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Tests of relative earthquake location techniques using synthetic data

机译:使用综合数据测试相对地震定位技术

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We compare three relative earthquake location techniques using tests on synthetic data that simulate many of the statistical properties of real travel time data. The methods are (1) the hypocentroidal decomposition method of Jordan and Sverdrup (1981), (2) the source-specific station term method (SSST) of Richards-Dinger and Shearer (2000), and (3) the modified double-difference method (DD) of Waldhauser and Ellsworth (2000). We generate a set of synthetic earthquakes, stations, and arrival time picks in half-space velocity models. We simulate the effect of travel time variations caused by random picking errors, station terms, and general three-dimensional velocity structure. We implement the algorithms with a common linearized approach and solve the systems using a conjugate gradient method. We constrain the mean location shift to be zero for the hypocentroidal decomposition and double-difference locations. For a single compact cluster of events, these three methods yield very similar improvements in relative location accuracy. For distributed seismicity, the DD and SSST algorithms both provide improved relative locations of comparable accuracy. We also present a new location technique, termed the shrinking box SSST method, which provides some improvement in absolute location accuracy compared to the SSST method. In our implementation of these algorithms, the SSST method runs significantly faster than the DD method.
机译:我们使用合成数据测试对三种相对地震定位技术进行了比较,这些测试模拟了真实旅行时间数据的许多统计特性。这些方法是(1)Jordan和Sverdrup(1981)的形心分解方法,(2)Richards-Dinger and Shearer(2000)的源特定站项方法(SSST),以及(3)修正的双差Waldhauser和Ellsworth(2000)的方法(DD)。我们在半空间速度模型中生成了一组合成地震,台站和到达时间选择。我们模拟了随机采摘误差,测站项和常规三维速度结构引起的旅行时间变化的影响。我们使用常见的线性化方法实施算法,并使用共轭梯度法求解系统。对于质心分解和双差位置,我们将平均位置偏移限制为零。对于单个紧凑的事件簇,这三种方法在相对位置精度上产生了非常相似的改进。对于分布式地震活动性,DD和SSST算法都提供了可比较精度的改进的相对位置。我们还提出了一种新的定位技术,称为收缩盒SSST方法,与SSST方法相比,它在绝对定位精度方面提供了一些改进。在这些算法的实现中,SSST方法的运行速度明显快于DD方法。

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