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THE STUDY OF ESTABLISHING HORIZONTAL VELOCITY AND DEFORMATION MODEL OF SEMI-DYNAMIC DATUM IN TAIWAN AREA

机译:台湾半动态基准建立水平速度和变形模型的研究

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National coordinate system is the foundation of surveying engineering, the establishment and the selection of geodetic datum would directly impact the accuracy of final result. Plate motion will cause earthquakes, volcanic eruptions and other natural disasters. Plate motion especially non-linear motion can also change the relationship between stations in the reference frame. Therefore, a rational and reliable reference frame is needed to ensure the Euclidean integrity quality. Taiwan is located along the bounding of the Eurasian and the Philippine plate, and is therefore a region of non-rigid motion and therefore will shift and rotate in different directions due to the changing stress field. Taiwan's current coordinate system TWD97, which is built by a fixed single term linear model ITRF94.It is not able to precisely model the non-linear motion of the crustal in the Taiwan region. Therefore, Taiwan needs velocity and deformation model to correct the distortion which caused by the crustal motion. This study used five years of Taiwan CORS GPS data to investigate the horizontal velocity field in Taiwan and established the horizontal velocity and deformation model by curve fitting, interpolation and LOWESS method. GNSS; CORS; plate motion; velocity field; deformation model
机译:国家坐标系是测量工程的基础,建立和大理石基准的选择将直接影响最终结果的准确性。板运动将导致地震,火山爆发和其他自然灾害。板运动特别是非线性运动也可以改变参考框架中的站之间的关系。因此,需要合理和可靠的参考帧来确保欧几里德完整性质量。台湾沿着欧亚和菲律宾板的界限,因此是一种非刚性运动的区域,因此由于变化的应力场而导致不同的方向转移和旋转。台湾的当前坐标系TWD97,由固定单词线性模型ITRF94建造。它无法精确地模拟台湾地区的地壳的非线性运动。因此,台湾需要速度和变形模型来纠正由地壳运动引起的变形。本研究使用了五年的台湾CORS GPS数据来研究台湾的水平速度场,并通过曲线拟合,插值和杠杆法建立了水平速度和变形模型。 GNSS; CORS;板运动;速度场;变形模型

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