• 제목/요약/키워드: seismic factors

검색결과 421건 처리시간 0.022초

한반도 코다 $\varrho$의 비교 분석 (Comparative Study on Coda Attenuation of the Korean Peninsula)

  • 정태웅
    • 지구물리와물리탐사
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    • 제12권3호
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    • pp.263-267
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    • 2009
  • 한반도 지진자료의 총 감쇠상수($\varrho_t^{-1}$)를 고유감쇠($\varrho_i^{-1}$)와 산란감쇠($\varrho_s^{-1}$)값으로 분리된 결과를 바탕으로 다중산란 모델에 의한 이론코다감쇠($\varrho_{Cexp}^{-1}$)값을 구하고 단일산란 모델의 관측코다감쇠($\varrho_c^{-1}$)값 및 나머지 감쇠상수 값($\varrho_t^{-1}$, $\varrho_i^{-1}$,$\varrho_s^{-1}$)과 비교하였다. 그 결과, $\varrho_{Cexp}^{-1}$ 값은 $\varrho_i^{-1}$값에 근접한 모습이나, $\varrho_c^{-1}$값이 24 Hz 고주파수 대역을 제외한 대부분의 구간에서 $\varrho_i^{-1}$보다는 $\varrho_t^{-1}$에 가깝고 $\varrho_{Cexp}^{-1}$ 값과도 상이한 것으로 나타났다. 이러한 결과는 $\varrho_i^{-1}$$\varrho_s^{-1}$값이 실제로는 깊이에 따라 변하는 값임에도 불구하고 균일한 모델을 이용한 왜곡된 결과이다.

급속시공기술 개발을 위한 FRP로 보강된 프리캐스트 교각의 실험 연구 (An Experimental Study on Precast Bridge Piers Confined by FRP for Technical Development of Accelerated Construction)

  • 이승혜;이영호;황윤국;송재준
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 춘계 학술발표회 제20권1호
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    • pp.237-240
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    • 2008
  • 현재 우리나라 고속도로의 일부 도로와 교량들은 이미 노후화가 진행 중이며, 또한 증가하는 교통량을 소화하기 위해 교량의 보수 및 보강, 신축, 확장이 필요한 구간이 많은 실정이다. 이러한 교량 공사는 공사가 진행되는 동안 야기되는 사회적 민원이나 그 밖의 손실, 교통통제에 따른 우회차량의 경제적 손실등과 밀접하며 점점 중요한 문제로 부각되고 있다. 이러한 영향으로 교량 공사의 현장작업 최소화를 위해 다양한 프리캐스트 부재와 공법 등이 개발되고 있으며 새로운 소재를 적용하기 위한 연구 또한 진행 중이다. 본 연구에서는 프리캐스트형(形) CFFT 개발을 위해 축소모형 실험을 수행하였고, 결과 비교를 위해 동일한 제원의 현장타설형(形) RC교각과 현장타설형(形) CFFT 교각의 축소모형 실험도 수행하였다. 각 실험체의 하중-변위 곡선을 얻어 내하력을 비교하였고, 변위연성도를 구하여 내진성능을 비교해 보았다.

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옹벽의 활동에 따른 배면 동적토압의 변화 (Variation of Dynamic Earth Pressure Due to Sliding of Retaining Walls)

  • 윤석재;김성렬;황재익;김명모
    • 한국지반공학회논문집
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    • 제21권8호
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    • pp.55-61
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    • 2005
  • 현재 옹벽의 배면 동적토압을 산정할 때 주로 등가정적해석법인 Mononobe-Okabe 식이 이용되고 있다. 하지만 이식은 벽체와 뒤채움 지반간의 동적상호작용을 고려하지 못한다는 단점이 있다. 본 연구에서는 벽체와 뒤채움 지반간의 동적상호작용을 분석하기 위하여 건조 사질토로 뒤채움한 옹벽에 대하여 진동대 시험을 수행하였다. 벽체 단위중량, 입력가속도의 진폭 그리고 벽체 바닥면 거칠기를 변화시키면서 이들 각 인자가 동적토압에 미치는 영향을 분석하였다. 그 결과 벽체의 활동속도가 작은 경우에는 동적토압과 관성력간은 180도 위상차를 가졌지만 활동속도가 큰 경우에는 동적토압에 관성력과 동일한 위상을 가지는 작은 정점이 발생하였다. 동적토압의 크기는 벽체가속도와 벽체단위중량의 크기에 비례하였다. 또한 Mononobe-Okabe 방법으로 계산된 동적토압은 측정된 동적토압의 상한값으로 나타났다.

