• 제목/요약/키워드: Turbo-3D

검색결과 140건 처리시간 0.027초

Contrast-Enhanced High-Resolution Intracranial Vessel Wall MRI with Compressed Sensing: Comparison with Conventional T1 Volumetric Isotropic Turbo Spin Echo Acquisition Sequence

  • Chae Jung Park;Jihoon Cha;Sung Soo Ahn;Hyun Seok Choi;Young Dae Kim;Hyo Suk Nam;Ji Hoe Heo;Seung-Koo Lee
    • Korean Journal of Radiology
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    • 제21권12호
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    • pp.1334-1344
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    • 2020
  • Objective: Compressed sensing (CS) has gained wide interest since it accelerates MRI acquisition. We aimed to compare the 3D post-contrast T1-weighted volumetric isotropic turbo spin echo acquisition (VISTA) with CS (VISTA-CS) and without CS (VISTA-nonCS) in intracranial vessel wall MRIs (VW-MRI). Materials and Methods: From April 2017 to July 2018, 72 patients who underwent VW-MRI, including both VISTA-CS and VISTA-nonCS, were retrospectively enrolled. Wall and lumen volumes, signal-to-noise ratio (SNR), and contrast-to-noise ratio (CNR) were measured from normal and lesion sites. Two neuroradiologists independently evaluated overall image quality and degree of normal and lesion wall delineation with a four-point scale (scores ≥ 3 defined as acceptable). Results: Scan coverage was increased in VISTA-CS to cover both anterior and posterior circulations with a slightly shorter scan time compared to VISTA-nonCS (approximately 7 minutes vs. 8 minutes). Wall and lumen volumes were not significantly different with VISTA-CS or VISTA-nonCS (interclass correlation coefficient = 0.964-0.997). SNR was or trended towards significantly higher values in VISTA-CS than in VISTA-nonCS. At normal sites, CNR was not significantly different between two sequences (p = 0.907), whereas VISTA-CS provided lower CNR in lesion sites compared with VISTA-nonCS (p = 0.003). Subjective wall delineation was superior with VISTA-nonCS than with VISTA-CS (p = 0.019), although overall image quality did not differ (p = 0.297). The proportions of images with acceptable quality were not significantly different between VISTA-CS (83.3-97.8%) and VISTA-nonCS (75-100%). Conclusion: CS may be useful for intracranial VW-MRI as it allows for larger scan coverage with slightly shorter scan time without compromising image quality.

CAD/CAPP 인터페이스를 위한 형상특징의 자동인식시스템 개발 (Development of Automatic Feature Recognition System for CAD/CAPP Interface)

  • 오수철;조규갑
    • 대한기계학회논문집
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    • 제16권1호
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    • pp.31-40
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    • 1992
  • 본 연구에서는 CAD 시스템의 테이터구조로 부터 특성을 추출하여 CAPP 시스템 의 입력으로 사용되는 형상특징을 자동적으로 인식하고 형상특징의 관련정보를 생성하 는 형상특징인식시스템을 개발하는데 있다. X.Y.Z 축에 수직인 평면들로 구성되는 비회전형상부품을 대상으로 하여, 주로 밀링작업과 연관이 있는 관통슬롯, 막힌슬롯, 관통스텝, 막힌스텝, 포켓의 5가지 형상특징을 자동적으로 인식하는데 특히 X.Y.Z축에 수직인 평면들로 구성되고 내부에 볼록 부위가 업는 형상 특징을 대상으로 한다. CAD시스템은 AutoCAD를 사용하여 퍼스널 컴퓨터에서 시스템을 개발한다.

진공청소기용 팬 모터의 비정상 유동 해석 및 공력소음 해석 (The Analysis of the Unsteady Flow Field and Aerodynamic Sound of Fan Motor in a Vacuum Cleaner)

  • 김재열;심재기;송경석;오성민;양동조;김우진
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2004년도 춘계학술대회 논문집
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    • pp.281-286
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    • 2004
  • The vacuum cleaner motor runs on very high speed for the suction power. Specially, the motive power is provided by the impeller being rotate on very high speed. And centrifugal fan consists of the impeller, the diffuser, and the circular casing. Due to the high rotating speed or the impeller and small gap distance between the impeller and diffuser, the centrifugal fan makes very high noise level at BPF and harmonic frequencies. In order to calculate the sound pressure of centrifugal fan, the unsteady flow data is needed. And Noise cause is dividing to fluid noise by exhaust flow of fan and vibration noise by rotational vibration of vacuum cleaner fan motor. Until now, measuring method has been used to measure vibration by the accelerometer; this method has been not measured for the vibration in some parts of brush and commutator because of motor construction and 3-D vibrating mode. This paper was purposed on the accurate analysis, using laser vibration analyzer,. By using this measured data of noise cause against the difficult part in old times, we would like to use for the design of silent fan motor.

