Ambient noise as the new source for urban engineering seismology and earthquake engineering: a case

来源 :Earthquake Science | 被引量 : 0次 | 上传用户:chenzj071
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
In highly populated urban centers, traditional seismic survey sources can no longer be properly applied due to restrictions in modern civilian life styles. The ambient vibration noise, including both microseisms and microtremor, though are generally weak but available anywhere and anytime, can be an ideal supplementary source for conducting seismic surveys for engineering seismology and earthquake engineering. This is fundamentally supported by advanced digital signal processing techniques for effectively extracting the useful information out from the noise. Thus, it can be essentially regarded as a passive seismic method. In this paper we first make a brief survey of the ambient vibration noise, followed by a quick summary of digital signal processing for passive seismic surveys. Then the applications of ambient noise in engineering seismology and earthquake engineering for urban settings are illustrated with examples from Beijing metropolitan area. For engineering seismology the example is the assessment of site effect in a large area via microtremor observations. For earthquake engineering the example is for structural characterization of a typical reinforced concrete high-rise building using background vibration noise.By showing these examples we argue that the ambient noise can be treated as a new source that is economical, practical, and particularly valuable to engineering seismology and earthquake engineering projects for seismic hazard mitigation in urban areas. Intense populated urban centers, traditional seismic survey sources can no longer be properly applied due to restrictions in modern civilian life styles. The ambient vibration noise, including both microseisms and microtremor, though are generally weak but available anywhere and anytime, can be an ideal supplementary source for conducting seismic surveys for engineering seismology and earthquake engineering. This is fundamentally supported by advanced digital signal processing techniques for effectively extracting the useful information out from the noise. we first make a brief survey of the ambient vibration noise, followed by a quick summary of digital signal processing for passive seismic surveys. Then the applications of ambient noise in engineering seismology and earthquake engineering for urban settings are illustrated with examples from Beijing metropolitan area. For engineering seismology the exam For earthquake engineering the example is for structural characterization of a typical reinforced concrete high-rise building using background vibration noise.By showing these examples we argue that the ambient noise can be treated as a new source that is economical, practical, and particularly valuable to engineering seismology and earthquake engineering projects for seismic hazard mitigation in urban areas.
其他文献
鸡西矿业集团公司张辰煤矿西三采区3
期刊
鸡西矿业集团公司张辰煤矿西三采区3
期刊
在清代朴学家群体中,段玉裁是其中的皎皎者,他在小学的三大领域——音韵、文字、训诂中都有重大的创获。在汉语上古音的研究方面,段氏的主要成就是:1、支脂之三分;2、真文分
鸡西矿业集团公司张辰煤矿西三采区3
期刊
在合庄,老马家算是富裕户子.虽说没到满嘴流油的程度,但他家的人,往当街一站,一个个都是油头粉面的.光祖上攒下的五十多亩水田.两亩地的大院子和十几间青砖红瓦的房屋,就足以
Roads constructed in fragile Siwaliks are prone to large number of instabilities. Bhalubang–Shiwapur section of Mahendra Highway lying in Western Nepal is one
在应试教育的影响下,大部分语文教师在教学过程中往往只关注“填鸭式”的知识教育,忽略了语文学科的教育精髓——思想道德教育.现如今在校的中学生大部分都是“零零后”,他们
鸡西矿业集团公司张辰煤矿西三采区3
期刊
虽然使用商务领航业务的时间很短,但众多的企业用户已经实实在在地感受到了这一业务带来的便利—用最低的成本搭建强大的IT系统。 Although the use of business pilot busi
赤杨,又称赏树。具有耐水湿、抗严寒、抗病虫、生长快的优良特性。江宁县汤山林场及汤山镇茅屋村沿沟边、水边散生,余村有少量分布。1953年林场职工将天然萌芽的赤杨选留壮条