비선형 유효응력해석을 이용한 1995 Kobe 지진시 케이슨 안벽의 거동 평가 (Evaluation of Caisson Quay Wall Behavior during the 1995 Kobe Earthquake by Nonlinear Effective Stress Analysis)

  • 이진선;노경도
    • 한국지진공학회논문집
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    • 제20권6호
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    • pp.401-412
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    • 2016
  • On Tuesday, January 17, 1995, an earthquake of magnitude 7.2 struck the Port of Kobe. In effect, the port was practically destroyed. After a hazard investigation, researchers reached a consensus to adopt a performance-based design in port and harbor structures in Japan. A residual displacement of geotechnical structures after an earthquake is one of the most important engineering demands in performance-based earthquake-resistant design. Thus, it is essential to provide reliable responses of geotechnical structures after an earthquake through various techniques. Today, a nonlinear explicit response history analysis(NERHA) of geotechnical structures is the most efficient way to achieve this goal. However, verification of the effective stress analysis, including post liquefaction behavior, is difficult to perform at a laboratory scale. This study aims to rigorously verify the NERHA by using well-defined field measurements, existing numerical tools, and constitutive models. The man-made, Port Island, in Kobe provides intensive hazard investigation data, strong motion records of 1995 Kobe earthquake, and sufficient engineering parameters of the soil. Two dimensional numerical analysis was conducted on the caisson quay wall section at Port Island subjected to the 1995 Kobe earthquake. The analysis result matches very well with the hazard investigation data. The NERHA procedure presented in this paper can be used in further studies to explain and examine the effects of other factors on the seismic behavior of gravity quay walls in liquefiable soil areas.

한반도 남동부지역 코다 Q의 비교 분석 (Comparative Study on Coda Attenuation of the Southeastern Korean Peninsula)

  • 정태웅;최수현
    • 지구물리와물리탐사
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    • 제14권3호
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    • pp.249-253
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    • 2011
  • 한반도 남동부지역 지진자료의 고유감쇠($Q_i^{-1}$)와 산란감쇠($Q_s^{-1}$)값을 바탕으로 다중산란모델에 의한 이론코다감쇠 값(${Q_{Cexp}}^{-1}$)을 구하고 단일산란 모델의 관측 코다감쇠값($Q_C^{-1}$) 및 고유 및 산란 감쇠상수 값($Q_i^{-1}$, $Q_s^{-1}$)과 비교하였다. 그 결과, ${Q_{Cexp}}^{-1}$ 값은 $Q_i^{-1}$값에 근접한 전형적인 모습이나, $Q_C^{-1}$값이 고주파수 대역을 제외한 대부분의 구간에서 ${Q_{Cexp}}^{-1}$ 값과 상이한 것으로 나타났다. 향후 이러한 연구는 깊이에 따라 변화하는 감쇠값을 고려하여 진행되어야 할 것이다.

