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- W2330337704 abstract "Surface wave methods have been used to determine dynamic properties of near-surface soils in geotechnical engineering for the past 50 years. Although the capabilities of engineering surface wave methods have improved in recent years due to several advances, a number of issues still require study to further improve the capabilities of modern surface wave methods. Near-field effects, which are one of these issues, have been studied for traditional surface wave methods with two receivers, and several filtering criteria to mitigate the effects have been recommended. However, these filtering criteria are not applicable to surface wave methods with multiple receivers. Moreover, the criteria are not quantitatively based and do not account for different types of soil profiles, which strongly influence near-field effects. A new study of near-field effects on surface wave methods with multiple receivers was conducted via numerical simulations using Green’s functions, laboratory simulations using a two-dimensional experimental model, and field tests. There was excellent agreement between numerical and experimental results, and it was found that underestimation of measured Rayleigh phase velocities was a major symptom of near-field effects. Quantitatively based criteria for near-field effects in a homogeneous halfspace and three typical soil profiles are presented using two normalized parameters developed in this study. The criteria illustrate that near-field effects become more significant for two inversely dispersive soil profiles compared to the homogeneous half-space and a normally dispersive soil profile." @default.
- W2330337704 created "2016-06-24" @default.
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- W2330337704 date "2006-01-01" @default.
- W2330337704 modified "2023-09-24" @default.
- W2330337704 title "EVALUATION OF NEAR-FIELD EFFECTS ON ACTIVE SURFACE WAVE MEASUREMENTS WITH MULTIPLE RECEIVERS" @default.
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- W2330337704 doi "https://doi.org/10.3997/2214-4609-pdb.181.118" @default.
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