• 제목/요약/키워드: Rotational direction

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Rotational Stability of AcrySof Toric Intraocular Lens Over Time: Influence of Capsulorhexis Contraction

  • Kim, Joong Hee;Cho, Kyong Jin
    • Medical Lasers
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    • 제9권1호
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    • pp.44-50
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    • 2020
  • Background and Objectives To evaluate the rotational stability of AcrySof toric intraocular lenses (IOL) by considering lapse of postoperative time and influence of capsulorhexis contraction. Materials and Methods A prospective, masked, single center study was conducted on 19 patients who had undergone microcoaxial cataract surgery and AcrySof toric IOL implantation. Slit-lamp retroillumination photographs of anterior segments were obtained from all patients after 1 week, 1 month and 3 months post-surgery. The degree of alteration of the postoperative IOL axis alignment and the amount of anterior capsular shrinkage were analyzed using Adobe Photoshop software. Results The mean degree of toric IOL axis misalignment was 2.18 (±20.2) degrees at 3 months follow-up. Quadrant analysis of the capsulorhexis aperture area at 1 week and 1 month post-operative, showed counterclockwise IOL rotation when the capsule contraction was dominant in the haptic part as well as clockwise rotation when dominant in the non-haptic part (p = 0.015). Conclusion The direction and degree of AcrySof toric IOL rotation differed throughout the follow-up period. Since most misalignments were found on the first post-operative day, physicians should try to minimize peri-operative risk factors that influence IOL rotation. There was also a correlation between the part of anterior capsule contraction and the direction of IOL rotation.

전동차용 견인전동기의 열유동 특성에 관한 전산해석 (Numerical Analysis on Heat Transfer and Fluid Flow Characteristics of Traction Motor for Electric Car)

  • 남성원;김영남;채준희
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 1998년도 추계학술대회 논문집
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    • pp.137-143
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    • 1998
  • Numerical simulation is conducted to clarify the heat transfer and fluid flow characteristics of traction motor for electric car SIMPLE algorithm based on finite volume method is used to make linear algebra equation. The governing equations are solved by TDMA(TriDiagonal Matrix Algorithm) with line-by-line method and block correction. From the results of simulation, the characteristics of cooling pattern is strongly affected by the size of hole in stator core. In the case of high rotational speed of rotor, temperature difference along the axial direction is more decreased than that of low rotational speed.

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Joint Estimation of TOA and DOA in IR-UWB System Using Sparse Representation Framework

  • Wang, Fangqiu;Zhang, Xiaofei
    • ETRI Journal
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    • 제36권3호
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    • pp.460-468
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    • 2014
  • This paper addresses the problem of joint time of arrival (TOA) and direction of arrival (DOA) estimation in impulse radio ultra-wideband systems with a two-antenna receiver and links the joint estimation of TOA and DOA to the sparse representation framework. Exploiting this link, an orthogonal matching pursuit algorithm is used for TOA estimation in the two antennas, and then the DOA parameters are estimated via the difference in the TOAs between the two antennas. The proposed algorithm can work well with a single measurement vector and can pair TOA and DOA parameters. Furthermore, it has better parameter-estimation performance than traditional propagator methods, such as, estimation of signal parameters via rotational invariance techniques algorithms matrix pencil algorithms, and other new joint-estimation schemes, with one single snapshot. The simulation results verify the usefulness of the proposed algorithm.

광치폭 헬리컬 기어의 3 방향 진동 측정 (3 Directional Vibration Measurement of Wide Face Width Helical Gears)

  • 박찬일;조도현
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 추계학술대회
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    • pp.661-666
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    • 2004
  • The purpose of this study is to measure the rotational vibration, radial vibration, and axial vibration for the helical gear with the wide face width relative to the whole depth. For this purpose, the experimental apparatus is designed and manufactured. The gear vibration of each direction is measured by the accelerometers attached at the gear body. As a result, meshing frequency and second harmonic component are greatly contributed to the gear vibration. As the rotational speed is increased, meshing frequency component has the more significant peak than the second harmonic one. However, the doubled torque decreases the vibration magnitude on the contrary and changes order of the vibration magnitude in each direction.

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등간격 선형어레이와 등간격 원형어레이 레이더를 위한 ESPRIT 표적 위치 추정 기법 (ESPRIT target position estimation with uniform linear array and uniform circular array)

  • 남궁걸;임종태;유도식
    • 한국항행학회논문지
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    • 제16권6호
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    • pp.952-959
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    • 2012
  • 이 논문에서 우리는 송신기와 수신기에 각각 등간격 선형 어레이 (ULA : Uniform Linear Array)와 등간격 원형 어레이(UCA : Uniform Circular Array)를 사용하는 MIMO (Multiple Input Multiple Output) 레이더 시스템을 위한 ESPRIT (Estimation of Signal Parameter via Rotational Invariance Technique) 알고리듬 기반 표적 위치 추정 기법을 제안한다. 수신 안테나가 등간격 선형 어레이인 경우의 ESPRIT과 달리 등간격 원형 어레이인 경우 부어레이의 수신 신호 벡터 간 순환 불변성 (Rotational Invariance)이 만족하지 않는다. 이를 해결하기 위한 연구가 진행되었으나 송신각 추정 문제는 고려되지 않았다. 이 논문에서는 송신 안테나와 수신 안테나를 모두 고려한 ESPRIT 알고리듬을 제안하여 송신 고도각, 수신 고도각, 그리고 수신 방위각을 동시에 추정하는 방법을 소개하고자 한다.

