• 제목/요약/키워드: reflection energy

검색결과 648건 처리시간 0.031초

광대역 레이다 흡수용 W-type 육방정 페라이트-에폭시 복합 소재 (W-type hexaferrite-epoxy composites for wide-band radar absorption)

  • 이수미;이태우;강영민;김혜민
    • 항공우주시스템공학회지
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    • 제17권1호
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    • pp.42-50
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    • 2023
  • 본 연구에서는 SrZn2-xCoxFe16O27 화학식을 갖는 육방정 구조의 페라이트 분말을 고상법으로 합성하고 Co-Zn 함량 변화에 따른 전자기파 흡수 특성을 0.1-18 GHz의 주파수 범위와 0 ~ 10 mm 흡수체 두께 범위에서 평가하였다. 흡수체 두께에 따른 전자기파 흡수 특성은 고주파 복소 투자율과 유전율 측정 data로부터 전송선 이론을 기반으로 계산을 통해 반사손실 (RL)을 도출하였으며, 일부 시료에 대해서는 RL 실측정을 통해 계산된 결과와 잘 맞는 것을 보였다. Co의 치환량 (x)에 따라 고주파 복소 투자율 특성이 변화하였으며 이에 따라 전자기파 흡수 주파수 대역의 조절이 가능하였다. 또한 x = 1.0, 1.25, 1.5 시료에서는 매우 우수한 최대 전자기파 흡수 특성 (RL = -70 ~ -50 dB )을 보이며, 90% 이상의 전자기파 에너지를 흡수 (RL ≤ -10 dB) 하는 주파수 밴드 폭 또한 10 GHz 이상으로 광대역 레이다 흡수가 가능함을 보였다.

Holographic phase gratings in back- and frontlights for LCD's

  • Bastiaansen, C.W.M.;Heesch, C. van;Broer, D.J.
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2006년도 6th International Meeting on Information Display
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    • pp.421-421
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    • 2006
  • The light and energy-efficiency of classical liquid crystal displays is notoriously poor due to the use of absorption-based linear polarisers and colour filters. For instance, the light efficiency of PVAL polarisers is typically between 40 and 45 % and the colour filters have a typical efficiency below 35 % which results in a total light and energy-efficiency of the display below 10 %. In the past, a variety of polarizers were developed with an enhanced efficiency in generating linearly polarized light. Typically, these polarizers are based on the polarisationselective reflection, scattering or refraction of light i.e. one polarisation direction of light is directly transmitted to the LCD/viewer and the other polarization direction of light is depolarised and recycled which results in a typical efficiency for generating linearly polarized light of 70-85 %. Also, special colour filters have been proposed based on chiral-nematic reactive mesogens which increase the efficiency of generating colour. Despite the enormous progress in this field, a need persists for improved methods for generating polarized light and colour based on low cost optical components with a high efficiency. Here, the use of holographic phase gratings is reported for the generation of polarized light and colour. The phase grating are recorded in a photopolymer which is coated onto a backor frontlight for LCDs. Typically the recording is performed in the transmisson mode or in the waveguiding mode and slanted phase gratings are generated with their refractive index modulation at an angle between 20o and 45o with the normal of the substrate. It is shown that phase gratings with a high refractive index modulation and a high efficiency can be generated by a proper selection of the photopolymer and illumination conditions. These phase gratings coupleout linearly polarized light with a high contrast (> 100) and the light is directed directly to the LCD/viewer without the need for redirection foils. Dependent on the type of phase grating, the different colours are coupled-out at a slightly different angle which potentially increases the efficiency of classical colour filters. Moreover, the phase gratings are completely transparent in direct view which opens the possibility to use them in frontlights for LCDs. Holographic polarization gratings posses a periodic pattern in the polarization state of light (and not in the intensity of light). A periodic pattern in the polarization direction of linearly polarized light is obtained upon interference of two circularly polarized laser beams. In the second part of the lecture, it is shown that these periodic polarization patterns can be recorded in a linear photo-polymerizable polymer (LPP) and that such an alignment layer induces a period rotation in the director of (reactive and non-reactive) liquid crystals. By a proper design, optical components can be produced with only first order diffraction and with a very high efficiency (>0.98). It is shown that these diffraction gratings are potentially useful in projection displays with a high brightness and energy efficiency

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전자탐사 자료 해석을 위한 1차장 계산 (Primary Solution Evaluations for Interpreting Electromagnetic Data)

