• 제목/요약/키워드: effect of the cable vibration

검색결과 60건 처리시간 0.022초

비접촉식 진동 변위센서의 특성에 관한 연구 (Study on characteristics of noncontact vibrating displacement sensor)

  • 조철환;조성태;양경현
    • 동력기계공학회지
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    • 제15권2호
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    • pp.13-18
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    • 2011
  • This thesis is about the result of conducting a specific experiment for the development of noncontact vibration displacement sensor for measuring the spindle vibration that is used for conditional monitoring of machinery. One should be careful when using the eddy current type displacement sensor because the sensitivity of it is different according to the quality of the material. While the probe used for nondestructive inspection adopts the effect of transmitting the material by using the high frequency domain, the eddy current type displacement sensor uses the lower frequency of around 1MHz. Also, while the nondestructive probe uses the method of enhancing output by using the resonance zone, the vibration displacement sensor utilizes the stable zone by avoiding the resonance zone. Since the oscillator of the converter uses the "L" element as Probe, its characteristic changes with the variation of a relevant impedance. In other words, if the length of Probe's Cable gets extended (Impedance increase), the sensitivity declines accordingly. The effect of surrounding temperature was small, but the influence of the quality of Sensor Coil used was high. Moreover, following an experimental demonstration of the phenomenon where the sensitivity decreases as the frequency of the tested material increases from a frequency response test, the maximum frequency that could be measured was approximately 1KHz. It was noted that the degree of precision could be maintained by using the gap of the probe in the linear zone at the installation site.

Modeling of wind and temperature effects on modal frequencies and analysis of relative strength of effect

  • Zhou, H.F.;Ni, Y.Q.;Ko, J.M.;Wong, K.Y.
    • Wind and Structures
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    • 제11권1호
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    • pp.35-50
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    • 2008
  • Wind and temperature have been shown to be the critical sources causing changes in the modal properties of large-scale bridges. While the individual effects of wind and temperature on modal variability have been widely studied, the investigation about the effects of multiple environmental factors on structural modal properties was scarcely reported. This paper addresses the modeling of the simultaneous effects of wind and temperature on the modal frequencies of an instrumented cable-stayed bridge. Making use of the long-term monitoring data from anemometers, temperature sensors and accelerometers, a neural network model is formulated to correlate the modal frequency of each vibration mode with wind speed and temperature simultaneously. Research efforts have been made on enhancing the prediction capability of the neural network model through optimal selection of the number of hidden nodes and an analysis of relative strength of effect (RSE) for input reconstruction. The generalization performance of the formulated model is verified with a set of new testing data that have not been used in formulating the model. It is shown that using the significant components of wind speeds and temperatures rather than the whole measurement components as input to neural network can enhance the prediction capability. For the fundamental mode of the bridge investigated, wind and temperature together apply an overall negative action on the modal frequency, and the change in wind condition contributes less to the modal variability than the change in temperature.

2차원 풍동실험을 통한 평행 경사 실린더의 웨이크 갤로핑 평가 (Evaluation of Wake Galloping for Inclined Parallel Cables by Two-Dimensional Wind Testes Tests)

  • 김선중;김호경;이상훈
    • 한국강구조학회 논문집
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    • 제23권6호
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    • pp.763-775
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    • 2011
  • 경사진 평행 병렬 사장재 케이블의 웨이크 갤로핑 발현 특성을 2차원 부분모형을 통하여 규명하였다. 경사진 병렬 사장재를 모사하기 위하여 두 실린더를 나란히 경사배치 하였으며 중심간격 변화에 따른 풍상측 및 풍하측 실린더의 진동을 관찰하였다. 실린더 지름의 여섯 배까지 케이블강교량설계지침의 허용값을 초과하는 진동이 관할되었다. 이는 설계 시 관용적으로 사용되는 검토기준이 비교적 적정함을 의미하는 것이다. 반면, 감쇠의 증가는 웨이크 갤로핑의 발현을 억재하는 데 효과적이지 않음을 확인할 수 있었다.

An Experimental Study on the Galloping of Inclined Cables

  • 김한수;이도형;김석중
    • 산업기술연구
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    • 제22권A호
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    • pp.137-144
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    • 2002
  • A series of wind tunnel tests was conducted to investigate the existence of the galloping instability of inclined dry cables and also to Identify the influence of some parameters on it. These parameters are the structural damping and cable surface roughness, which may have significant impact on the vibration characteristics. The test results showed both the divergent type of galloping instability and the limited amplitude high wind speed vortex shedding excitation. Galloping instability was observed in only one case. Parametric study shows that the vortex shedding oscillation can be easily suppressed with an increase of structural damping. It was also shown that the instability criterion indicated by earlier research was too conservative compared to the results obtained from the present study.

