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SITE CHARACTERISATION BY THE HVSR TECHNIQUE

机译:通过HVSR技术进行站点特征分析

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A geotechnical characterisation study of a proposed development site has been conducted using the non-invasive passive ambient noise HVSR technique. The simplicity of the HVSR technique is manifested in having a short setup time (relative to other methods), and precluding the need for any active excitation sources and external cabling. In the study a lightweight battery operated sensor was utilised to capture the prevailing ambient noise (microtremors) reflecting the structure in the ground. Microtremor measurements were taken at regularly spaced stations at the proposed development site, with each recording at a station taking no more than 10 minutes. Thus the entire site was measured expeditiously within hours. The site characterisation involved (1) estimating the site fundamental resonance frequency and amplification, parameters of interest in the study of a site's susceptibility to seismic activities (2) interpreting the measured HVSR curves for a preliminary assessment of the soil layering and (3) fitting the HVSR curves to a theoretical model to estimate the shear wave velocity (V_s) profile of the ground. Results from the HVSR technique have been verified against data from classical invasive methods (viz. borehole data and SPT). Further verification has also been made against the results from the array based MASW technique. The study suggests that the HVSR technique could be used for characterising a site in combination with a reduced number of mechanical in situ tests, and especially to fill in the gaps of the soil stratigraphy at the locations not covered by the mechanical tests.
机译:已使用非侵入式被动环境噪声HVSR技术对拟议开发地点进行了岩土工程表征研究。 HVSR技术的简单性表现为建立时间短(相对于其他方法),并且不需要任何有源激励源和外部电缆。在这项研究中,使用了轻巧的电池供电传感器来捕获反映地面结构的主要环境噪声(微震)。在拟议的开发地点的规则间隔站进行微震测量,每次记录不超过10分钟。因此,整个站点在数小时内即可快速测量。场地表征包括(1)估计场地基本共振频率和放大率,研究场地对地震活动敏感性的研究中所关注的参数(2)解释测得的HVSR曲线以初步评估土壤分层和(3)拟合HVSR曲线成为一个理论模型,以估算地面的剪切波速度(V_s)曲线。 HVSR技术的结果已针对经典侵入性方法的数据(即钻孔数据和SPT)进行了验证。还针对基于阵列的MASW技术的结果进行了进一步的验证。研究表明,HVSR技术可用于结合减少的机械原位测试数量来表征场地,特别是在机械测试未覆盖的位置填补土壤地层的空隙。

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