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Simulation of seismic ground motion fields via object-oriented spatial statistics with an application in Northern Italy

机译:通过面向对象的空间统计数据模拟地震地面运动场与意大利北部的应用

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This work offers a novel methodological framework to address the problem of generating data-driven earthquake shaking fields at different vibration periods, which are key to support decision making and civil protection planning. We propose to analyse the entire profiles of spectral accelerations and project their information content to unsampled locations in the system, based on the theory of Object Oriented Spatial Statistics. The proposed methodology combines a non-ergodic ground motion model with a fully functional model for the residual term, the latter consisting of (i) the spatially-varying systematic effects due to source, site and path, and (ii) the remaining aleatory error. The proposed methodology allows to generate multiple shaking scenarios conditioned on the data, jointly and consistently for all the vibration periods, overcoming the intrinsic limitations of existing multivariate approaches to the problem. The approach is tested on a vast dataset of ground motion records collected in the study-area of the Po Plain (Northern Italy), for which a region-specific fully non-ergodic GMM was previously calibrated. Our validation tests demonstrate the potentiality of the approach, which is capable to effectively simulate spectral acceleration profiles, while keeping the ability to capture the main physical features of ground motion patterns in the region.
机译:这项工作提供了一种新颖的方法论框架,可以解决在不同振动周期下产生数据驱动的地震摇字段的问题,这是支持决策和民用保护规划的关键。我们建议根据面向对象的空间统计理论,分析光谱加速度的整个谱和将其信息内容投影到系统中的未跳法位置。所提出的方法将非遍历地运动模型与剩余术语的全功能模型相结合,包括(i)由源,站点和路径引起的空间变化的系统效应,以及(ii)剩余的综合误差。该提出的方法允许为所有振动周期共同且一致地生成在数据上调节的多个摇动场景,克服了现有多变量方法对问题的内在限制。该方法在收集在PO平原(北意大北部)的研究区收集的地面运动记录的巨大数据集进行了测试,其中先前校准了特异性特异性的完全非ergodic GMM。我们的验证测试展示了该方法的潜力,其能够有效地模拟光谱加速型材,同时保持能力捕获该区域中地面运动模式的主要物理特征。

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