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Determination of flutter derivatives by stochastic subspace identification technique

  • Qin, Xian-Rong;Gu, Ming
    • Wind and Structures
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    • 제7권3호
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    • pp.173-186
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    • 2004
  • Flutter derivatives provide the basis of predicting the critical wind speed in flutter and buffeting analysis of long-span cable-supported bridges. In this paper, one popular stochastic system identification technique, covariance-driven Stochastic Subspace Identification(SSI in short), is firstly presented for estimation of the flutter derivatives of bridge decks from their random responses in turbulent flow. Secondly, wind tunnel tests of a streamlined thin plate model and a ${\Pi}$ type blunt bridge section model are conducted in turbulent flow and the flutter derivatives are determined by SSI. The flutter derivatives of the thin plate model identified by SSI are very comparable to those identified by the unifying least-square method and Theodorson's theoretical values. As to the ${\Pi}$ type section model, the effect of turbulence on aerodynamic damping seems to be somewhat notable, therefore perhaps the wind tunnel tests for flutter derivative estimation of those models with similar blunt sections should be conducted in turbulent flow.

Case study of random vibration analysis of train-bridge systems subjected to wind loads

  • Zhu, Siyu;Li, Yongle;Togbenou, Koffi;Yu, Chuanjin;Xiang, Tianyu
    • Wind and Structures
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    • 제27권6호
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    • pp.399-416
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    • 2018
  • In order to reveal the independent relationship between track irregularity and wind loads, the stochastic characteristics of train-bridge coupling systems subjected to wind loads were investigated by the multi-sample calculation. The vehicle was selected as 23 degrees of freedom dynamical model, and the bridge was described by three-dimensional finite element model. It was assumed that the wind loads were random processes with strong spatial correlation, while the track irregularities were stationary random ones. As a case study, a high-speed train running on a cable-stayed bridge subjected to wind loads was studied. The effect of rail irregularities was deemed to be independent of the effect of wind excitations on the coupling system in the same wind circumstance for the same project, leading to the conclusion that the effect of wind loads and moving vehicle could be calculated separately. The variance results of the stochastic responses of vehicle-bridge coupling system under the action of wind loads and rail irregularities together were equivalent to the sum of the variance of the responses induced by each excitation. Therefore, when one of the input excitations is different, only the effect of changed loads needs to be assessed. Moreover, the new calculated results were combined with the effect of unchanged loads to present the stochastic response of coupling system subjected to the different excitations, reducing the cost of computations. The stochastic characteristics, the CFD (cumulative distribution function) of the coupling system with different wind velocities, vehicle speed, and vehicle marshalling were studied likewise.

압전 효과를 이용한 에너지 포집 시스템에 관한 연구 (A Study on the Energy Scavenging System Using Piezoelectric Effect)

  • 최범규;이제윤;이우훈;오재근
    • 한국정밀공학회지
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    • 제25권2호
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    • pp.115-122
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    • 2008
  • Mostly used sensors have wired powering and two-way cable systems. It is difficult to employ wired sensor network in ubiquitous era because of a number of sensors and cables. Therefore, sensor networks move from wired systems to wireless systems for the future. However, the power source is a critical obstacle for wireless sensornodes. This research represents the new power source which supplies energy sensor node, maintains over 10 years, and thus replaces batteries with limit of lifetime. The system with piezo materials scavenges extra energies such as vibration and acceleration from the environment. Then it converts the scavenged mechanical energy to electrical energy for powering a sensor, a controller and a circuit for regulating voltage and transmitting sensor value. This study explains the properties of piezo material through theoretical analysis and experiments, and demonstrates powering sensor and transmitting data with stored energy (35mJ) for 14 sec. The developed system provides a solution to overcome the critical problem of making up wireless sensor networks.

Wake effects of an upstream bridge on aerodynamic characteristics of a downstream bridge

  • Chen, Zhenhua;Lin, Zhenyun;Tang, Haojun;Li, Yongle;Wang, Bin
    • Wind and Structures
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    • 제29권6호
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    • pp.417-430
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    • 2019
  • To study the wake influence of an upstream bridge on the wind-resistance performance of a downstream bridge, two adjacent long-span cable-stayed bridges are taken as examples. Based on wind tunnel tests, the static aerodynamic coefficients and the dynamic response of the downstream bridge are measured in the wake of the upstream one. Considering different horizontal and vertical distances, the flutter derivatives of the downstream bridge at different angles of attack are extracted by Computational Fluid Dynamics (CFD) simulations and discussed, and the change in critical flutter state is further studied. The results show that a train passing through the downstream bridge could significantly increase the lift coefficient of the bridge which has the same direction with the gravity of the train, leading to possible vertical deformation and vibration. In the wake of the upstream bridge, the change in lift coefficient of the downstream bridge is reduced, but the dynamic response seems to be strong. The effect of aerodynamic interference on flutter stability is related to the horizontal and vertical distances between the two adjacent bridges as well as the attack angle of incoming flow. At large angles of attack, the aerodynamic condition around the downstream girder which may drive the bridge to torsional flutter instability is weakened by the wake of the upstream bridge, and the critical flutter wind speed increases at this situation.

