首页> 外文会议>International Conference on Environmental and Engineering Geophysics >Is it time to re-engineer geotechnical seismic refraction methods?
【24h】

Is it time to re-engineer geotechnical seismic refraction methods?

机译:是时候重新设计岩土技术地震折射方法了吗?

获取原文

摘要

Most current near-surface seismic refraction geotechnical operations are under-capitalized,they employ inefficient field procedures,and they deliver an outdated low resolution 2D product.In order to generate growth and more widespread use for environmental and geotechnical applications,it will be necessary to modernize the great majority of refraction operations.The most significant step will be the adoption of 3D methods,which emphasize the superior lateral resolution of geophysical methods,and which can generate more detailed geotechnical models of the subsurface.Furthermore,greater use of amplitudes,the other 50% of the data,is recommended to resolve many ambiguities with model-based inversion,to generate density models,and to recognize inhomogeneities such as voids.Implementing these advances will require more efficient approaches to data processing with full trace methods,such as the refraction convolution section (RCS),if the greatly increased volumes of 3D data and out-of-plane events are to be handled fficiently.Also,more efficient methods of data acquisition using roll-through methods with greatly increased channel counts are necessary for both 2D and 3D methods.These advances will require many geotechnical organizations to decide whether their core business is data acquisition and processing or alternatively,the provision of specialist geotechnical services through the interpretation and integration of results.Most of the technology required to modernize refraction methods already exists.Its adoption is being hindered by an "engineering culture" which emphasizes risk minimization,the strict adherence to standard procedures,the adoption of codes of practice and the use of "proven"products,all of which promote minimum standards rather than innovation and excellence.
机译:大多数电流近表面地震折射岩土工程均未欠大资本化,效率低下现场程序,并提供过时的低分辨率2D产品。为了为环境和岩土工程应用产生增长和更广泛的用途,将是必要的大多数折射作业现代化。最重要的一步将采用3D方法,这强调了地球物理方法的卓越横向分辨率,并且可以产生更详细的地下岩土性模型。诸如较大的幅度,幅度建议其他50%的数据解决了许多基于模型的反演的模糊,以生成密度模型,并识别不均匀性,例如空隙。可实现这些进步,需要更有效的数据处理方法,如折射卷积部分(RCS),如果大大增加的3D数据和平面外要处理的事件是有效的。可以使用具有大大增加的通道计数的滚动方法更有效的数据采集方法对于2D和3D方法是必要的。这些预付款需要许多岩土工业组织来决定他们的核心业务是否是数据采集通过解释和整合提供专家岩土服务的途径。尽管现代化折射方法所需的技术已经存在。采用“工程文化”受到强调风险最小化的“工程文化”的阻碍,严格的遵守为了标准程序,采用实践守则和使用“经过验证的”产品,所有这些都促进了最低标准而不是创新和卓越。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号