• 제목/요약/키워드: Axial Mode Number

검색결과 62건 처리시간 0.023초

소아 흉부 CT 검사에서 관전압 80 kVp 조건으로 스캔 모드별 방사선량 감소와 화질 평가 (The Evaluation of Dose Reduction and Quality of Images According to 80 kVp of Scan Mode Change in Pediatric Chest CT)

  • 김구;김경립;이은숙;조희정;성순기;문슬지아;곽종혁
    • 한국콘텐츠학회논문지
    • /
    • 제19권8호
    • /
    • pp.284-292
    • /
    • 2019
  • 소아 흉부 CT 검사 시 방사선 피폭을 최소화 하면서 진단적으로 가치가 높은 영상을 얻기 위해서 Helical mode, High-pitch mode, Volume Axial mode를 적용하여서 선량, 검사시간, 화질을 비교하여 유용성을 평가하고자 한다. Revolution(GE Healthcare, Wisconsin USA)을 이용하여 PBU-70팬텀을 Helical mode, High-pitch mode, Volume Axial mode로 각각의 그룹으로 나누어서 관전압 80kVp, 조건으로 30회 검사를 실시하였다. 영상을 획득 한 후에 각각의 영상에 심장(Heart), 뼈(Bone), 폐(Lung), Back-ground air에 ROI를 설정하고 CT number(HU)와 noise(SD)값을 측정하여 평균값을 구하고 SNR과 CNR을 측정하였고, 장비에서 직접 제공하는 DLP값 비교하였다. 통계적인 유의성을 확인해보기 통계 분석은 SPSS 21.0을 사용하여 ONE-WAY-ANAOVA를 시행하였다. 본 실험을 통해 검사 시 volume axial mode 사용 시 가장 적은 선량으로 영상의 화질 저하 없이 빠른 시간에 검사가 가능하였다. 16cm의 detector coverage 가 모든 소아 흉부 CT검사에 적용하기에 제한점이 있으나 가능한 소아환자에 있어 적극적인 활용을 추천하며 volume axial mode의 다른 검사부위 적용에 대한 지속적인 연구가 필요하리라 사료된다.

Differential transform method and numerical assembly technique for free vibration analysis of the axial-loaded Timoshenko multiple-step beam carrying a number of intermediate lumped masses and rotary inertias

  • Yesilce, Yusuf
    • Structural Engineering and Mechanics
    • /
    • 제53권3호
    • /
    • pp.537-573
    • /
    • 2015
  • Multiple-step beams carrying intermediate lumped masses with/without rotary inertias are widely used in engineering applications, but in the literature for free vibration analysis of such structural systems; Bernoulli-Euler Beam Theory (BEBT) without axial force effect is used. The literature regarding the free vibration analysis of Bernoulli-Euler single-span beams carrying a number of spring-mass systems, Bernoulli-Euler multiple-step and multi-span beams carrying multiple spring-mass systems and multiple point masses are plenty, but that of Timoshenko multiple-step beams carrying intermediate lumped masses and/or rotary inertias with axial force effect is fewer. The purpose of this paper is to utilize Numerical Assembly Technique (NAT) and Differential Transform Method (DTM) to determine the exact natural frequencies and mode shapes of the axial-loaded Timoshenko multiple-step beam carrying a number of intermediate lumped masses and/or rotary inertias. The model allows analyzing the influence of the shear and axial force effects, intermediate lumped masses and rotary inertias on the free vibration analysis of the multiple-step beams by using Timoshenko Beam Theory (TBT). At first, the coefficient matrices for the intermediate lumped mass with rotary inertia, the step change in cross-section, left-end support and right-end support of the multiple-step Timoshenko beam are derived from the analytical solution. After the derivation of the coefficient matrices, NAT is used to establish the overall coefficient matrix for the whole vibrating system. Finally, equating the overall coefficient matrix to zero one determines the natural frequencies of the vibrating system and substituting the corresponding values of integration constants into the related eigenfunctions one determines the associated mode shapes. After the analytical solution, an efficient and easy mathematical technique called DTM is used to solve the differential equations of the motion. The calculated natural frequencies of Timoshenko multiple-step beam carrying intermediate lumped masses and/or rotary inertias for the different values of axial force are given in tables. The first five mode shapes are presented in graphs. The effects of axial force, intermediate lumped masses and rotary inertias on the free vibration analysis of Timoshenko multiple-step beam are investigated.

