• 제목/요약/키워드: Shear wave dispersion

검색결과 90건 처리시간 0.01초

Dispersion of Rayleigh Waves in the Korean Peninsula

  • ;이기화
    • 지구물리
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    • 제9권3호
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    • pp.231-240
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    • 2006
  • The crustal structure of the Korean Peninsula was investigated by analyzing phase velocity dispersion data of Rayleigh waves. Earthquakes recorded by three component broad-band velocity seismographs during 1999-2004 in South Korea were used in this study. The fundamental mode Rayleigh waves were extracted from vertical components of seismograms by multiple filter technique and phase match filter method. Phase velocity dispersion curves of the fundamental mode signal pairs for 14 surface wave propagation paths on the great circle in the range 10 to 80 sec were computed by two-station method. Treating the shear velocity of each layer as an independent parameter, phase velocity data of Rayleigh wave were inverted. All the result models can be explained by a rather homogeneous crust of shear-wave velocity increasing from 2.8 to 3.25 km/sec from top to about 33 km depth without any distinctive crustal discontinuities and an uppermost mantle of shear-wave velocity between 4.55 and 4.67 km/sec. Our results turn out to agree well with recent study of Cho et al. (2006 b) based on the analysis of seismic background noises to recover short-period (0.5-20 sec) Rayleigh- and Love-wave group velocity dispersion characteristics.

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전단키형 인터로킹 케이슨 방파제의 파력분산효과 (Dispersion Effects of Wave Force on Interlocking Caisson Breakwater with Shear-Key)

  • 송성훈;박민수;정연주;황윤국
    • 대한토목학회논문집
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    • 제39권1호
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    • pp.195-201
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    • 2019
  • 장대케이슨은 1함당 작용하는 평균파력이 감소하는 파력의 평활화 효과로 인해 케이슨의 활동파괴에 대한 구조안정성을 향상시킬 수 있으나, 장대케이슨은 제작 및 시공상의 이유로 사용하는데 어려움이 있다. 이에 대한 대안으로 개별 케이슨을 인접한 케이슨과 서로 인터로킹시켜 파력을 분산시키는 인터로킹 케이슨에 대한 연구가 되고 있다. 본 연구에서는 케이슨의 장대화가 가능한 전단키형 인터로킹 케이슨을 제안하고, 해석적 방법을 통해 전단키에 의한 파력분산효과를 평가하였다. 해석결과, (1) 전단키형 인터로킹 케이슨은 좌우비대칭 형상으로 인해 구조물 거동 및 파력분산효과 또한 좌우비대칭으로 나타난다. (2) 파력분산효과는 전단키의 전단경사각, 높이, 전단길이비 등 전단키의 형상보다는 각 케이슨에 작용하는 파력 분포 및 특성에 더 큰 영향을 받는다. (3) 장대화된 인터로킹 케이슨 방파제는 완전일체형 방파제와 거의 유사한 거동 및 파력분산효과를 나타낸다.

Dispersion of shear wave in a pre-stressed hetrogeneous orthotropic layer over a pre-stressed anisotropic porous half-space with self-weight

  • Kakar, Rajneesh;Kakar, Shikha
    • Structural Engineering and Mechanics
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    • 제59권6호
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    • pp.951-972
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    • 2016
  • The purpose of this study is to illustrate the propagation of the shear waves (SH-waves) in a prestressed hetrogeneous orthotropic media overlying a pre-stressed anisotropic porous half-space with self weight. It is considered that the compressive initial stress, mass density and moduli of rigidity of the upper layer are space dependent. The proposed model is solved to obtain the different dispersion relations for the SH-wave in the elastic-porous medium of different properties. The effects of compressive and tensile stresses along with the heterogeneity, porosity, Biot's gravity parameter on the dispersion of SH-wave are shown numerically. The wave analysis further indicates that the technical parameters of upper and lower half-space affect the wave velocity significantly. The results may be useful to understand the nature of seismic wave propagation in geophysical applications and in the field of earthquake and material science engineering.

