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首页> 外文期刊>Geophysical Prospecting >Airborne gravimetry using a strapped-down LaCoste and Romberg air/sea gravity meter system: a feasibility study
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Airborne gravimetry using a strapped-down LaCoste and Romberg air/sea gravity meter system: a feasibility study

机译:使用捆绑式LaCoste和Romberg空气/海洋重力仪系统进行空中重量分析:可行性研究

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摘要

Marine gravimeters mounted on stabilized platforms are commonly used in aircraft to perform airborne gravity measurements. The role of the stabilized platform is to level the sensor mechanically, whatever the aircraft attitude. However, this compensation is generally insufficient due to the sensitivity of modern gravity sensors. Correcting the offlevel error requires that an offlevel correction calculated from positioning data be added to gravimeter measurements, which complicates not only the processing, but also the assessment of precision and resolution. This paper is a feasibility study describing the levelling of a completely strapped-down LaCoste and Romberg gravimeter for airborne gravimetry operation, by means of GPS positioning data. It focuses on the calculation of the sensor offlevel correction needed for the complete gravity data processing. The precision of the offlevel correction that can be achieved, in terms of GPS data precision and gravity wavelengths, is theoretically studied and estimated using the gravity and GPS data acquired during the Alpine Swiss French airborne gravity survey carried out in 1998 over the French Western Alps. While a 1 cm precision of GPS-determined baseline coordinates is sufficient to achieve a 5 mGal precision of the offlevel correction, we maintain that this precision has to reach 1 mm to ensure a 1 mGal precision of the offlevel correction at any wavelength. Without a stabilized platform, the onboard instrumentation becomes significantly lighter. Furthermore, the correction for the offlevel error is straightforward and calculated only from GPS data. Thus, the precision and the resolution of airborne gravity surveys should be estimated with a better accuracy.
机译:安装在稳定平台上的船用重力仪通常用于飞机上以执行空中重力测量。无论飞机的姿态如何,稳定平台的作用都是机械地调平传感器。然而,由于现代重力传感器的灵敏度,这种补偿通常是不足的。校正水平误差需要将根据定位数据计算出的水平校正添加到重力计测量中,这不仅使处理复杂,而且使精度和分辨率的评估复杂化。本文是一项可行性研究,它通过GPS定位数据描述了用于空中重量分析操作的完全固定式LaCoste和Romberg重力仪的高度。它着重于完整重力数据处理所需的传感器离液面校正的计算。理论上可以使用GPS数据精度和重力波长来实现离层校正的精度,并使用1998年对法国西阿尔卑斯山进行的阿尔卑斯瑞士法航重力测量中获得的重力和GPS数据进行了理论研究和估算。 GPS确定的基线坐标的1 cm精度足以实现5 mGal的水平面校正精度,但我们认为该精度必须达到1 mm,以确保在任何波长下1 mGal的水平面校正精度。如果没有稳定的平台,则车载仪表的重量会大大减轻。此外,对水平误差的校正很简单,并且仅根据GPS数据进行计算。因此,应以更高的精度估算机载重力测量的精度和分辨率。

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  • 来源
    《Geophysical Prospecting》 |2005年第1期|p.91-101|共11页
  • 作者

    J. Verdun; E.E. Klingele;

  • 作者单位

    Ecole Nationale des Science Geographiques, 6-8 Avenue Blaise Pascal, Champsse sur Marne, 77455 Marne la Vallee Cedex 2, France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

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