축압축을 받는 CFRP 적층부재의 에너지흡수특성과 파괴모드에 관한 연구 (A Study on the Energy Absorption Characteristics and Fracture Mode of CFRP Laminate Members under Axial Compression)

  • 김정호;정회범;전형주
    • 한국안전학회지
    • /
    • 제17권3호
    • /
    • pp.7-12
    • /
    • 2002
  • The object of this paper is to investigate collapse characteristics of CF/Epoxy(Carbon Fiber/Epoxy resin) composite tubes on the change of interlaminar number and fiber orientation angle of outer and to evaluate reappearance of collapse characteristics on the change of tension strength of fibers under static and impact axial compression loads. When a CF/Epoxy composite tube is mushed, static/impact energy is consumed by friction between the loading plate and the splayed fiends of the tube, by fracture of the fibers, matrix and their interface. In general, CF/Epoxy tube with 6 interlaminar number(C-type) absorbed more energy than other tubes(A, B, D-types). The maximum collapse load seemed to increase as the interlaminar number of such tubes increases. The collapse mode depended upon orientation angle of outer of CF/Epoxy tubes and loading status(static/impact). Typical collapse modes of CF/Epoxy tubes are wedge collapse mode, splaying collapse mode and fragmentation collapse mode. The wedge collapse mode was shorn in case of CF/Epoxy tubes with 0$^{\circ}$ orientation angle of outer under static and impact loadings. The splaying collapse mode was shown in only case of CF/Epoxy tubes with 90$^{\circ}$ orientation angie or outer under static loadings, however in impact tests those were collapsed in fragmentation mode. So that CF/Epoxy tube with 6 interlaminar number and 90$^{\circ}$ outer orientation angle presented to the optimal collapse characteristics.

수중 동축원통쉘 구조물의 경계조건 변화에 따른 동특성 시험 (An Experimental Study. on Dynamic Characteristics of Submerged Co-axial Cylinderical Shells)

  • 박진호;류정수;김태룡;심우건
    • 한국소음진동공학회:학술대회논문집
    • /
    • 한국소음진동공학회 2001년도 춘계학술대회논문집
    • /
    • pp.668-674
    • /
    • 2001
  • An experimental study was performed for two types of co-axial cylindrical shell structures in order to establish the relationship between in-air dynamic characteristics and in-water ones and to observe hydrodynamic mass effects on their mode shapes when submerged. The outer cylinders are prepared with two kinds to get more insights on the fluid-structure interaction phenomena: one is flexible, which means that the outer cylinder has almost same stiffness as the inner one, and the other is a rigid one whose stiffness is more than ten times of the inner one's(it might be regarded as the scaled-down model of the reactor internals). The finite element. analyses were also implemented to support the experimental results. The results show that the natural frequencies of a co-axial cylindrical shell structure in water are remarkably lower than those in air due to the fluid mass effects. In case of the flexible-to-flexible cylinders, there exist in-phase and out-of-phase mode shapes and they are affected by the annular gap between the. co-axial cylinders. For the in-phase mode the in-water natural frequency decreases exponentially as the gap increases, while it slightly increases in case of the out-of-phase mode due to the squeezing effect of the gap fluid. In the flexible-to-rigid case, the normalized natural frequency(in-water frequency/in-air one) of the inner cylinder(core barrel model) ranges between in-phase and out-of-phase mode frequencies of the flexible-to-flexible co-axial cylindrical structure having identical dimensions. Also the normalized natural frequency of the inner cylinder of the flexible-to-rigid one moves from near of the in-phase mode frequency into the out-of-phase mode value of the flexible-to-flexible case as circumferential mode number(n) increases.

