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Development and characterization of an observatory-class, broadband, non-fedback, leaf-spring interferometric seismometer.

机译:观测级,宽带,无反馈,板簧干涉地震仪的开发和表征。

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摘要

Motivated by the desire to have instruments whose performance rivals that of the best observatory sensors, two new seismometers have been developed that are designed to operate in borehole environments free of electronics and force-feedback. This is accomplished by the development of optical sensors consisting of leaf-spring suspended masses whose positions are monitored interferometrically. A digital signal processor (DSP) samples fringe signals created by the interferometric sensor and produces a displacement record of the seismometer mass with a resolution of less than 1 pm (10-12 m). Maximum mass motion is limited by practical issues to about 15 mm, providing a dynamic range of 10 10, equivalent to 33 bits.;For a moderate-sized mass with readily achievable free period and damping, the mass-spring sensor's fundamental thermal noise is less than ambient noise at the seismically quietest sites. Hence, there is no need to abandon this basic, simple, mass-spring design. Elimination of electronics, however, means elimination of force feedback--the paradigm in seismometry for the past several decades. We have tested our non-fedback optical seismometers against standard fedback observatory-quality seismometers (STS-1) and found that they provide equivalent seismograms for signals ranging in frequency from tides to at least 10 Hz. We examine the effects of thermal, magnetic, and barometric noise observed on the interferometric sensors and compare with the STS-1.
机译:由于人们希望拥有性能可与最佳天文传感器相媲美的仪器,因此开发了两种新型地震仪,其设计用于在无电子设备和力反馈的井眼环境中运行。这是通过开发光学传感器实现的,该光学传感器由片簧悬挂的质量组成,其位置通过干涉法进行监控。数字信号处理器(DSP)对干涉传感器产生的条纹信号进行采样,并以小于1 pm(10-12 m)的分辨率产生地震仪质量的位移记录。实际问题将最大质量运动限制在15 mm左右,提供10 10的动态范围,相当于33位;对于具有易于实现的自由周期和阻尼的中等大小的质量,质量弹簧传感器的基本热噪声为低于地震最安静的地点的环境噪声。因此,无需放弃这种基本的,简单的质量弹簧设计。但是,消除电子设备意味着消除力反馈,这是过去几十年来地震计量学的范例。我们已经对非反馈光学测震仪与标准反馈天文台质量测震仪(STS-1)进行了测试,发现它们为潮汐至至少10 Hz频率范围的信号提供了等效的地震图。我们检查了在干涉式传感器上观察到的热,磁和气压噪声的影响,并与STS-1进行了比较。

著录项

  • 作者

    Otero, Jose D.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Geophysics.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 224 p.
  • 总页数 224
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;光学;
  • 关键词

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