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首页> 外文期刊>Remote Sensing >Quantifying Freshwater Mass Balance in the Central Tibetan Plateau by Integrating Satellite Remote Sensing, Altimetry, and Gravimetry
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Quantifying Freshwater Mass Balance in the Central Tibetan Plateau by Integrating Satellite Remote Sensing, Altimetry, and Gravimetry

机译:通过集成卫星遥感,测高仪和重力法来量化青藏高原中部的淡水质量平衡

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摘要

The Tibetan Plateau (TP) has been observed by satellite optical remote sensing, altimetry, and gravimetry for a variety of geophysical parameters, including water storage change. However, each of these sensors has its respective limitation in the parameters observed, accuracy and spatial-temporal resolution. Here, we utilized an integrated approach to combine remote sensing imagery, digital elevation model, and satellite radar and laser altimetry data, to quantify freshwater storage change in a twin lake system named Chibuzhang Co and Dorsoidong Co in the central TP, and compared that with independent observations including mass changes from the Gravity Recovery and Climate Experiment (GRACE) data. Our results show that this twin lake, located within the Tanggula glacier system, remained almost steady during 1973–2000. However, Dorsoidong Co has experienced a significant lake level rise since 2000, especially during 2000–2005, that resulted in the plausible connection between the two lakes. The contemporary increasing lake level signal at a rate of 0.89 ± 0.05 cm·yr ?1 , in a 2° by 2° grid equivalent water height since 2002, is higher than the GRACE observed trend at 0.41 ± 0.17 cm·yr ?1 during the same time span. Finally, a down-turning trend or inter-annual variability shown in the GRACE signal is observed after 2012, while the lake level is still rising at a consistent rate.
机译:通过卫星光学遥感,测高和重力法已经观测到了青藏高原(TP)的各种地球物理参数,包括储水量的变化。但是,这些传感器中的每一个在观察到的参数,准确性和时空分辨率方面都有其各自的局限性。在这里,我们采用了一种集成的方法,将遥感影像,数字高程模型以及卫星雷达和激光测高仪数据相结合,以量化位于TP中心的双湖系统Chibuzhang Co和Dorsoidong Co中的淡水存储变化,并与独立观测,包括重力恢复和气候实验(GRACE)数据中的质量变化。我们的结果表明,位于Tanggula冰川系统内的这个双子湖在1973–2000年期间几乎保持稳定。然而,自2000年以来,Dorsoidong Co经历了明显的湖泊水位上升,特别是在2000–2005年期间,这导致了两个湖泊之间的合理联系。自2002年以来,在以2°乘2°网格当量水高度计算的当代湖水位信号速率为0.89±0.05 cm·yr?1时,高于GRACE观测到的在0.41±0.17 cm·yr?1时的趋势。同一时间跨度。最后,在2012年之后,在GRACE信号中观察到了下降趋势或年际变化,而湖泊水位仍以一致的速度上升。

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