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图形结构强度
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  graph structural strength
     The application of GPS technique in precision engineering deformation monitoring is discussed in respects of datum design, graph structural strength design, observation and measurement period design, monitoring cycle design etc. A new idea is put forward to apply GPS technique in engineering deformation monitoring by continuous observation and measurement as well as data pre-processing with reference to various epochs.
     探讨GPS在大桥等精密工程变形监测中的基准设计、图形结构强度设计、观测时段设计和监测周期设计,提出一套在数据预处理过程中,利用连续观测、分历元进行数据预处理的方法,和GPS技术进行工程变形观测的新思路。
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  “图形结构强度”译为未确定词的双语例句
     This paper described the application of GPS technology to the engineering deformation monitoring and it's also convenience explained the designs of criterion,delineation structural intensity,observation and monitoring period,and so on,obtained some usefull conclusions for the engineering construction.
     论述了GPS技术在工程变形监测中的实用性和方便性,并对基准设计、图形结构强度设计、观测时段的设计、监测周期的设计等进行了说明,得到了一些对实际工程建设有益的结论。
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     its structure strength is high and so on.
     结构强度高等优点。
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     (4)the structural strength of ship should be reasonable.
     (4)结构强度上的合理性。
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     Using AFS algebra and AFS structure, any human ordinary fuzzy concept can be represented.
     结构
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     THE STORAGE STRUCTURE FOR VARIABLE DRAWING
     可变图形的存贮结构
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     Compared the actuality of the structure of th
     *; 结构;
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The GPS study of the crustal movement and deformation at Qinghai-Xizang plateau" is a key project of the state Natural Sciences Fund in the Eighth Five-Year Plan,Its aim is to establish a high precison GPS observation net and cooperate with the geological and geophysical disciplines, develop the study of the crustal movement and deformation of the Qinghai-Xizang plateau and earth dynamics.Afetr the phase Ⅰ observation of Qinghai-Xizang plateau in 1993,a phase Ⅱ observation has been conducted in 1995. in this...

The GPS study of the crustal movement and deformation at Qinghai-Xizang plateau" is a key project of the state Natural Sciences Fund in the Eighth Five-Year Plan,Its aim is to establish a high precison GPS observation net and cooperate with the geological and geophysical disciplines, develop the study of the crustal movement and deformation of the Qinghai-Xizang plateau and earth dynamics.Afetr the phase Ⅰ observation of Qinghai-Xizang plateau in 1993,a phase Ⅱ observation has been conducted in 1995. in this phase Ⅱ monitoring, corresponding measures being taken to strengthen the structural strength of the form of the GPS net and the observation capability of the whole movement of Qinghai-Xizanng Plateau.For the resolution of the GPS baseling, the NGS precise ephemeris and the GAMIT precise orientation software developed by MIT of U. S. A. are abopted. For the overall adjustment of the GPS monitoring net, the GPSADJ software developed by Wuhan Technical University of Surveying and Mapping has been adopted. After the adjustment, the relative precision of one half of the baselines reaches the order of 10-9,the average relative precision is 6. 6×10-9,it reaches the international leading level.

“青藏高原地壳运动与形变的GPS研究”是国家自然科学基金“八五”重点资助项目。目的在于建立一个高精度的GPS监测网,并与地质和地球物理学科合作,开展青藏高原地壳运动与形变和地球动力学研究。继1993年对青藏高原进行第一期监测后,1995年,又对该地区进行第二期监测。在第二期监测中,采取了相应措施,以加强GPS网的图形结构强度和监测青藏高原整体运动的能力。GPS基线解算,采用NGS精密垦历和美国麻省理工学院研制的GAMIT精密定位软件;GPS监测网的整体平差,采用武汉测绘科技大学研制的GPSADJ软件。平差后,有半数基线的相对精度达到10-9量级,平均相对精度为6.6×10-9,达到国际领先水平。

The application of GPS technique in precision engineering deformation monitoring is discussed in respects of datum design, graph structural strength design, observation and measurement period design, monitoring cycle design etc. A new idea is put forward to apply GPS technique in engineering deformation monitoring by continuous observation and measurement as well as data pre-processing with reference to various epochs.

 探讨GPS在大桥等精密工程变形监测中的基准设计、图形结构强度设计、观测时段设计和监测周期设计,提出一套在数据预处理过程中,利用连续观测、分历元进行数据预处理的方法,和GPS技术进行工程变形观测的新思路。

This paper described the application of GPS technology to the engineering deformation monitoring and it's also convenience explained the designs of criterion,delineation structural intensity,observation and monitoring period,and so on,obtained some usefull conclusions for the engineering construction.

论述了GPS技术在工程变形监测中的实用性和方便性,并对基准设计、图形结构强度设计、观测时段的设计、监测周期的设计等进行了说明,得到了一些对实际工程建设有益的结论。

 
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