조종면이 장착된 회전하는 발사체에서의 공력특성 분석에 관한 실험적 연구 (An Experimental Study of Aerodynamic Characteristics on a Projectile with Counter-Rotating Head Installed Fins)

  • 박영하;제상언;조수용
    • 한국항공우주학회지
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    • 제41권5호
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    • pp.357-365
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    • 2013
  • 본 연구에서는 미사일형상의 몸체(쉘)와 쉘의 헤드부에 조종면을 부착한 발사체에서 힘과 모멘트를 측정하였다. 쉘과 헤드부는 상호 분리되어 있으며, 쉘은 모터에 의하여 회전되도록 하였다. 헤드부는 쉘의 회전방향과는 반대로 회전하며, 헤드부의 회전은 한 쌍의 조종면에 동일한 회전 방향으로 각변위을 주어서 비행하는 경우에 자연적으로 회전력이 발생되도록 하였다. 실험에서의 유속은 40 m/s로 설정하였으며, 레이놀드수는 헤드직경을 기준으로 $1.3{\times}10^5$였다. 발사체의 자세제어 및 방향전환을 위하여 헤드부에 있는 다른 한쌍의 조종면은 각변위의 조정이 가능하도록 하였다. 회전하는 발사체에서 힘과 모멘트의 변화가 측정되었으며, 측정된 결과로부터 FFT 분석을 통하여 영향력이 있는 진폭과 주파수를 얻었다.

고구마 덩굴처리기 개발 (Development of a Vine Crusher for Harvesting Sweet Potato)

  • 강성일;유수남;최용;김영주
    • Journal of Biosystems Engineering
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    • 제36권1호
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    • pp.9-14
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    • 2011
  • This study was carried out to develop a vine crusher for harvesting sweet potato. The experimental two-row vine crusher attachable to agricultural tractor composed of vine crushing part with frail type vine crushing blades and vine lifting blades, power transmission part with chain and gear transmission mechanism, crushing height control part with two control wheels and manual levers, and implement frames, was designed and fabricated. And this vine crushing performance was also analyzed. From vine crushing tests, backward travel direction (i.e., rotational direction of the vine crushing blades) showed better vine crushing performance than forward travel direction. Crushing ratio of remained vine was increased, and length of remained vine and length of crushed vine were decreased as working speed was decreased and rotational speed of vine crushing blades was increased. At a working speed of 0.27 m/s and rotational speed of vine crushing blades of 800 rpm, crushing ratio of remained vine was 98%, length of remained vine was 104 mm, and length of crushed vine was 327 mm. But, when crushing vine on irregular ridges, vines and mulching vinyl were wound in the vine crushing part. Therefore, change of location of power transmission chain mechanism, and an automatic control device for controlling crushing height were needed.

Dynamic analysis of offshore wind turbines

  • Zhang, Jian-Ping;Wang, Ming-Qiang;Gong, Zhen;Shi, Feng-Feng
    • Wind and Structures
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    • 제31권4호
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    • pp.373-380
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    • 2020
  • For large-scale 5MW offshore wind turbines, the discrete equation of fluid domain and the motion equation of structural domain with geometric nonlinearity were built, the three-dimensional modeling of the blade considering fluid-structure interaction (FSI) was achieved by using Unigraphics (UG) and Geometry modules, and the numerical simulation and the analysis of the vibration characteristics for wind turbine structure under rotating effect were carried out based on ANSYS software. The results indicate that the rotating effect has an apparent effect on displacement and Von Mises stress, and the response and the distribution of displacement and Von Mises stress for the blade in direction of wingspan increase nonlinearly with the equal increase of rotational speeds. Compared with the single blade model, the blade vibration period of the whole machine model is much longer. The structural coupling effect reduces the response peak value of the blade displacement and Von Mises stress, and the increase of rotational speed enhances this coupling effect. The maximum displacement difference between two models decreases first and then increases along wingspan direction, the trend is more visible with the equal increase of rotational speed, and the boundary point with zero displacement difference moves towards the blade root. Furthermore, the Von Mises stress difference increases gradually with the increase of rotational speed and decreases nonlinearly from the blade middle to both sides. The results can provide technical reference for the safe operation and optimal design of offshore wind turbines.

6축 힘측정판을 이용한 수직방향 전신진동에 대한 겉보기질량 및 겉보기편심질량에 대한 고찰 (Study of Apparent Mass and Apparent Eccentric Mass to Vertical Whole-body Vibration by Using Strain-gage Type Six-axis Force Plate)

  • 전경진;김민석;안세진;정의봉;유완석
    • 한국소음진동공학회논문집
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    • 제21권10호
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    • pp.897-904
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    • 2011
  • When whole-body is exposed to vertical vibration, asymmetry shape of human body affects the response on the translational(fore-aft, lateral, vertical) and rotational(roll, pitch, yaw) motion. While the translational motion has been studied with various titles, it has been rare to study the rotational motion of human body exposed to vertical excitation because of lack of experimental equipment. This study was performed by using a 6-axis force plate installing strain gage type sensors for the rotational response. Sixteen male subjects were exposed to vertical vibration on rigid seat in order to investigate apparent mass of three translational motion and apparent eccentric mass of three rotational motion. Random signal was generated to make excitation vibration which was on an effective frequency range of 3~40 Hz, and magnitude of 0.224 m/$s^2$ r.m.s. The frequency range and magnitude used was selected for the vibration of passenger vehicle on idling condition. As the result, cross-axis apparent masses of fore-and-aft and lateral direction were not significant showing 20 % and 3 % of vertical apparent mass relatively. And apparent eccentric mass of pitch motion was dominant when compared to that of roll and yaw motion, which is reasoned by asymmetry direction of human body sitting on a seat.