  • 김희준;최지향;한누리;송윤호;이기하
    • 지구물리와물리탐사
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    • 제12권4호
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    • pp.361-366
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    • 2009
  • 전자탐사에서 수평 층서구조에 대한 Green 함수의 계산은 전자기 반응의 모델링에서 핵심적인 부분을 담당한다. 해석적으로 구해진 핵함수의 Hankel 변환으로 계산되는 Green 함수는 핵함수의 대수적 등가 표현방식에 의해 그 정확도가 결정된다. 특히 3차원 모델링의 경우 Green 함수 계산 횟수가 매우 많아서 Hankel 변환 계산이 전체 계산시간의 상당량을 차지하므로, 빠르고 정확한 Hankel 변환의 계산을 위해서 선형 수치필터를 이용한다. 최근 많이 시도되는 3차원 역산을 위한 모델링에서는 송신점에서의 특이성 문제를 피하기 위해 전기장을 1차장과 2차장으로 나누어 계산하는 것이 보통이다. 이 연구에서는 균질 반무한공간에 대해 지표면에 놓인 다섯 종류의 송신원에 대한 지하 매질에서의 전기장 세성분을 Hankel 변환을 이용하여 정리하고, 그 계산 방법에 대해 고찰하였다. 그리고 2중 반공간에서 EM1D를 이용하여 공기와 바다의 영향을 모두 고려한 전자기장을 계산할 때, 보다 정확한 해의 계산을 위해 TE 및 TM 모드에서의 반사계수를 유도하였다. 여기서 정리한 해를 이용하면 MT 문제는 물론, 해양 전자탐사의 경우에도 1차장을 정확히 계산할 수 있으므로 3차원 역산에서 보다 정확하고 효율적인 감도 계산이 가능할 것이다.

지형을 고려한 주파수 영역 가중평균 유한요소법 탄성파 모델링 (Elastic Wave Modeling Including Surface Topography Using a Weighted-Averaging Finite Element Method in Frequency Domain)

  • 최지향;남명진;민동주;신창수;서정희
    • 지구물리와물리탐사
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    • 제11권2호
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    • pp.93-98
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    • 2008
  • 실제 육상 탄성파 탐사는 불규칙한 지표 지형이 있는 탄성 매질에서 수행되며, 이 경우 지표의 불규칙한 특성이 파의 전파에 영향을 미치게 된다. 지형을 고려한 탄성파 전파특성을 규명하기 위해서 주파수 영역 가중평균 유한요소법을 이용한 2차원 탄성파 모델링을 연구하였다. 먼저 지표 굴곡이 없는 균질 반무한 공간에 대해 지표 위에 공기층이 있는 경우와 없는 경우를 비교해서 공기층의 존재가 계산 결과에 미치는 영향을 확인하였다. 불규칙 지표를 포함하는 모형에 가중평균 유한요소법을 적용할 경우 일반적인 유한요소법의 경우에 비해 격자 개수를 적게 설정할 수 있어 계산시간을 절약할 수 있고 수치 계산 주시에도 큰 차이가 없음을 확인하였다. 지표면에 경사면과 계단 형태의 불규칙 지형이 있는 균질 모형에 대한 탄성파 거동을 살펴보면 불규칙 지표면의 모서리에서 새로운 송신원이 존재하는 것과 같은 효과가 나타나는 것과 레일리파가 불규칙 지표에서 더 커지는 것을 확인할 수 있었다.

물리정보신경망을 이용한 파동방정식 모델링 전략 분석 (Analysis on Strategies for Modeling the Wave Equation with Physics-Informed Neural Networks)

  • 조상인;최우창;지준;편석준
    • 지구물리와물리탐사
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    • 제26권3호
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    • pp.114-125
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    • 2023
  • 편미분방정식의 해를 구하기 위한 여러 수치해법들의 한계와 순수 데이터 기반 기계학습의 단점을 극복하기 위해 물리정보신경망(physics-informed neural network, PINN)이 제안되었다. 물리정보신경망은 편미분방정식을 손실함수 구성에 직접 활용하여 기계학습 훈련에 물리적 제약을 주는 기법으로 파동방정식 모델링에도 활용될 수 있다. 그러나 물리정보신경망을 이용하여 파동방정식을 풀기 위해서는 신경망 훈련 시 입력에 대한 2차 미분이 수행되어야 하고, 그 결과로 출력되는 파동장은 복잡한 역학적 현상들을 포함하고 있어 섬세한 전략이 필요하다. 이 해설 논문에서는 물리정보신경망의 기본 개념을 설명하고 파동방정식 모델링에 활용하기 위한 고려사항들에 대해 고찰하였다. 이러한 고려사항에는 공간좌표 정규화, 활성함수 선정, 물리손실 추가 전략이 포함된다. 훈련자료의 공간좌표를 정규화한 후 사용하면 파동방정식 모델링을 위한 신경망 훈련에서 초기 조건이 더 정확하게 반영되는 것을 수치 실험을 통해 보였다. 또한 신경망을 통한 파동장 예측에 가장 적절한 활성함수를 선정하기 위해 여러 함수들의 특성을 비교했다. 특성 비교는 각 활성함수들의 입력자료에 대한 미분과 수렴성을 중심으로 이루어졌다. 마지막으로 신경망 훈련 중 손실함수에 물리손실을 추가하는 두가지 시나리오의 결과를 비교하였다. 수치 실험을 통해 훈련 초기부터 물리손실을 활용하는 전략보다 초기 훈련단계 이후부터 물리손실을 적용하는 커리큘럼 기반 학습전략이 효과적이라는 결과를 도출했다. 추가로 이 결과를 물리손실을 전혀 사용하지 않은 훈련 결과와 비교하여 PINN기법의 효과를 확인하였다.

