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Apparent Aeromagnetic Wavelengths of the Magnetic Signals of Ocean Swell

机译:海洋膨胀电磁信号的表观航空电磁波长

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摘要

Ocean swells have a magnetic signal, caused by the motional induction of seawater moving in the steady main magnetic field of Earth. These signals may be sensed by a low-flying aircraft, carrying out aeromagnetic measurements over the ocean. The apparent spatial wavelength that such signals will have, when observed data are plotted out for geological purposes, can vary greatly. It will depend particularly on the relative speeds and directions of travel of the observing aircraft and the ocean swells. The apparent wavelength of the ocean swell magnetic signal cannot be less than the actual ocean swell wavelength. Generally, it is greater, and it can range up to infinity in value. For observations over continental shelves, the situation is complicated by the dependence of the swell phase-velocity on water depth, by which the swell speed generally slows as land is approached.
机译:海浪具有磁信号,这是由在地球稳定的主磁场中运动的海水的运动感应引起的。这些信号可能会由低空飞行的飞机感知,并在海洋上进行航磁测量。当出于地质目的绘制观测数据时,此类信号将具有的表观空间波长可能会有很大变化。这将特别取决于观测飞机和海浪的相对速度和行进方向。海浪膨胀磁信号的视在波长不能小于实际海浪膨胀波长。通常,它更大,范围可以达到无穷大。对于大陆架上的观测,由于膨胀相速度对水深的依赖性使情况变得复杂,随着膨胀深度的临近,膨胀速度通常会减慢。

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