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Evidence for deep magma injection beneath Lake Tahoe, Nevada-California

机译:内华达州加利福尼亚塔霍湖下方深层岩浆注入的证据

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摘要

A deep earthquake swarm in late 2003 at Lake Tahoe, California (Richter magnitude <2.2; depth of 29 to 33 kilometers), was coeval with a transient displacement of 6 millimeters horizontally outward from the swarm and 8 millimeters upward measured at global positioning system station Slide Mountain (SLID) 18 kilometers to the northeast. During the first 23 days of the swarm, hypocentral depths migrated at a rate of 2.4 millimeters per second up-dip along a 40-square-kilometer structure striking north 30&DEG; west and dipping 50&DEG; to the northeast. SLID's transient velocity of 20 millimeters per year implies a lower bound of 200 nanostrains per year (parts per billion per year) on local strain rates, an order of magnitude greater than the 1996 to 2003 regional rate. The geodetic displacement is too large to be explained by the elastic strain from the cumulative seismic moment of the sequence, suggesting an aseismic forcing mechanism. Aspects of the swarm and SLID displacements are consistent with lower-crustal magma injection under Lake Tahoe.
机译:2003年底,在加利福尼亚州太浩湖发生了一次深地震群(里氏震级<2.2;深度为29至33公里),同时发生了一次瞬时位移,该位移从群水平向外向外偏移6毫米,在全球定位系统站测得的向上位移为8毫米东北18公里处的斯莱德山(SLID)。在成群的前23天中,沿40平方公里的构造向北30°DEG撞击,下沉深度以每秒2.4毫米的上倾速率迁移。西部,浸入50&DEG;东北。 SLID的瞬态速度为每年20毫米,这意味着本地应变率的下限为每年200纳米应变(每年十亿分之一),比1996年至2003年的区域应变率高一个数量级。大地位移太大,无法用该序列的累积地震矩来解释弹性应变,这说明了地震的作用机理。群和SLID位移的方面与太浩湖下的低地壳岩浆注入一致。

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