• 제목/요약/키워드: 3D beam

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절곡된 타원형 도체평판 급전부를 갖는 포물선 반사판 안테나 설계 (Design of the Parabolic Reflector Antenna with Bended Elliptical Conductor Plate Feed)

  • 김병문;윤리호;홍재표
    • 한국전자통신학회논문지
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    • 제12권6호
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    • pp.989-996
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    • 2017
  • 제안된 지향성 펜슬빔 안테나는 절곡된 타원 도체평판을 갖는 도파관 급전부와 포물형 곡면 반사판으로 구성되어 있다. 반사판 뒤에서 삽입된 급전 도파관의 종단 부근 광벽에 위치한 두 개의 사각형 개구는 반사판 초점에 위치하며, 절곡된 타원 평판으로 전자파 에너지를 방출시킨다. 이 평판은 전자파 에너지를 일차 반사시키며, 주 반사판을 향하도록 설계되어 있다. 도파관 종단에 위치한 두 사각형 개구는 안테나 시스템의 임피던스 정합을 위해서 안쪽으로 돌출된 탭을 가지는데, 탭의 형태는 잘려진 타원형이다. 제안된 포물형 반사판 안테나의 반사판의 직경은 400 mm, 촛점은 134.23 mm 이며, 사용 중심주파수 16.5 GHz에서 안테나이득은 33.68 dBi, 3 dB 빔폭은 $3.3^{\circ}$, 반사손실 -15 dB 사용대역폭은 1.0 GHz 이상이 되도록 설계하여, HFSS-IE를 사용하여 검증하였다.

Vector form intrinsic finite-element analysis of static and dynamic behavior of deep-sea flexible pipe

  • Wu, Han;Zeng, Xiaohui;Xiao, Jianyu;Yu, Yang;Dai, Xin;Yu, Jianxing
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제12권1호
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    • pp.376-386
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    • 2020
  • The aim of this study was to develop a new efficient strategy that uses the Vector form Intrinsic Finite-element (VFIFE) method to conduct the static and dynamic analyses of marine pipes. Nonlinear problems, such as large displacement, small strain, and contact and collision, can be analyzed using a unified calculation process in the VFIFE method according to the fundamental theories of point value description, path element, and reverse motion. This method enables analysis without the need to integrate the stiffness matrix of the structure, because only motion equations of particles established according to Newton's second law are required. These characteristics of the VFIFE facilitate the modeling and computation efficiencies in analyzing the nonlinear dynamic problem of flexible pipe with large deflections. In this study, a three-dimensional (3-D) dynamical model based on 3-D beam element was established according to the VFIFE method. The deep-sea flexible pipe was described by a set of spatial mass particles linked by 3-D beam element. The motion and configuration of the pipe are determined by these spatial particles. Based on this model, a simulation procedure to predict the 3-D dynamical behavior of flexible pipe was developed and verified. It was found that the spatial configuration and static internal force of the mining pipe can be obtained by calculating the stationary state of pipe motion. Using this simulation procedure, an analysis was conducted on the static and dynamic behaviors of the flexible mining pipe based on a 1000-m sea trial system. The results of the analysis proved that the VFIFE method can be efficiently applied to the static and dynamic analyses of marine pipes.

Intraoral scanning of the edentulous jaw without additional markers: An in vivo validation study on scanning precision and registration of an intraoral scan with a cone-beam computed tomography scan

  • Julie Tilly Deferm;Frank Baan;Johan Nijsink;Luc Verhamme;Thomas Maal;Gert Meijer
    • Imaging Science in Dentistry
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    • 제53권1호
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    • pp.21-26
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    • 2023
  • Purpose: A fully digital approach to oral prosthodontic rehabilitation requires the possibility of combining (i.e., registering) digital documentation from different sources. This becomes more complex in an edentulous jaw, as fixed dental markers to perform reliable registration are lacking. This validation study aimed to evaluate the reproducibility of 1) intraoral scanning and 2) soft tissue-based registration of an intraoral scan with a cone-beam computed tomography (CBCT) scan for a fully edentulous upper jaw. Materials and Methods: Two observers independently performed intraoral scans of the upper jaw in 14 fully edentulous patients. The palatal vault of both surface models was aligned, and the inter-observer variability was assessed by calculating the mean inter-surface distance at the level of the alveolar crest. Additionally, a CBCT scan of all patients was obtained and a soft tissue surface model was generated using patient-specific gray values. This CBCT soft tissue model was registered with the intraoral scans of both observers, and the intraclass correlation coefficient(ICC) was calculated to evaluate the reproducibility of the registration method. Results: The mean inter-observer deviation when performing an intraoral scan of the fully edentulous upper jaw was 0.10±0.09 mm. The inter-observer agreement for the soft tissue-based registration method was excellent(ICC=0.94; 95% confidence interval, 0.81-0.98). Conclusion: Even when teeth are lacking, intraoral scanning of the jaw and soft tissue-based registration of an intraoral scan with a CBCT scan can be performed with a high degree of precision.