  • PDF

종자계형 진공 인터럽터에서 접점전극 슬릿의 영향에 관한 연구 (A Study on the Effect of the Contact Electrode Slits in the Vacuum Interrupter with Axial Magnetic Field Type)

  • 하덕용;강형부;최승길;최경호
    • 한국전기전자재료학회논문지
    • /
    • 제15권9호
    • /
    • pp.822-829
    • /
    • 2002
  • This paper deals with the distribution characteristics of the current density and axial magnetic flux density for each slits made on the contact electrode in the vacuum interrupter with axial magnetic field type using 3-dimension finite element analysis. It has been known that the presence of an axial magnetic field parallel to the current flow in the arc plasma can increase the high current breaking capacity of vacuum interrupter by carrying out the arc plasma from constricted mode to diffusion mode. The axial magnetic field is created of itself by current flow in the segments of coil electrode behind the contact electrode. The analyzed results show that if the slits are made in the contact electrode, they can increase the current density and axial magnetic flux density in the contact electrode surface and at the gap distance, which is due to decrease the effect of eddy currents flowing in the contact electrode. The phase shift due to eddy currents, defined 3s time difference between the maximum value of current and axial magnetic field, is decreased still more by increasing the number of slits made in the contact electrode at the center point of gap distance. These results demonstrate that 3-dimension finite element analysis has a great deal of merits in the development and evaluation of new electrode at the design of vacuum interrupter.

CFRP 복합재 튜브의 압괴메카니즘에 관한 실험적 연구 (The Experimental Study on the Collapse Mechanism of CFRP Composite Tubes)

  • 김영남;차천석;양인영
    • 한국자동차공학회논문집
    • /
    • 제10권4호
    • /
    • pp.149-157
    • /
    • 2002
  • This paper is to investigate collapse mechanisms of CFRP(Carbon Fiber Reinforced Plastics)composite tubes and to evaluate collapse characteristics on the change of interlaiminar number and ply orientation angle of outer under static and impact axial compression loads. When a CFRP composite tube is crushed, static/impact energy is consumed by friction between the loading plate and the splayed fronds of the tube, by fracture of the fibers, matrix and their interface. These are associated with the energy absorption capability. In general, CFRP tube with 6 interlaminar number(C-type), absorbed more energy than other tubes(A, B, D-types). The maximum collapse load seemed to increase as the interlaminar number of such tubes increases. The collapse mode depended upon orientation angle of outer of CFRP tubes and loading status(static/impact). Typical collapse modes of CFRP tubes are wedge collapse mode, splaying collapse mode and fragmentation collapse mode. The wedge collapse mode was shown in case of CFRP tubes with 0° orientation angle of outer under static and impact loadings. The splaying collapse mode was shown in only case of CFRP tubes with 90°orientation angle of outer under static loadings, however in Impact tests those were collapsed in fragmentation mode .

유체로 채워진 원통형 쉘의 고유진동수에미치는 수위의 영향 (The Effect of Liquid Level on the Natural Frequencies of a Partially Liquid-Filled Circular Cylindrical Shell)

  • 정경훈;이성철
    • 한국정밀공학회:학술대회논문집
    • /
    • 한국정밀공학회 1995년도 춘계학술대회 논문집
    • /
    • pp.314-319
    • /
    • 1995
  • The effect of liquid level on the natural frequencies and mode shapes of a partially liquid-filled circular cylindrical shell with various boundary conditions is investigated by means of a theoretical analysis based upon Fourier series expansion method and a finite element analysis using ANSYS computer program. Two dimensional mode shapes of the liquid-coupled shell structure are obtained by the ANSYS finite element analysis and show that the liquid level affect the nodal point movement. It is found that the variation of normalized naturalfrequencies (natural frequencies of liquid-filled shell/antural frequencies ofempty shell) to the liquid level is depend on the axial mode numbers and circumferential wave numbers. Additionally, it is found that the number of variational steps of normalized natural frequencies is identicial to that of axial nodal points of the mode shape.

