期刊文献+

根据浅层剪切波速度剖面(深度<30m)估计V_S(30)的新方法 被引量:2

A new method for estimating V_S(30) from a shallow shear-wave velocity profile (depth<30m)
下载PDF
导出
摘要 建筑规范中,地表到地下30m深度的走时平均剪切波速度[VS(30)]是场地分类的重要参数。利用在两个不同深度[VS(z1)和VS(z2),且z1<z2<30m]下得到的走时平均剪切波速度,提出了用井孔中测量的浅层剪切波速度剖面估计VS(30)的新方法。选用剪切波速度剖面达30m的日本KiK-net台网594个井孔和美国加利福尼亚州的135个井孔的数据,通过VS(30)实测值与VS(30)估计值之间的相关性和用VS(30)估算值给出场地分类的准确性验证了该新方法的可靠性。结果显示,该方法可以提高VS(30)的准确度,且VS(30)的实测值与估算值之间的皮尔逊相关系数等于0.999,VS(30)的估算值给出的场地分类准确率大于96%,而z1≥10m,z2=25m。利用来自日本的数据研究了VS(z)的实测值与估算值在6个不同深度(50,100,150,200,400,600m)时的相关性,结果表明当所选的两个深度(z1,z2)接近某个深度z时,利用该假设方法估算的VS(z)(z≥50m)的准确度有所提高。相比Boore(2004)和Boore等(2011)的方法,新方法不需要对大量场地做回归分析以获得经验关系,没有区域性依赖,准确度有显著提高,且在世界的许多地方均有潜在的用途。
出处 《世界地震译丛》 2016年第1期48-63,共16页 Translated World Seismology
  • 相关文献

参考文献18

  • 1Abrahamson, N. A. , G. Atkinson, D. Boore, Y. Bozo- rgnia, K. Campbell, B. Chiou, I. M. Idriss, W. Silva, and R. Youngs(2008). Comparisons of the NGA ground-motion relations, Earthq. Spectra 24,45-66.
  • 2American Society of Civil Engineers(ASCE)(2013). Minimum Design Loads for Buildings and Other Structures, Standards ASCE/SEI 7-10, 671 pp. ,doi:10. 1061/9780784412916.
  • 3Boore,D. M. (2003). A compendium of P-and S- wave velocities from surface-to-borehole log- ging: Summary and reanalysis of previously published data and analysis of unpublished da- ta,U. S. Geol. Surv. Open-File Rept. 03-191 , 13 pp.
  • 4Boore,D. M. (2004). Estimating(or NEHRP site classes) from shallow velocity models (depths ~30 m) ,Bull. Seismol. Soc. Am. 94,591-597.
  • 5Boore, D. M. , E. Thompson, and H. Cadet ( 2011 ). Regional. correlations of Vs30 and velocities ave- raged over depths less than and greater than 30 meters, Bull. Seismol. Soc. Am. 101, 3046 -3059.
  • 6Building Seismic Safety Council (BSSC) ( 2003 ). Na- tional Earthquake Hazards Reduction Program Recommended Provisions for Seismic Regula- tions for New Buildings and Other Structures ( FEMA-450), Part 1 : Provisions, Federal Emer- gency Management Agency, Washington, D. C. ,303 pp.
  • 7Cadet,H. ,and A.-M. Dural(2009). A shear wave velocity study based on the KiK-net borehole data: A short note, Seismol. Res. Lett. 80,440 -445.
  • 8Castellaro, S. , F. Mulargia, and P. L. Rossi (2008). VS30: Proxy for seismic amplification? Seis- tool. Res. Lett. 79,540-543.
  • 9Eurocode 8 (2004). Design of structures for earth- quake resistance, part : General rules, seismic actions and rules for buildings, EN 1998-1, Eu- ropean Committee for Standardization (CEN), http: / / standards, cen. eu/dyn/www/f? p = 204 : 110.- 0~ ~ .. : FSP _ PROJECT, FSP _ ORG_ ID: 12452,6231 b-cs = 16799EDllF6E46AFBEOAE FA751561C3CB(last accessed April 2015).
  • 10Lee,V. W. ,and M. D. Trifunac(2010). Should ave- rage shear-wave velocity in the top 30 in of soil be used to describe seismic amplification? Soil Dynam. Earthq. Eng. 30,1250- 1258.

同被引文献19

引证文献2

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部