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水准测量一直是获得地面点精密高差的重要手段,其测量速度慢、效率低也一直是困扰全球测量界的一大难题。为了提高水准测量的速度和效率,本文提出了新一代高速对向观测数字水准尺仪的概念、结构、原理与方法。具体采用水准仪与标尺合二为一的一体化结构设计,将传统水准测量的3点互动配置改变为2点互动配置来提高测站仪器安置速度和地形适应能力;采用对偶测量原理将传统水准测量的单向单系统测量改变为对(双)向双系统测量来提高水准测量的精度及可靠性;采用正交二脚架及L型水准器来提高水准标尺及水准仪的安平速度。理论分析及初步实践表明:新一代高速对向观测数字水准尺仪与传统水准仪相比,水准测量效率可提高1倍以上,是目前世界上最快速、最智能、最精密的电子水准测量系统。高速对向观测数字水准尺仪的发明,将对全球大地及工程测量界产生重大及颠覆性的影响,将开启人类社会普及电子水准仪的新时代。 相似文献
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中国近海,潮流占支配地位,在跃层存在的季节,实测潮流的垂直结构相当复杂.本文将实测潮流分解为平均正压潮流和变差潮流两部分,提出了从能量构成及分配研究潮流垂直结构的方法,并借此方法研究了北黄海实测潮流的垂直变化情况.分析表明:实测潮流的能量之所以在跃层附近集中主要是内潮所致.跃层两侧内潮流的方向相反,这在一定条件下可以导致跃层两侧实测潮流椭圆的旋转方向相反.平均正压潮流与变差流的交叉作用,在潮流垂直结构的形成中起着重要的作用.正是这种作用导致潮流能量在整个水柱中的不均匀分配.在跃层上侧的内潮流与整个水柱中变差流之间的总能量比率,比在跃层下侧的内潮流与该变差流之间的总能量比率要大.以强内潮区(L4站)为例:对于全日潮频率,上述对应的比率各为38.82%和29.88%,内潮流的总能量约为变差流的68.70%;对于半日潮频率,上述对应的比率各为26.61%和19.73%,内潮流的总能量约为变差流的46.36%. 相似文献
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Based on the shear effect of internal wave currents in stratified fluid, the necessary condition for the possible existence of an internal wave and the sufficient condition under which there will be no internal wave are deduced starting from the continuity equation of incompressible fluid. The above two conditions are verified by the measured results from vertical current meter arraies at some observation stations in the Bohai Sea and the South Huanghai Sea. In the treatment of measured results, first of all, the tidal period components are separated from the measured currents by Fourier-analysis method, and then the internal wave currents of tidal period from the tidal period components in the light of some considerations. The analytical results of observed currents are well consistent with theoretical analysis. Furthermore, one can also deduce some features of internal waves therefrom. Consequently, it is concluded that the observation from a vertical current meter array is an important means to verif 相似文献
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