探索了东南亚和喜马拉雅弧形地区的季节性质量振荡。我们认为,震源区下方的瞬态位移明显升高,表明地震不连续滑移率的变化可能在深部主震上起作用,这种变化可能受季节性水文负荷控制。我们援引由于季节性应力变化引起的断层共振过程,导致震源区下方深部主震上的非地震滑移调制。这个过程调节了与中地壳斜坡相关的微震活动,并影响了喜马拉雅中部地震的时间。