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디젤엔진 배기가스 정화용 산화촉매 개발 (Development of Oxidation Catalyst for Diesel Engine)

  • 최경일;최용택;유관식
    • 한국대기환경학회지
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    • 제16권5호
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    • pp.529-537
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    • 2000
  • Several Pt-based oxidation catalysts with different loading were prepared with various metal precursor solutions and characterized with H$_2$ chemisorption and TEM for Pt particle size. V was added to Pt-based catalyst for inhibiting SO$_2$oxidation reaction, as result, Pt-V/Ti-Si catalyst prepared by ERMS(Free Reduced Metal in Solution) method showed high enough activity and better inhibition on SO$_2$oxidation than Pt only catalyst. Optimum Pt particle size for diesel oxidation reaction turned out to be the size of around 20 nm. A prototype catalyst was prepared for light=duty diesel passenger car, and teated for the emission reduction performance with Korean regulation test mode(CVS-75 mode) on chassis dynamometer. The catalyst shows the performance reduction of 75~94% for CO, 53~67% for HC and 10~31% for PM. In the case of heavy-duty diesel catalyst, the domestic formal regulation teat mode D-13 was adopted for both Na engine and Turbo engine. The conversions of CO and THC are high enough(86% and 41%) while the reductions of NOx and PM are relatively low(3~11%).

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원심압축기 임펠러의 형상 변화에 따른 저유량 영역에서 발생하는 불안정 유동 평가 (Flow Instability Assessment Occurring in Low Flow Rate Region According to the Change of a Centrifugal Compressor Impeller Shape)

  • 조성휘;김홍집;이명희
    • 한국유체기계학회 논문집
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    • 제19권2호
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    • pp.21-26
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    • 2016
  • The objective of present study is to assess the performance of the first stage compressor in a total 3-stage 5000 HP-level turbo compressor. CFD commercial code, CFX has been used to predict three-dimensional flow characteristics inside of the impeller. Shear Stress Transport (SST) model has been used to simulate turbulent flows through Reynolds-averaged Navier-Stokes (RANS) equations. Grid dependency has been also checked to get optimal grid distribution. Numerical results have been compared with the experimental test results to elucidate performance characteristics of the present compressor. In addition, flow characteristics of the impeller only have been studied for various blade configurations. Angular offset in leading edge of the blade has been selected for the optimal blade design. Performance characteristics in region of low mass flow rate and high pressure ratio between the impeller entrance and exit have been investigated for the selection of optimal blade design. Also, flow instability such as stall phenomena has been studied and anti-stall characteristics have been checked for various blade configurations in the operational window.

뇌 자기공명영상에서 Quiet-T2 기법을 이용한 소음감소의 유용성 (Usefulness of Acoustic Noise Reduction in Brain MRI Using Quiet-T2)

