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A Towed Magnetometer for Vector Field Measurements

A Towed Magnetometer for Vector Field Measurements
用于矢量场测量的拖曳式磁力计
批准号:
9819758
负责人:
Jeffrey Gee
金额:
$10.54万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
1999
资助国家:
美国
项目状态:
已结题
起止时间:
1999-03-15 至 2002-02-28

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中文摘要
翻译
P.I.:Jeffery Gee/UCSD Scripps 提案编号:98- 19758建议摘要:测量总场强的质子旋进磁力计长期以来一直是海洋地球物理研究的首选仪器。遗憾的是,这些仪器受到限制,特别是在赤道附近的南北走向的脊和任何地方,线状短波长异常或非线状精细尺度异常存在。矢量磁场测量提供了一种手段,以减少或克服这些限制的总场异常数据。异常场的水平和垂直分量总是大于总的场异常,并且这些矢量异常受赤道地区不利几何形状的影响明显较小。PI对船上的矢量磁力计进行了初步测试,但船的磁场引入了错误。他们还在深拖式车辆上测试了一个系统。这种方法显示出了希望,但他们没有足够的运动补偿数据。因此,PI,J. Gee和S.坎德,建议开发一个拖曳式矢量场磁力仪系统。该系统将使用SeaTex MRU-6运动参考装置,三轴磁力计装在圆柱形阳极氧化铝压力箱中,适用于全海洋深度部署。具有高精度运动传感器的拖曳系统应消除初始测试中发现的两个重要噪声源。该系统将需要一个RS232数据传输增强器和一条300米长的电缆;它将在SIO组装。PI建议在夏威夷海岸外进行为期4天的巡航期间测试系统,因为那里存在低振幅异常(100 nT)。这一系统应能在现有仪器无法识别的大部分海洋盆地中识别与扩散有关的异常现象。
英文摘要
P.I.: Jeffery Gee/UCSD Scripps Proposal #: 98-19758Proposal Summary: Proton precession magnetometers, which measure total field intensities, have long been the instrument of choice for marine geophysical studies. Unfortunately, these instruments are subject to limitations, especially over N-S oriented ridges near the equator and anywhere that lineated short-wavelength anomalies or non-lineated fine-scale anomalies exist.Vector magnetic field measurements provide a means to reduce or overcome these limitations of total field anomaly data. Horizontal and vertical components of the anomalous field are always greater than the total field anomaly, and these vector anomalies are significantly less affected by unfavorable geometries in equatorial regions. The PI's made initial tests of a vector magnetometer onboard a ship, but the ship's magnetic field introduced errors. They also tested a system on a deep towed vehicle. This method showed promise, but they did not have adequate motion compensation data. Therefore, the PI's, J. Gee and S. Cande, propose to develop a towed vector field magnetometer system. The system will use a SeaTex MRU-6 motion reference unit with triaxial magnetometers in a cylindrical anodized aluminum pressure case that is suitable for full ocean depth deployment. A towed system with a high precision motion sensor should eliminate the two significant sources of noise found in initial tests. The system will require a RS232 data transmission enhancer and a 300 m cable; it will be assembled at SIO. The PI proposes to test the system during a 4 day cruise off the coast of Hawaii where low amplitude anomalies ( 100 nT) exist. This system should allow identification of spreading related anomalies in significant portions of the ocean basins where such identifications are not possible with existing instrumentation.
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