SH파 초동주시 역산과 표면파 분산곡선 역산으로부터 구한 횡파속도 단면 비교 (Comparison of Shear-wave Velocity Sections from Inverting SH-wave Traveltimes of First Arrivals and Surface Wave Dispersion Curves)

  • 이창민;김기영
    • 지구물리
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    • 제8권2호
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    • pp.67-74
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    • 2005
  • SH파 굴절법 토모그래피와 표면파 분산자료 역산을 통하여 2차원 S파 속도단면을 각각 구하였고, 비교 목적으로 P파 속도단면도 함께 구하였다. P파와 표면파는 지표에 수직하게 타격하여 발생시켰으며, 100 Hz와 4.5 Hz 수직지오폰 24개로 각각 수신하였다. SH파는 50 kg 나무원목의 좌우를 타격하여 발생시켰고, 8 Hz 수평 지오폰으로 수신하였으며, 좌측타격에서 우측타격을 빼주어 SH파 신호를 강화하였다. 초동주시 토모그램과 표면파 분산곡선으로부터 역산과정을 거쳐서 구한 S파 속도단면을 비교한 결과, 두 단면의 전체적인 양상은 서로 비슷하지만, 표면파 역산으로 구한 S파 속도단면이 전반적으로 작은 값을 갖는 경향을 보인다. 잡음에 취약한 SH파는 P파 및 PS 변환파 도달 이후에 기록되어 초동선택이 어려운 문제가 있으며, 균질한 수평모델을 가정하는 표면파의 분산곡선 역산은 측방 변화가 심한 곳에서 지하구조를 정확히 밝히는데 한계가 있음을 보인다.

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Analysis of the Dispersion Relation of Elastic Waves Propagating on Vibrating Cylindrical Shells

  • Kil, Hyun-Gwon
    • The Journal of the Acoustical Society of Korea
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    • 제20권4E호
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    • pp.45-51
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    • 2001
  • This paper examines the dispersion relation governing the wave propagation on cylindrical shells. The assumption of thin shells allows the dispersion relation to be separated into three relations related to the propagation of flexural waves and two types of membrane waves. Those relations are used to identify the characteristics of the wave number curves. The dispersion relation provides two and three closed wave number curves below and above the ring frequency. Above the ring frequency three wave number curves are clearly identified to be those of flexural, shear and longitudinal waves, respectively. Below the ring frequency, the characteristics of two wave number curves are identified with dependence of the direction of wave propagation.

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Shear waves propagation in an initially stressed piezoelectric layer imperfectly bonded over a micropolar elastic half space

  • Kumar, Rajneesh;Singh, Kulwinder;Pathania, D.S.
    • Structural Engineering and Mechanics
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    • 제69권2호
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    • pp.121-129
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    • 2019
  • The present study investigates the propagation of shear waves in a composite structure comprised of imperfectly bonded piezoelectric layer with a micropolar half space. Piezoelectric layer is considered to be initially stressed. Micropolar theory of elasticity has been employed which is most suitable to explain the size effects on small length scale. The general dispersion equations for the existence of waves in the coupled structure are obtained analytically in the closed form. Some particular cases have been discussed and in one particular case the dispersion relation is in well agreement to the classical-Love wave equation. The effects of various parameters viz. initial stress, interfacial imperfection and micropolarity on the phase velocity are obtained for electrically open and mechanically free system. Numerical computations are carried out and results are depicted graphically to illustrate the utility of the problem. The phase velocity of the shear waves is found to be influenced by initial stress, interface imperfection and the presence of micropolarity in the elastic half space. The theoretical results obtained are useful for the design of high performance surface acoustic devices.

천부지각 2차원 속도구조를 위한 레일리파의 군속도와 위상속도 역산의 비교 연구 (A Study of the comparison of Inversion of Rayleigh wave Group and Phase Velocities for Regional Near-Surface 2-Dimensional Velocity Structure)

  • 이보라;정희옥
    • 한국지구물리탐사학회:학술대회논문집
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    • 한국지구물리탐사학회 2006년도 공동학술대회 논문집
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    • pp.51-59
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    • 2006
  • 서해안 조간대에서 24 channel 탐사기로 획득한 표면파 자료의 위상속도와 군속도를 구한다음, 이를 역산하여 그 결과를 비교하였다. 위상속도의 분산곡선은 tau-p stacking 방법에 의하여, 군속도의 분산곡선은 wavelet analysis와 Multiple Filtering Technique의 두가지 방법을 사용하여 구하였다. 위상속도의 오차가 군속도의 오차보다 더 큰 것을 확인하였다. 군속도의 경우, wavelet analysis가 Multiple Filtering Technique 보다 fundamental mode와 higher mode를 구분하는데 더 효과적이었다. 역산결과, 군속도의 fundamental mode와 1st higher mode 를 동시에 사용했을 때, 공간적 해상도가 가장 좋았다. 이연구는 천부 지반의 S파 속도 구조를 구하는데, 군속도의 higher mode를 포함한 군속도 분산곡선을 사용하는 것이 효과적임을 시사한다.