  • 이세지;김영근
    • 대한방사선기술학회지:방사선기술과학
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    • 제39권1호
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    • pp.51-57
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    • 2016
  • 뇌 자기공명영상(Magnetic Resornance Imaging; MRI)에서 검사 중 발생되는 소음을 줄이기 위한 기법으로 경사 파형을 변경한 Quiet $T_2$-weighted Turbo Spin-Echo(이하 Q-$T_2$)와 일반적으로 사용되는 $T_2$-weighted Turbo Spin-Echo(이하 $T_2$) 영상의 소음수준 및 영상의 질을 비교하여 그 유용성을 알아보고자 하였다. 3.0T MR 기기로 뇌 MR 검사를 받은 60명(남자 29명, 여자 31명, 평균 연령 60.1세)의 환자를 대상으로 하였다. Q-$T_2$$T_2$ 각각의 영상에서 소음 및 심박동수를 측정하였다. 정량적 분석은 Q-$T_2$$T_2$의 SNR, CNR, SIR 값을 측정한 뒤 독립표본 T검정을 이용하여 통계적 분석을 하였다. 정성적 분석은 Q-$T_2$$T_2$의 전체적인 영상의 질에 대하여 육안으로 평가하였다. 평가는 5점 척도로서 우수(excellent) 5점, 양호(good) 4점, 보통(fair) 3점, 불량(poor) 2점, 평가불가(unacceptable) 1점으로 평가하였다. Q-$T_2$$T_2$ 검사 중 평균소음과 peak소음은 Q-$T_2$가 기존 $T_2$에 비해 각각 $15dB_A$, $10dB_A$ 감소하였다. 또한 각각의 검사 중 120초 동안 심박동수의 평균값은 Q-$T_2$에서 더 낮은 값으로 나타났지만 통계적인 유의성은 없었다. 정량적 분석의 결과 CNR과 SIR은 유의한 차이가 없었으며, SNR은 Q-$T_2$가 더 낮은 평균값을 보임으로서 유의한 차이를 보였다(p<0.05). 정성적 분석은 59개의 Q-$T_2$$T_2$ 영상의 질이 동일하게 우수(excellent) 5점으로 평가되었으며, 1개의 영상에서 모션 아티팩트로 인해 양호(good) 4점으로 평가되었다. Q-$T_2$는 기존의 $T_2$와 같이 검사시간 및 진단의 정확도는 동일하지만 소음을 효과적으로 감소시킬 수 있으며, 이로인하여 환자 편의를 향상시킬 수 있을 것으로 사료된다.

천연가스 조성 변화에 따른 CNG 엔진 성능 및 배기가스 특성 (Performance and Emission Characteristics of a CNG Engine Under Different Natural Gas Compositions)

  • 하영철;이성민;김봉규;이창준
    • 대한기계학회논문집B
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    • 제35권7호
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    • pp.749-755
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    • 2011
  • 현재 상용되고 있는 CNG(Compressed Natural Gas) 엔진에서 천연가스 조성만 변경했을 때 엔진성능 변화를 실험적으로 규명하였다. 실험에 사용된 엔진은 6606 cc, 희박 연소, 공기 과급기가 장착된 타입이며, 점화 시기는 발열량 10454 kcal/$Nm^3$의 가스에 최적화하여 고정시켰다. 실험결과 LNG 발열량이 10454 kcal/$Nm^3$에서 9811 kcal/$Nm^3$과 9523 kcal/$Nm^3$으로 낮아질 때 출력의 경우 평균 3.2, 3.4 %(공연비 미 제어시 3.4, 4.7 %) 각각 낮아지고 열효율은 평균 1.1, 1.5 % 포인트(공연비 미 제어시 1.5, 2.1 % 포인트) 낮아지는 것으로 관찰되었다. 배가스의 경우, 발열량 저하에 따라 이산화탄소, 일산화탄소, 질소산화물의 배출 농도는 모두 감소하는 것으로 나타났으나 THC(Total Hydrocarbon)의 경우에는 일정한 경향이 보이지 않았고 변화량은 크지 않았다.

Precision Orbit Determination of the SAC-C Satellite Using the GPS Dual Frequency Measurement

  • Yoon, Jae-Cheol;Im, Jeong-Heum;Moon, Hong-Youl;Lee, Sang-Ryool;Lee, Byoung-Sun
    • 한국우주과학회:학술대회논문집(한국우주과학회보)
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    • 한국우주과학회 2003년도 한국우주과학회보 제12권2호
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    • pp.48-48
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    • 2003
  • A precision orbit determination (POD) system of low Earth orbiter using the GPS dual frequency measurements has been developed. It is an option of KOMPSAT-2 POD process system. In this research, the orbit determination using the real dual frequency carrier phase measurements of the SAC-C satellite was conducted to verify KOMPSAT-2 POD system reliability. The SAC-C satellite is an international cooperative mission between NASA, the Argentine Commission on Space Activities (CONAE), Centre National d'Etudes Spatiales (CNES or the French Space Agency), Instituto Nacional De Pesquisas Espaciais (Brazilian Space Agency), Danish Space Research Institute, and Agenzia Spaziale Italiana (Italian Space Agency). The SAC-C was launched at November 21, 2000. The altitude of SAC-C is 702 km and it carries a TurboRogue III GPS and four high gain antennas developed by the JPL. The receiver is able to generate the dual frequency code and carrier phase data. Double-differenced carrier phase measurements were formed using 25 IGS stations. The data were sampled at 30 seconds interval. Fully dynamic approach was adopted for POD. The POD results were compared with those of JPL using GOA n software. The comparison verifies that deci-meter level 3D position accuracy of low Earth orbiting satellite could be achieved. The POD system has been developed successfully.