서울지하철 터널의 T.R.c.M. 공법 적용 사례 연구 (An application of the tubular roof construction method for Seoul subway tunnel construction)

  • 지홍근;유광호;박연준
    • 한국터널지하공간학회 논문집
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    • 제6권4호
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    • pp.345-356
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    • 2004
  • 지하구조물을 축조하는 공법으로 기존에 가장 많이 사용해 온 것이 개착식 공법이나, 지상교통 흐름을 방해하고 공사소음 및 주변 지반의 침하로 인한 민원 발생 등 많은 문제점을 야기해 왔다. 많은 경우에 있어 지중에 매설된 상수도관 하수도관 도시가스관 고압 전력구 통신 케이블 등 지중 매설물의 위치가 정확하게 파악되지 않아서 안전한 시공에 어려움이 크고, 개착공사 시 지하지장물의 이설로 인한 공지지연 및 추가공사비가 소요될 것으로 판단되다. 따라서 본 논문에서는 기존 지하구조물 축조공법을 개선하여 슬래브강관과 PC벽체 트렌치를 이용한 터널축조공법 (T.R.c.M.)을 서울지하철 현장에 적용한 시공사례를 소개하고자 한다. 연구결과, T.R.c.M.공법은 진동과 소음을 최소화하여 주변환경과 교통의 흐름에 전혀 지장을 주지 않고 안정적으로 터널을 축조할 수 있는 공법임을 알 수 있었다.

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영상처리기법을 이용한 다중 변위응답 측정 알고리즘의 검증 (Verification of Multi-point Displacement Response Measurement Algorithm Using Image Processing Technique)

  • 김성완;김남식
    • 대한토목학회논문집
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    • 제30권3A호
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    • pp.297-307
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    • 2010
  • 최근 토목, 건축 구조물의 유지관리 기술에 대한 관심이 커지고 있으며 구조물의 성능저하 및 노후화 등으로 구조적 안전성의 검토가 요구되는 구조물의 수가 급증하고 있는 실정이다. 그리고 구조물의 노후화 및 부재의 균열 등으로 인하여 강성이 저하되면 구조물의 동특성에 변화가 나타나게 되며 구조물의 실제 거동상태에서 동특성을 분석하여 손상부위와 손상정도를 정확히 판단하는 것은 중요한 문제이다. 구조물 모니터링에 사용되는 대표적 계측장비가 동적계측기이다. 기존의 동적계측기는 측정 센서와 장비를 연결하는 케이블 길이가 길어질 경우 신뢰할 수 있는 데이터를 얻기 힘들고 각 센서와 계측기를 1:1로 연결하는 방식을 취하고 있어 비경제적이다. 따라서 센서를 부착하지 않고 원거리에서 진동을 측정하는 방법이 필요하다. 구조물의 진동을 계측하기 위하여 적용 가능한 비접촉식 방법으로는 레이저의 도플러효과, GPS를 이용하는 방법 및 영상처리기법 등이 대표적이다. 레이저의 도플러효과를 이용하는 방법은 정확도가 상대적으로 높지만 비경제적이며, GPS를 이용하는 방법은 장비가 고가이고 신호 자체의 오차와 데이터 취득속도의 제약이 있는 단점이 있다. 그러나 영상신호를 이용하는 방법은 간편하고 경제적이며 접근이 어려운 구조물의 진동 및 동특성 추출에 적합하다. 기존에도 센서를 대신하여 카메라의 영상신호를 이용하는 연구가 수행되기도 하였으나, 기존의 방법은 구조물에 부착된 표적의 한 지점을 기록한 후 영상처리기법을 이용하여 진동을 측정하는 방법으로서 측정 대상이 비교적 국한적일 수 있다. 그러므로 본 연구에서는 영상처리기법을 이용하여 구조물의 다중 변위응답을 측정할 수 있는 방법의 타당성을 검증하기 위하여 진동대 실험 및 현장재하실험을 수행하였다.