  • PDF

Evaluation of vertical dynamic characteristics of cantilevered tall structures

  • Li, Q.S.;Xu, J.Y.;Li, G.Q.
    • Structural Engineering and Mechanics
    • /
    • 제11권4호
    • /
    • pp.357-372
    • /
    • 2001
  • In this paper, cantilevered tall structures are treated as cantilever bars with varying cross-section for the analysis of their free longitudinal (or axial) vibrations. Using appropriate transformations, exact analytical solutions to determine the longitudinal natural frequencies and mode shapes for a one step non-uniform bar are derived by selecting suitable expressions, such as exponential functions, for the distributions of mass and axial stiffness. The frequency equation of a multi-step bar is established using the approach that combines the transfer matrix procedure or the recurrence formula and the closed-form solutions of one step bars, leading to a single frequency equation for any number of steps. The Ritz method is also applied to determine the natural frequencies and mode shapes in the vertical direction for cantilevered tall structures with variably distributed stiffness and mass. The formulae proposed in this paper are simple and convenient for engineering applications. Numerical example shows that the fundamental longitudinal natural frequency and mode shape of a 27-storey building determined by the proposed methods are in good agreement with the corresponding measured data. It is also shown that the selected expressions are suitable for describing the distributions of axial stiffness and mass of typical tall buildings.

Finite element analysis for longitudinal vibration of nanorods based on doublet mechanics

  • Ufuk Gul;Metin Aydogdu
    • Advances in nano research
    • /
    • 제15권5호
    • /
    • pp.411-422
    • /
    • 2023
  • In the present study, the axial vibration of the nanorods is investigated in the framework of the doublet mechanics theory. The equations of motion and boundary conditions of nanorods are derived by applying the Hamilton principle. A finite element method is developed to obtain the vibration frequencies of nanorods for different boundary conditions. A two-noded higher order rod finite element is used to solve the vibration problem. The natural frequencies of nanorods obtained with the present finite element analysis are validated by comparing the results of classical doublet mechanics and nonlocal strain gradient theories. The effects of rod length, mode number and boundary conditions on the axial vibration frequencies of nanorods are examined in detail. Mode shapes of the nanorods are presented for the different boundary conditions. It is shown that the doublet mechanics model can be used for the dynamic analysis of nanotubes, and the presented finite element formulation can be used for mechanical problems of rods with unavailable analytical solutions. These new results can also be used as references for the future studies.

축방향 CT 스캔과 나선형 CT 스캔에서 영·유아의 장기흡수선량 비교 평가 (A Comparative Evaluation of Organ Doses in Infants and toddlers between Axial and Spiral CT Scanning)

  • 김상태;은성종;김성길
    • 한국방사선학회논문지
    • /
    • 제7권2호
    • /
    • pp.137-143
    • /
    • 2013
  • 성인에 비해 방사선에 민감하고 검사건수가 증가하고 있는 영 유아의 CT 스캔 시의 장기흡수선량을 평가하기 위해 스캔부위를 머리부위와 가슴부위로 구분하고 64 MDCT를 이용하여 축방향 스캔과 나선형 스캔으로 비교했다. 스캔부위에 상관없이 나선형 스캔 시의 선량이 축방향 스캔 시 보다 유의하게 낮은 것으로 나타났다. 축방향 스캔과 비교해서 나선형 스캔 중 피치 1.355를 사용했을 때가 나머지 두 피치(0.525, 0.988)를 사용했을 때보다 가슴부위 스캔의 평균 장기흡수선량이 유의하게 높게(평균 -12.03%) 나왔다. 나선형 스캔 시 장기흡수선량이 축방향 스캔보다 평균 20.54% 낮게 나왔다. 결과적으로 인체모형을 통한 장기흡수선량을 평가한 본 연구는 몬테카를로 시뮬레이션 결과값을 실증하고, CT 검사를 받는 영 유아의 장기흡수선량의 보다 정확한 평가에 기여할 것이다.