Nonlinear torsional analysis of 3D composite beams using the extended St. Venant solution

  • Yoon, Kyungho;Kim, Do-Nyun;Lee, Phill-Seung
    • Structural Engineering and Mechanics
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    • 제62권1호
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    • pp.33-42
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    • 2017
  • We present in this paper a finite element formulation for nonlinear torsional analysis of 3D beams with arbitrary composite cross-sections. Since the proposed formulation employs a continuum mechanics based beam element with kinematics enriched by the extended St. Venant solutions, it can precisely account higher order warping effect and its 3D couplings. We propose a numerical procedure to calculate the extended St. Venant equation and the twisting center of an arbitrary composite cross-section simultaneously. The accuracy and efficiency of the proposed formulation are thoroughly investigated through representative numerical examples.

Evaluation of Hitachi 3D Treatment Planning version 1.6

  • Fukuda, Shigekazu;Yokohama, Noriya;Maruyama, Ichiro;Kume, Kyo;Kagiya, Go;Yamamoto, Kazutaka
    • 한국의학물리학회:학술대회논문집
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    • 한국의학물리학회 2002년도 Proceedings
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    • pp.298-299
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    • 2002
  • WERC (Wakasa Wan Energy Research Center) has started the proton cancer therapy since June 2002. We use Hitachi 3D treatment planning (version 1.6) that can calculate the proton dose distribution by use of the pencil beam algorithm as well as the broad beam algorithm practically fast. This treatment planning software satisfies almost functions required in the proton therapy and includes some advanced techniques such as the 3D region glowing function that can search the target region three-dimensionally based on the CT-values. In this paper, we will introduce this planning system and present our evaluation from point of view of both clinical usage and QA.

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광학적 측정방법에 의한 표면 탄성파의 감쇠에 관한 연구 (A Study on the Attenuation of Surface Acoustic Waves by Optical Measurement Method)

  • 유일현;김동일
    • 비파괴검사학회지
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    • 제14권4호
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    • pp.237-243
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    • 1995
  • 고체 시료를 대상으로 하여 silicon wafer에는 $90^{\circ}$ wedge형 진동자를 사용하고 압전재료인 $LiTaO_3$에는 interdigital transducer(IDT)를 사용하였으며, knife edge를 이용한 광학적 검지(optical probing)법을 써서 표면탄성파의 발생 및 측정하는 기법으로써 재료에서의 표면탄성파의 감쇠를 검출하는 방법을 연구하였다. IDT1 및 IDT2로는 20.8 MHz와 14.5 MHz를, $90^{\circ}$ wedge형 진동자로부터는 20.0 MHz의 표면탄성파를 발생시켰으며 표면탄성파로 생기는 표면의 굴곡을 검출하는데 He-Ne laser beam을 이용하였다. Optical chopper로 변조시킨 laser beam을 같은 주파수로 변조시킨 표면탄성파에 입사시켜 산란되는 광을 같은 주파수로 동조된 lock-in amplifier로 검출하였다. 이와 같이 함으로써 검출할 표면탄성파와 검출에 사용된 laser beam 및 측정기기인 위상감지기(Phase Sensitive Detector : PSD)를 같은 주파수로 변조하여 동기시킬 수 있었으며 측정계를 단순화하였다. IDT1, IDT2에서 발생된 표면탄성과의 감쇠계수는 각각 $0.62{\sim}0.75dB/mm,\;0.60{\sim}0.72dB/mm$였으며 wedge형 진동자에서는 $0.83{\sim}1.28dB/mm$인 값을 얻었다.

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LINAC을 이용한 뇌정위적 방사선 수술에 대한 3 차원 선량분포 (Three-Dimensional Dose Distribution for the System of Linear Accelerator-based Stereotactic Radiosurgery)

  • Suh, Tae-Suk
    • 한국의학물리학회지:의학물리
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    • 제2권2호
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    • pp.121-128
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    • 1991
  • 뇌정위적 방사선 수술 시 정확한 3차원적 선량분포에 대한 정보가 필요한다. 3차원적 치료계획은 최적선량분포를 얻기위한 것이며 환자 데이타, 선량분포, 방사선 조사 요소들에 대한 3차원적인 관계를 다루어야만 한다. 원형 조사면에 대한 single 조사면 선량 데이타와 3차원 선량 알고리듬을 이용하여 non-coplanar moving arcs 에 대한 3차원적 선량모델이 개발되었다. 뇌정위적 방사선 수술시 3차원 선량 알고리듬의 적용과 여러경우에 대한 응용에 대하여 논의되어진다.

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