지진해일파의 월파를 고려한 해안안벽의 안정성평가 (Evaluation of Stability of Quay Wall Considering Overtopping of Tsunami)

  • 이광호;김도삼;김태형
    • 한국지반공학회논문집
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    • 제28권9호
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    • pp.31-45
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    • 2012
  • 본 연구에서는 월파시 해안안벽에 작용하는 지진과 지진해일의 영향에 대하여 한계평형상태해석법을 적용하여 안정성을 검토하였다. 지진해일파력에 대하여 TWOPM-3D를 적용하였으며, 특히 안벽의 뒷채움재를 투과성재료로 가정하여 지진해일파가 월파 후에 안벽배후에 작용하는 파력을 산정하였다. 그리고, 수동상태와 주동상태 조건에서 해안안벽의 안정성에 영향을 주는 요인인 지진해일파고, 뒷채움재의 수위, 수평 수직지진가속도계수, 내부마찰각, 벽마찰각, 간극수압비 등을 변화하여 활동과 전도에 대한 안벽 안전율의 변화특성을 시간에 따라 검토하였다. 이로부터 지진과 지진해일파의 작용하에 지진해일파가 안벽을 월파하는 경우 수동상태에 대한 안전율은 결과적으로 안전율을 증가시키는 요인으로 작용하는 반면, 주동상태에 대하여 결과적으로 안전율을 감소시키는 요인으로 작용함을 확인할 수 있었다.

Cyclic testing of scaled three-story special concentrically braced frame with strongback column

  • Chen, Chui-Hsin;Tsai, Yi-Rung;Tang, Yao
    • Earthquakes and Structures
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    • 제17권2호
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    • pp.163-173
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    • 2019
  • For Special Concentrically Braced Frame (SCBF), it is common that the damage concentrates at a certain story instead of spreading over all stories. Once the damage occurs, the soft-story mechanism is likely to take place and possibly to result in the failure of the whole system with more damage accumulation. In this study, we use a strongback column which is an additional structural component extending along the height of the building, to redistribute the excessive deformation of SCBF and activate more structural members to dissipate energy and thus avoid damage concentration and improve the seismic performance of SCBF. We tested one-third-scaled, three-story, double-story X SCBF specimens with static cyclic loading procedure. Three specimens, namely S73, S42 and S0, which represent different combinations of stiffness and strength factors ${\alpha}$ and ${\beta}$ for the strongback columns, were designed based on results of numerical simulations. Specimens S73 and S42 were the specimens with the strongback columns, and S0 is the specimen without the strongback column. Test results show that the deformation distribution of Specimen S73 is more uniform and more brace members in three stories perform nonlinearly. Comparing Drift Concentration Factor (DCF), we can observe 29% and 11% improvement in Specimen S73 and S42, respectively. This improvement increases the nonlinear demand of the third-story braces and reduces that of the first-story braces where the demand used to be excessive, and, therefore, postpones the rupture of the first-story braces and enhances the ductility and energy dissipation capacity of the whole SCBF system.

Fuzzy-based multiple decision method for landslide susceptibility and hazard assessment: A case study of Tabriz, Iran

  • Nanehkaran, Yaser A.;Mao, Yimin;Azarafza, Mohammad;Kockar, Mustafa K.;Zhu, Hong-Hu
    • Geomechanics and Engineering
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    • 제24권5호
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    • pp.407-418
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    • 2021
  • Due to the complexity of the causes of the sliding mass instabilities, landslide susceptibility and hazard evaluation are difficult, but they can be more carefully considered and regionally evaluated by using new programming technologies to minimize the hazard. This study aims to evaluate the landslide hazard zonation in the Tabriz region, Iran. A fuzzy logic-based multi-criteria decision-making method was proposed for susceptibility analysis and preparing the hazard zonation maps implemented in MATLAB programming language and Geographic Information System (GIS) environment. In this study, five main factors have been identified as triggering including climate (i.e., precipitation, temperature), geomorphology (i.e., slope gradient, slope aspect, land cover), tectonic and seismic parameters (i.e., tectonic lineament congestion, distribution of earthquakes, the unsafe radius of main faults, seismicity), geological and hydrological conditions (i.e., drainage patterns, hydraulic gradient, groundwater table depth, weathered geo-materials), and human activities (i.e., distance to roads, distance to the municipal areas) in the study area. The results of analyses are presented as a landslide hazard map which is classified into 5 different sensitive categories (i.e., insignificant to very high potential). Then, landslide susceptibility maps were prepared for the Tabriz region, which is categorized in a high-sensitive area located in the northern parts of the area. Based on these maps, the Bozgoosh-Sahand mountainous belt, Misho-Miro Mountains and western highlands of Jolfa have been delineated as risk-able zones.