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Wave dispersion properties in imperfect sigmoid plates using various HSDTs

  • Batou, Belaid;Nebab, Mokhtar;Bennai, Riadh;Atmane, Hassen Ait;Tounsi, Abdeldjebbar;Bouremana, Mohammed
    • Steel and Composite Structures
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    • 제33권5호
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    • pp.699-716
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    • 2019
  • In this paper, wave propagations in sigmoid functionally graded (S-FG) plates are studied using new Higher Shear Deformation Theory (HSDT) based on two-dimensional (2D) elasticity theory. The current higher order theory has only four unknowns, which mean that few numbers of unknowns, compared with first shear deformations and others higher shear deformations theories and without needing shear corrector. The material properties of sigmoid functionally graded are assumed to vary through thickness according sigmoid model. The S-FG plates are supposed to be imperfect, which means that they have a porous distribution (even and uneven) through the thickness of these plates. The governing equations of S-FG plates are derived employed Hamilton's principle. Using technique of Navier, differential equations of S-FG in terms displacements are solved. Extensive results are presented to check the efficient of present methods to predict wave dispersion and velocity wave in S-FG plates.

한반도 북서부의 1차원 전단파 속도구조 (1-D Shear Wave Velocity Structure of Northwestern Part of Korean Peninsula)

  • 김태성
    • 자원환경지질
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    • 제52권6호
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    • pp.555-560
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    • 2019
  • 중국 지역 4개 지진에서 발생한 2~30초 범위의 레일리파를 이용하여 북한 지역의 1차원 전단파 속도구조를 구하였다. 레일리파는 남북한의 국경선 인근에 위치한 5개의 광대역 관측소(BRD, SNU, CHNB, YKB, KSA)에 양호하게 기록되었다. 다중필터분석를 이용하여 레일리파 기본모드 군속도가 계산되었고 이는 다시 위상부합필터를 적용하여 개선되었다. 2.9~3.2 km/s의 범위에 이르는 평균 분산곡선을 역산하여 전단파 속도를 구하였다. 지진원으로부터 BRD 관측소의 경로에서 추출된 4~6초 주기의 상대적으로 느린 군속도는 서해 서한만분지의 퇴적층군과 연관되었을 가능성이 있다. 14~20km의 상대적으로 깊은 지역 전단파 저속도층은 평남분지와 관련된 것으로 생각되며 낭림육괴와 평남분지에 분포하는 변성암 및 화강암체는 표면부터 14km 깊이의 빠른 전단파 속도와 일치한다.

Wave dispersion characteristics of porous graphene platelet-reinforced composite shells

  • Ebrahimi, Farzad;Seyfi, Ali;Dabbagh, Ali;Tornabene, Francesco
    • Structural Engineering and Mechanics
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    • 제71권1호
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    • pp.99-107
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    • 2019
  • Wave propagation analysis of a porous graphene platelet reinforced (GPLR) nanocomposite shell is investigated for the first time. The homogenization of the utilized material is procured by extending the Halpin-Tsai relations for the porous nanocomposite. Both symmetric and asymmetric porosity distributions are regarded in this analysis. The equations of the shell's motion are derived according to Hamilton's principle coupled with the kinematic relations of the first-order shear deformation theory of the shells. The obtained governing equations are considered to be solved via an analytical solution which includes two longitudinal and circumferential wave numbers. The accuracy of the presented formulations is examined by comparing the results of this method with those reported by former authors. The simulations reveal a stiffness decrease in the cases which porosity influences are regarded. Also, one must pay attention to the effects of longitudinal wave number on the wave dispersion curves of the nanocomposite structure.