The complex geographical environment in China makes its gravity signals miscellaneous.This work gives a comprehensive representation and explanation in secular trend of gravity change in different regions,the key feat...The complex geographical environment in China makes its gravity signals miscellaneous.This work gives a comprehensive representation and explanation in secular trend of gravity change in different regions,the key features of which include positive trend in inner Tibet Plateau and South China and negative trend in North China plain and high mountain Asia(HMA).We also present the patterns of amplitudes and phases of annual and semiannual change.The mechanism underlying the semiannual period is explicitly discussed.The displacement in three directions expressed in terms of geo-potential spherical coefficients and load Love numbers are given.A case study applied with these equations is presented.The results show that Global Positioning System(GPS) observations can be used to compare with Gravity Recovery and Climate Experiment(GRACE) derived displacement and the vertical direction has a signal-noise-ratio of about one order of magnitude larger than the horizontal directions.展开更多
2014年8月跨越六盘山东麓断裂带,在长度约为200公里的剖面上展开了流动重力/GPS联合剖面观测.观测结果表明,测线东端的布格重力异常约为-190 m Gal(10^(-5)ms^(-2)),西端则为-250 m Gal左右.在假设地壳均一的前提下,基于Airy均衡模型,...2014年8月跨越六盘山东麓断裂带,在长度约为200公里的剖面上展开了流动重力/GPS联合剖面观测.观测结果表明,测线东端的布格重力异常约为-190 m Gal(10^(-5)ms^(-2)),西端则为-250 m Gal左右.在假设地壳均一的前提下,基于Airy均衡模型,利用布格重力异常和GPS观测数据,分别计算了测线所在剖面的莫霍面深度与均衡面深度,发现六盘山地区处于正均衡异常状态.使用布格重力异常数据反演六盘山地区的地壳密度结构,并据此地壳分层结构,计算了六盘山地区均衡面与莫霍面深度,对比显示该区域亦处于均衡正异常状态.为了确定青藏高原东北缘岩石圈有效弹性厚度和六盘山隆升机制,我们利用EMG2008自由空气异常和SRTM V18.1 DEM数据,使用自由空气重力异常导纳方法,研究了以六盘山地区为中心的青藏高原东北缘岩石圈有效弹性厚度(Te)和加载机制,发现六盘山地区的Te为5 km,岩石圈加载主要来自于地表,占总加载的95%.最后,对比六盘山地区Airy均衡异常与弹性板均衡异常,发现六盘山东麓断层处地壳承载梯度值最大,表明该断裂带吸收了较多的应变能.展开更多
基金supported financially by the National Natural Science Foundation of China(41174063,41331066 and41474059)the CAS/CAFEA International Partnership Program for Creative Research Teams(KZZD-EW-TZ-19)the SKLGED Foundation(2014-1-1-E)
文摘The complex geographical environment in China makes its gravity signals miscellaneous.This work gives a comprehensive representation and explanation in secular trend of gravity change in different regions,the key features of which include positive trend in inner Tibet Plateau and South China and negative trend in North China plain and high mountain Asia(HMA).We also present the patterns of amplitudes and phases of annual and semiannual change.The mechanism underlying the semiannual period is explicitly discussed.The displacement in three directions expressed in terms of geo-potential spherical coefficients and load Love numbers are given.A case study applied with these equations is presented.The results show that Global Positioning System(GPS) observations can be used to compare with Gravity Recovery and Climate Experiment(GRACE) derived displacement and the vertical direction has a signal-noise-ratio of about one order of magnitude larger than the horizontal directions.
文摘2014年8月跨越六盘山东麓断裂带,在长度约为200公里的剖面上展开了流动重力/GPS联合剖面观测.观测结果表明,测线东端的布格重力异常约为-190 m Gal(10^(-5)ms^(-2)),西端则为-250 m Gal左右.在假设地壳均一的前提下,基于Airy均衡模型,利用布格重力异常和GPS观测数据,分别计算了测线所在剖面的莫霍面深度与均衡面深度,发现六盘山地区处于正均衡异常状态.使用布格重力异常数据反演六盘山地区的地壳密度结构,并据此地壳分层结构,计算了六盘山地区均衡面与莫霍面深度,对比显示该区域亦处于均衡正异常状态.为了确定青藏高原东北缘岩石圈有效弹性厚度和六盘山隆升机制,我们利用EMG2008自由空气异常和SRTM V18.1 DEM数据,使用自由空气重力异常导纳方法,研究了以六盘山地区为中心的青藏高原东北缘岩石圈有效弹性厚度(Te)和加载机制,发现六盘山地区的Te为5 km,岩石圈加载主要来自于地表,占总加载的95%.最后,对比六盘山地区Airy均衡异常与弹性板均衡异常,发现六盘山东麓断层处地壳承载梯度值最大,表明该断裂带吸收了较多的应变能.