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Counter-Rotating Type Pumping Unit (Impeller Speeds in Smart Control)

  • Kanemoto, Toshiaki;Komaki, Keiichi;Katayama, Masaaki;Fujimura, Makoto
    • International Journal of Fluid Machinery and Systems
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    • 제4권3호
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    • pp.334-340
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    • 2011
  • Turbo-pumps have weak points, such as the pumping operation is unstable on the positive slope of the head curve and/or the cavitation occurs at the low suction head. To improve simultaneously both weak points, the first author invented the unique pumping unit composed of the tandem impellers and the peculiar motor with the double rotational armatures. The front and the rear impellers are driven by the inner and the outer armatures of the motor, respectively. Both impeller speeds are automatically and smartly adjusted in response to the pumping discharge, while the rotational torques between both impellers/armatures are counter-balanced. Such speeds contribute to suppress successfully not only the unstable operation at the low discharge but also the cavitation at the high discharge, as verified with the axial flow type pumping unit in the previous paper. Continuously, this paper investigates experimentally the effects of the tandem impeller profiles on the pump performances and the rotational speeds against the discharge, using the impellers whose loads are low and/or high at the normal discharge. The worthy remarks are that (a) the unstable operation is suppressed as expected and the shut off power is scarcely large in the smart control, (b) the blade profile contributes to determine the discharge giving the maximum/minimum rotational speed where the reverse flow may incipiently appears at the front impeller inlet, (c) the tandem impeller profiles scarcely affect the rotational speeds, while the loads of the front and the rear impellers are same, but (d) the impeller with the low load must run faster and the impeller with the high load must run slower at the same discharge to take the same rotational torque, and (e) the reverse flow at the inlet and the swirling velocity component at the outlet of the front impeller with the high load require making the rotational speed of the rear impeller with low load fairly faster at the lower discharge.

Experimental Approach to Equalizing the Orifice Method with the Throughput One for the Measurement of TMP Pumping Speed

  • Lim, J.Y.;Kang, S.B.;Shin, J.H.;Koh, D.Y.;Cheung, W.
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2010년도 제39회 하계학술대회 초록집
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    • pp.18-18
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    • 2010
  • Methods of the characteristics evaluation of turbo-molecular pumps (TMP) are well-defined in the international measurement standards such as ISO, PNEUROP, DIN, JIS, and AVS. The Vacuum Center in the Korea Research Institute of Standards and Science has recently designed, constructed, and established the integrated characteristics evaluation system of TMPs based on the international documents by continuously pursuing and acquiring the reliable international credibility through measurement perfection. The measurement of TMP pumping speed is normally performed with the throughput and orifice methods dependent on the mass flow regions. However, in the UHV range of the molecular flow region, the high uncertainties of the gauges, mass flow rates, and conductance are too critical to precisely accumulate reliable data. With UHV gauges of uncertainties less than 15% and a calculated conductance of the orifice, about 35% of pumping speed uncertainties are experimentally derived in the pressure range of less than $10^{-6}$ mbar. In order to solve the uncertainty problems of pumping speeds in the UHV range, we introduced an SRG with 1% accuracy and a constant volume flow meter (CVFM) to measure the finite mass flow rates down to $10^{-3}$ mbar-L/s with 3% uncertainty for the throughput method. In this way we have performed the measurement of pumping speed down to less than $10^{-6}$ mbar with an uncertainty of 6% for a 1000 L/s TMP. In this article we suggest that the CVFM has an ability to measure the conductance of the orifice experimentally with flowing the known mass through the orifice chambers, so that we may overcome the discontinuity problem encountering during introducing two measurement methods in one pumping speed evaluation sequence.

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