Shake-table tests on moment-resisting frames by introducing engineered cementitious composite in plastic hinge length

  • Khan, Fasih A.;Khan, Sajjad W.;Shahzada, Khan;Ahmad, Naveed;Rizwan, Muhammad;Fahim, Muhammad;Rashid, Muhammad
    • Earthquakes and Structures
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    • 제23권1호
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    • pp.23-34
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    • 2022
  • This paper presents experimental studies on reinforced concrete moment resisting frames that have engineered cementitious composite (ECC) in plastic hinge length (PHL) of beam/column members and beam-column joints. A two-story frame structure reduced by a 1:3 scale was further tested through a shake-table (seismic simulator) using multiple levels of simulated earthquake motions. One model conformed to all the ACI-318 requirements for IMRF, whereas the second model used lower-strength concrete in the beam/column members outside PHL. The acceleration time history of the 1994 Northridge earthquake was selected and scaled to multiple levels for shake-table testing. This study reports the observed damage mechanism, lateral strength-displacement capacity curve, and the computed response parameters for each model. The tests verified that nonlinearity remained confined to beam/column ends, i.e., member joint interface. Calculated response modification factors were 11.6 and 9.6 for the code-conforming and concrete strength deficient models. Results show that the RC-ECC frame's performance in design-based and maximum considered earthquakes; without exceeding maximum permissible drift under design-base earthquake motions and not triggering any unstable mode of damage/failure under maximum considered earthquakes. This research also indicates that the introduction of ECC in PHL of the beam/column members' detailing may be relaxed for the IMRF structures.

Buckling resistance behavior of WGJ420 fire-resistant weathering steel columns under fire

  • Yiran Wu;Xianglin Yu;Yongjiu Shi;Yonglei Xu;Huiyong Ban
    • Steel and Composite Structures
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    • 제47권2호
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    • pp.269-287
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    • 2023
  • The WGJ420 fire-resistant weathering (FRW) steel is developed and manufactured with standard yield strength of 420 MPa at room temperature, which is expected to significantly enhance the performance of steel structures with excellent fire and corrosion resistances, strong seismic capacity, high strength and ductility, good resilience and robustness. In this paper, the mechanical properties of FRW steel plates and buckling behavior of columns are investigated through tests at elevated temperatures. The stress-strain curves, mechanical properties of FRW steel such as modulus of elasticity, proof strength, tensile strength, as well as corresponding reduction factors are obtained and discussed. The recommended constitutive model based on the Ramberg-Osgood relationship, as well as the relevant formulas for mechanical properties are proposed, which provide fundamental mechanical parameters and references. A total of 12 FRW steel welded I-section columns with different slenderness ratios and buckling load ratios are tested under standard fire to understand the global buckling behavior in-depth. The influences of boundary conditions on the buckling failure modes as well as the critical temperatures are also investigated. In addition, the temperature distributions at different sections/locations of the columns are obtained. It is found that the buckling deformation curve can be divided into four stages: initial expansion stage, stable stage, compression stage and failure stage. The fire test results concluded that the residual buckling capacities of FRW steel columns are substantially higher than the conventional steel columns at elevated temperatures. Furthermore, the numerical results show good agreement with the fire test results in terms of the critical temperature and maximum axial elongation. Finally, the critical temperatures between the numerical results and various code/standard curves (GB 51249, Eurocode 3, AS 4100, BS 5950 and AISC) are compared and verified both in the buckling resistance domain and in the temperature domain. It is demonstrated that the FRW steel columns have sufficient safety redundancy for fire resistance when they are designed according to current codes or standards.