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Tidal calibration of plate boundary observatory borehole strainmeters

机译:板块边界观测台钻孔应变仪的潮汐标定

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The Plate Boundary Observatory, the geodetic component of the EarthScope program, includes 74 borehole strainmeters installed in the western United States and on Vancouver Island, Canada. In this study, we calibrate 45 of the instruments by comparing the observed M2 and O1 Earth tides with those predicted using Earth tide models. For each strainmeter, we invert for a coupling matrix that relates the gauge measurements to the regional strain field assuming only that the measured strains are linear combinations of the regional areal and shear strains. We compare these matrices to those found when constraints are imposed which require the coupling coefficients to lie within expected ranges for this strainmeter design. Similar unconstrained and constrained coupling matrices suggest the instrument is functioning as expected as no other coupling matrix can be found that better reduces the misfit between observed and predicted tides when the inversion is unconstrained. Differences imply a coupling matrix with coefficients outside typical ranges gives a better fit between the observed and predicted tides. We find that 22 of the strainmeters examined have coupling matrices for which there is little difference between the constrained and unconstrained inversions. If we allow a greater divergence in the shear coupling coefficients and consider the possibility that one gauge may not function as expected, the discrepancies between the unconstrained and constrained coupling matrices are resolved for a subset of the remaining strainmeters. Our results also indicate that most of the strainmeters are less sensitive to areal strain than expected from theory.
机译:板块边界天文台是EarthScope计划的大地测量组成部分,其中包括安装在美国西部和加拿大温哥华岛的74个钻孔应变仪。在这项研究中,我们通过比较观测到的M2和O1地潮与使用潮汐模型预测的潮汐来校准45种仪器。对于每个应变仪,我们仅假设所测得的应变是区域面积应变和剪切应变的线性组合,即可求出一个将应变计测量值与区域应变场相关联的耦合矩阵。我们将这些矩阵与施加约束时发现的矩阵进行比较,这些约束要求耦合系数在此应变计设计的预期范围内。类似的不受约束和受约束的耦合矩阵表明,该仪器按预期运行,因为没有其他耦合矩阵可以找到,当反演不受约束时,可以更好地减少观测潮汐和预测潮汐之间的失配。差异意味着系数在典型范围之外的耦合矩阵可以更好地拟合观测潮汐和预测潮汐。我们发现,检查的22个应变仪具有耦合矩阵,对于这些矩阵,约束反演和非约束反演之间的差异很小。如果我们允许更大的剪力耦合系数差异,并考虑一个量规可能无法按预期运行的可能性,则可以解决其余应变计的子集的无约束耦合矩阵与受约束耦合矩阵之间的差异。我们的结果还表明,大多数应变仪对面应变的敏感性不如理论预期。

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