克罗地亚境内地壳高度运动运动学模型的质量评价

Pub Date : 2017-06-30 DOI:10.15233/GFZ.2017.34.1
N. Rožić
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引用次数: 1

摘要

本文介绍了为克罗地亚、斯洛文尼亚和波斯尼亚和黑塞哥维那建立的地壳高度运动运动学模型的经验应用,以确定不同时期地壳离散点的相对高度位移。此外,还介绍了该模型的使用,用于从测量历元到另一个明确选择的历元的直接水准测量缩减确定,即用于从水准网络节点基准消除高度移动影响。对于克罗地亚领土,运动学模型的质量是间接测试的,其基础是与由原始和减少的水准测量组成的状态II阶水准网络相关的水准测量精度标准的比较。分析了克罗地亚一级水准网中两个精心选择的具有代表性的水准环区域上的二级水准网的水准线。确定了一个精度标准,使用原始测量值,并比较使用从测量历元到一阶网络测量历元的缩减测量值。原始测量精度标准和减少的测量精度标准的比较并没有明确、明确地证实,也没有完全否定用于确定测量减少的运动学模型质量的充分性。然而,比较表明,运动学模型的质量能够可靠地确定厘米级的相对高度位移。
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Quality evaluation of height movement kinematic model of the Earth’s crust on the Croatian territory
The paper presents the empirical use of height movement kinematic model of Earth’s crust created for territory of the Croatia, Slovenia and Bosnia and Herzegovina, in order to determine the relative height displacements of crust discrete points between different epochs. Also, presents the use of this model for the purpose of direct levelling measurement reductions determination, from surveying epoch to another unambiguously selected epoch, i.e. in purpose of height movement effects elimination from levelling network node benchmarks. For Croatian territory the quality of the kinematic model is indirectly tested, founded on the comparison of levelling measurement accuracy criteria related to the state II order levelling networks constituted with original and reduced levelling measurements. Levelling lines of two levelling networks of the II order, on the area of two deliberately selected and representative levelling loops of the Croatian state levelling network of I order, were analyzed. An accuracy criterion, using the original measurements and comparatively using the reduced measurements from their survey epoch to the I order network surveying epoch, is determined. Comparative comparison of the original and reduced measurement accuracy criteria is not clearly and unequivocally confirmed, nor completely rejected, the adequacy of the kinematic model quality for measurement reductions determination. However, comparison points to the fact that the quality of the kinematic model enables reliable determination of the relative height displacements at the centimeter level.
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