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Do Low-Cost Seismographs Perform Well Enough for Your Network? An Overview of Laboratory Tests and Field Observations of the OSOP Raspberry Shake 4D

机译:低成本地震仪对您的网络表现得足够好吗? 俄罗斯覆盆子震动4D的实验室测试和现场观测概述

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摘要

Seismologists have recently begun using low-cost nodal sensors in dense deployments to sample the seismic wavefield at unprecedented spatial resolution. Earthquake early warning systems and other monitoring networks (e.g., wastewater injection) would also benefit from network densification; however, current nodal sensors lack power systems or the real-time data transmission required for these applications. A candidate sensor for these networks may instead be a low-cost, all-in-one package such as the OSOP Raspberry Shake 4D (RS-4D). The RS-4D includes a vertical-component geophone, three-component accelerometer, digitizer, and near-real-time mini-SEED data transmission and costs only a few hundred dollars per unit. Here, we step through instrument testing of three RS-4Ds at the Albuquerque Seismological Laboratory (ASL). We find that the geophones have sensitivities constrained to within 4% of nominal, but that they have relatively high self-noise levels compared with the broadband sensors typically used in seismic networks. To demonstrate the impact this would have on characterizing nearby events, we estimate local magnitudes of earthquakes in Oklahoma using Trillium Compact broadband sensor data from U.S. Geological Survey aftershock deployments as well as 23 Raspberry Shakes operated by hobbyists and private owners within the state. We find that for M-L 2.0-4.0 earthquakes at distances of 20-100 km from seismic stations, the Raspberry Shakes require events of magnitude similar to 0.3 larger than the broadband sensors to reliably estimate M-L at a given distance from the epicenter. We conclude that RS-4Ds are suitable for densifying backbone networks designed for studies of local and regional events.
机译:泻药学家最近开始使用密集部署中的低成本Nodal传感器来以前所未有的空间分辨率对地震波峰进行采样。地震预警系统和其他监控网络(例如,废水注入)也将受益于网络致密化;然而,当前的节点传感器缺少这些应用所需的电力系统或实时数据传输。这些网络的候选传感器可以是低成本,一体化包装,例如OSOP Raspberry Shake 4D(RS-4D)。 RS-4D包括垂直组件地震孔,三组件加速度计,数字转换器和近实时迷你种子数据传输,每单位花费几百美元。在这里,我们在阿尔伯克基地震实验室(ASL)的三个RS-4DS的仪器测试。我们发现,地震检波器的敏感性受到标称值4%的限制,但与通常用于地震网络中使用的宽带传感器相比,它们具有相对高的自噪声水平。为了证明这将对附近事件的特征有所作为,我们使用来自美国的Trillium Compact宽带传感器数据来估计俄克拉荷马州地震中地震的局部大幅度。地质调查余震部署以及由业余爱好者和私人所有者运营的23份覆盆子震动。我们发现,对于M-L 2.0-4.0距离地震站20-100公里的M-L 2.0-4.0地震,覆盆子震动需要与宽带传感器大的0.3相似的数量事件,以便在距离震中的给定距离处可靠地估计M-L。我们得出结论,RS-4DS适用于致密骨干网络,专为当地和区域事件进行研究。

著录项

  • 来源
    《Seismological research letters》 |2019年第1期|共10页
  • 作者单位

    US Geol Survey Albuquerque Seismol Lab POB 82010 Albuquerque NM 87198 USA;

    US Geol Survey Albuquerque Seismol Lab POB 82010 Albuquerque NM 87198 USA;

    US Geol Survey Albuquerque Seismol Lab POB 82010 Albuquerque NM 87198 USA;

    US Geol Survey Earthquake Sci Ctr 1711 Illinois St Golden CO 80401 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地震学;
  • 关键词

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