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首页> 外文期刊>Geophysical Research Letters >Time-variable gravity signal during the water impoundment of China's Three-Gorges Reservoir - art. no. 2200
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Time-variable gravity signal during the water impoundment of China's Three-Gorges Reservoir - art. no. 2200

机译:中国三峡水库蓄水期间的时变重力信号-艺术没有。 2200

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1] Beginning in 2003, China's Three-Gorges Reservoir will start water impoundment in phases. By 2009, it will be holding 40 km 3 of water, flooding a stretch of middle Yangtze River about 600 km in length. The water impoundment process represents a geophysical "controlled experiment'' offering a unique opportunity for detailed studies of a classical forward/inverse modeling problem of surface loading. While Wang [2000] studied the large loading effects on a local scale, we aim for longer spatial scales upwards from several hundred km, specially on the time-variable gravity signals that can be detected by the newly-launched GRACE satellite mission, whose 5-year lifetime (until 2007) will span the major impoundment period. Our results using the Green's function method adopting the PREM elastic Earth model indicate that the per-year geoid height increase is above the GRACE observational sensitivity out to harmonic degree 20, and to degree 50 (corresponding to a wavelength of 800 km) when integrated over the 5-year period. [References: 15
机译:1]从2003年开始,中国的三峡水库将分阶段开始蓄水。到2009年,它将拥有40 km 3的水量,淹没全长约600 km的长江中段。蓄水过程代表了地球物理的“受控实验”,为详细研究表面载荷的经典正/反模型问题提供了独特的机会,尽管Wang [2000]研究了局部规模的大载荷效应,但我们的目标是更长的时间。空间尺度从几百公里向上扩展,特别是在随时间变化的重力信号上,该信号可以通过新启动的GRACE卫星探测到,其5年寿命(直到2007年)将跨越主要蓄水期。采用PREM弹性地球模型的函数方法表明,当在5年周期中积分时,每年的大地水准面高度增加在20度和50度(对应于800 km的波长)的谐波度上超过GRACE观测灵敏度。 [参考:15

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