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传递函数在地下工程地震响应研究中的应用 被引量:14
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作者 盛谦 崔臻 +1 位作者 刘加进 冷先伦 《岩土力学》 EI CAS CSCD 北大核心 2012年第8期2253-2258,共6页
将传递函数引入地下工程地震响应的研究,提出利用传递函数进行地下工程地震响应的频谱特性分析、地震响应时频估算以及地震动输入频谱修正的3种应用方法。基于白鹤滩水电站13#机组剖面地下洞室群,对这3种方法进行了探讨及检验。结果表明... 将传递函数引入地下工程地震响应的研究,提出利用传递函数进行地下工程地震响应的频谱特性分析、地震响应时频估算以及地震动输入频谱修正的3种应用方法。基于白鹤滩水电站13#机组剖面地下洞室群,对这3种方法进行了探讨及检验。结果表明:传递函数可清晰表达地下工程在地震动作用下的输入、输出关系,描述洞室群各部位的动力特性,且与其他频谱特性研究方法得出的结论相一致。在自下而上的地震剪切波作用下,洞室底板部位的响应整体强于顶拱部位,且具有不同的主频段;但在3~4 Hz频段,顶拱的动力响应强于底板。采用有限带宽随机白噪声算得洞室群各部位的传递函数,再根据传递函数进行实际地震响应时频估算的方法是可行的,估算与验算结果吻合良好,该方法可以大幅度减少计算量,使得根据有限的计算结果把握特定工程的整体动力响应特征成为可能。根据已有研究成果,取洞室底部或河谷水面为地震响应的频谱控制点,基于传递函数对输入地震动时程进行频谱修正,可保证地下工程动力响应地震动输入机制的合理性。 展开更多
关键词 地下工程地震响应 传递函数 频谱特性 时频估算 频谱修正
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Ultrasonic attenuation estimation based on time-frequency analysis 被引量:3
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作者 Gao Feng Wei Jian-Xin Di Bang-Rang 《Applied Geophysics》 SCIE CSCD 2019年第4期414-426,559,共14页
The quality factor(or Q value)is an important parameter for characterizing the inelastic properties of rock.Achieving a Q value estimation with high accuracy and stability is still challenging.In this study,a new meth... The quality factor(or Q value)is an important parameter for characterizing the inelastic properties of rock.Achieving a Q value estimation with high accuracy and stability is still challenging.In this study,a new method for estimating ultrasonic attenuation using a spectral ratio based on an S transform(SR-ST)is presented to improve the stability and accuracy of Q estimation.The variable window of ST is used to solve the time window problem.We add two window factors to the Gaussian window function in the ST.The window factors can adjust the scale of the Gaussian window function to the ultrasonic signal,which reduces the calculation error attributed to the conventional Gaussian window function.Meanwhile,the frequency bandwidth selection rules for the linear regression of the amplitude ratio are given to further improve stability and accuracy.First,the feasibility and influencing factors of the SR-ST method are studied through numerical testing and standard sample experiments.Second,artificial samples with different Q values are used to study the adaptability and stability of the SR-ST method.Finally,a further comparison between the new method and the conventional spectral ratio method(SR)is conducted using rock field samples,again addressing stability and accuracy.The experimental results show that this method will yield an error of approximately 36%using the conventional Gaussian window function.This problem can be solved by adding the time window factors to the Gaussian window function.The frequency bandwidth selection rules and mean slope value of the amplitude ratio used in the SR-ST method can ensure that the maximum error of different Q values estimation(Q>15)is less than 10%. 展开更多
关键词 Q value estimation Time-frequency spectrum ST Window factor Ultrasonic attenuation
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