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황승민,최영빈,이기현,정영진 한국방사선학회 2023 한국방사선학회 논문지 Vol.17 No.7
본 연구는 신경과학과 임상의학 분야에서 의료영상 촬영에 활용될 수 있는 비용-효율적인 뇌 신경조절 장비 개발하고자 하였습니다. 이를 위해, 500달러 미만의 재료비로 뇌 신경조절 장비를 설계하고, 이를 제작하여, 그 성능을 평가하였다. 측정된 성능평가 결과는 기존 의료기기와 유사하였으며, 그 크기는 3 cm by 3 cm 이하로 개발하였다. 본 연구의 결과는 관련 분야의 연구 개발 및 신경 자극 기술의 신속한 상용화 등에 활용될 수 있을 것이라 기대됩니다. 또한 기능적 방사선 의료영상 기술의 발전 및 뇌과학 및 뇌 자극 기술 개발의 접근성 향상에 기여할 것으로 기대됩니다. In this study, we aimed to develop a cost-effective neuro-modulation device for use in neuroscientific and clinical medical imaging applications. To achieve this, we designed and fabricated a brain neuro-modulation device with a material cost of less than $500, and subsequently evaluated its performance. The measured performance was found to be comparable to existing medical devices (TENS), with the developed device being compact in size, measuring less than 3 cm by 3 cm. The outcomes of this study are expected to be applicable in accelerating research and development in related fields, as well as in the rapid commercialization of neuro-modulation technology. Furthermore, it is anticipated that this work will contribute to advancements in functional radiological medical imaging technology and enhance accessibility to brain science and brain stimulation technology.
황승민,박재용,임민규,오영규,한석영 한국공작기계학회 2009 한국공작기계학회 춘계학술대회논문집 Vol.2009 No.-
This paper presents a reliability-based topology optimization (RBTO) using bi-directional evolutionary structural optimization (BESO). Topology optimization is formulated as volume minimization problem with probabilistic displacement constraint. Young's modulus, external load and thickness are considered as uncertain variables. In order to compute reliability index, four methods, i.e., RIA, PMA, SLSV and ADL(adaptive-loop), are used. Reliability-based topology optimization design process is conducted to obtain optimal topology satisfying displacement and reliability index constraints with the above four methods, and then each result is compared with respect to numerical stability and computing time.
황승민(Seung Min Hwang) 大韓環境工學會 2010 대한환경공학회지 Vol.32 No.12
비접촉법으로 유동장이나 온도, 화학종 농도의 계측이 가능한 레이저 응용 계측기술은 연소 메카니즘의 해명뿐만 아니라 수치해석 결과의 정당성을 입증하는 수단으로 최근 주목받고 있다. 본 연구에서는 레이저 도플러 유속계와 쉐도우 도플러 입자 분석계를 이용하여 난류 미분탄 화염 내 입자거동에 대하여 관찰하였다. 버너는 여러 광학계측을 용이하게 하기 위하여 대기개방형으로 하였으며, 실험실 규모의 안정된 난류 미분탄화염이 형성 가능한 소형 모델버너를 제작 하였다. 그 결과 미분탄 입자의 평균입경은 연소과정이 진행함에 따라 증가하는 경향을 나타내었다. 이러한 원인은 다수의 소입경의 미분탄 입자가 휘발분을 방출하여 연소반응에 의해 소실되기 때문이다. 또한 화염 중심부에서 미분탄 입자의 속도장은 입경의 크기에 크게 의존하지 않지만, 화염 외주부에서의 미분탄 입자의 속도장은 입경에 크게 의존하고 있음을 알 수 있다. Combustion measurements based on optical techniques have recently become of major interest as tools not only for clarifying the combustion mechanism but also for validating the computational results for the combustion fields. In this study, the particle behavior in turbulent pulverized coal flame are investigated using advanced optical diagnostics. A laboratory-scale pulverized coal combustion burner is specially fabricated as open type in order to apply various optical measurement techniques. The detailed particle behavior is performed by LDV (laser Doppler velocimetry) and SDPA (shadow Doppler particle analyzer). It is observed that the particle mean diameter increase as the distance from burner increases, and this is found to be caused by the decrease of small particles` diameter and increase of large particles` diameter. This is because of result in the char reaction and the particle swelling due to devolatilization, respectively. The size-classified streamwise velocities of pulverized coal particles in the central region of the jet show the same magnitude, whereas those in the outer region are different depending on the particle size. The results show that the velocity and size-classified diameter of the pulverized coal particles in the flame can be measured well by SDPA.
동시계측에 의한 난류 미분탄 화염의 순간구조에 관한 연구
황승민 ( Seung-min Hwang ) 한국환경과학회 2018 한국환경과학회지 Vol.27 No.5
In this study, a laser sheet technique and PLIF (Planar laser-induced fluorescence) are applied to a laboratory-scale pulverized coal burner of the open type, and the spatial relationship of the pulverized coal particle zone and the combustion reaction zone is examined by simultaneous measurement of Mie scattering and OH-LIF images. It is found that this technique can be used to investigate the spatial relationship of the combustion reaction zone and pulverized-coal particles in turbulent pulverized-coal flames without disturbing the combustion reaction field. In the upstream region, the combustion reaction occurs only in the periphery of the clusters where high-temperature burned gas of the methane pilot flame is entrained and oxygen supply is sufficient. In the downstream region, however, combustion reaction can be seen also within clusters of pulverized-coal particles, since the temperature of pulverized-coal particles rises, and the mixing with emitted volatile matter and ambient air is promoted.
Excimer 형광법을 이용한 연료증기 농도측정법에 대한 연구
황승민 ( Seung-min Hwang ) 한국환경과학회 2018 한국환경과학회지 Vol.27 No.6
Laser induced-exciplex-fluorescence (EXCIPLEX) proposed by Melton is used to visualize fuel vapor in spray combustion. However, in the EXCIPLEX method based on TMPD/naphthalene system, the TMPD : naphthalene ratio is strictly restricted to 1 : 9. In addition, fluorescence intensity due to the vapor phase is extremely weak. To overcome these drawbacks, we propose a new laser-induced-excimer fluorescence (EXCIMER) method to visualize the liquid and vapor phases simultaneously. The spatial distributions of liquid and vapor in fuel spray suspended by ultrasonic waves are compared using the EXCIPLEX and EXCIMER methods. The correlation between fuel vapor concentration and fluorescence intensity is experimentally investigated by measuring the fluorescence intensity of saturated vapor formed over liquid fuel at a controlled temperature. These experimental results indicate that the EXCIMER method is effective for evaluating fuel vapor visualization in spray combustion. Furthermore, the quantitative distribution of fuel vapor concentration can be correctly estimated by the EXCIMER method.