공동이 있는 수직 분사 초음속 연소기 내의 불안정 연소유동 해석 (Numerical Analysis of Unstable Combustion Flows in Normal Injection Supersonic Combustor with a Cavity)

  • Jeong-Yeol Choi;Vigor Yang
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2003년도 제20회 춘계학술대회 논문집
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    • pp.91-93
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    • 2003
  • A comprehensive numerical study is carried out to investigate for the understanding of the flow evolution and flame development in a supersonic combustor with normal injection of ncumally injecting hydrogen in airsupersonic flows. The formulation treats the complete conservation equations of mass, momentum, energy, and species concentration for a multi-component chemically reacting system. For the numerical simulation of supersonic combustion, multi-species Navier-Stokes equations and detailed chemistry of H2-Air is considered. It also accommodates a finite-rate chemical kinetics mechanism of hydrogen-air combustion GRI-Mech. 2.11[1], which consists of nine species and twenty-five reaction steps. Turbulence closure is achieved by means of a k-two-equation model (2). The governing equations are spatially discretized using a finite-volume approach, and temporally integrated by means of a second-order accurate implicit scheme (3-5).The supersonic combustor consists of a flat channel of 10 cm height and a fuel-injection slit of 0.1 cm width located at 10 cm downstream of the inlet. A cavity of 5 cm height and 20 cm width is installed at 15 cm downstream of the injection slit. A total of 936160 grids are used for the main-combustor flow passage, and 159161 grids for the cavity. The grids are clustered in the flow direction near the fuel injector and cavity, as well as in the vertical direction near the bottom wall. The no-slip and adiabatic conditions are assumed throughout the entire wall boundary. As a specific example, the inflow Mach number is assumed to be 3, and the temperature and pressure are 600 K and 0.1 MPa, respectively. Gaseous hydrogen at a temperature of 151.5 K is injected normal to the wall from a choked injector.A series of calculations were carried out by varying the fuel injection pressure from 0.5 to 1.5MPa. This amounts to changing the fuel mass flow rate or the overall equivalence ratio for different operating regimes. Figure 1 shows the instantaneous temperature fields in the supersonic combustor at four different conditions. The dark blue region represents the hot burned gases. At the fuel injection pressure of 0.5 MPa, the flame is stably anchored, but the flow field exhibits a high-amplitude oscillation. At the fuel injection pressure of 1.0 MPa, the Mach reflection occurs ahead of the injector. The interaction between the incoming air and the injection flow becomes much more complex, and the fuel/air mixing is strongly enhanced. The Mach reflection oscillates and results in a strong fluctuation in the combustor wall pressure. At the fuel injection pressure of 1.5MPa, the flow inside the combustor becomes nearly choked and the Mach reflection is displaced forward. The leading shock wave moves slowly toward the inlet, and eventually causes the combustor-upstart due to the thermal choking. The cavity appears to play a secondary role in driving the flow unsteadiness, in spite of its influence on the fuel/air mixing and flame evolution. Further investigation is necessary on this issue. The present study features detailed resolution of the flow and flame dynamics in the combustor, which was not typically available in most of the previous works. In particular, the oscillatory flow characteristics are captured at a scale sufficient to identify the underlying physical mechanisms. Much of the flow unsteadiness is not related to the cavity, but rather to the intrinsic unsteadiness in the flowfield, as also shown experimentally by Ben-Yakar et al. [6], The interactions between the unsteady flow and flame evolution may cause a large excursion of flow oscillation. The work appears to be the first of its kind in the numerical study of combustion oscillations in a supersonic combustor, although a similar phenomenon was previously reported experimentally. A more comprehensive discussion will be given in the final paper presented at the colloquium.

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부드러운 조각과 패션에 나타난 우연성에 관한 고찰 -프레쉬레의 유형분석을 중심으로- (A Study of Contingency Found in Soft Sculpture and Fashion -Focused on Maurice Frechuret's Type Analysis-)

  • 김보영;금기숙
    • 복식
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    • 제59권5호
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    • pp.41-52
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    • 2009
  • In contemporary art, soft materials are used in various forms and ways as a medium expressing contingency beyond a simple nature of materials. In the late 1960's, the appearance of soft sculpture as a refusal of the stereotyped 'Erection' characteristic of traditional sculpture served as an opportunity for more attention to soft materials. Fashion is the reflection of age, and the mirror of society, culture and arts. In other words, soft sculpture and fashion are artistic behaviors in the same context, which have neither been fixed nor erected. This study finds its significance in analyzing correlation between soft sculpture and fashion, and the importance of contingency as artistic expression means in this age when boundaries between genres are obscure, and artistic values are given to fashion. By doing so, it aims to present the direction toward which fashion should face in the future, establishing a new aesthetic consciousness with which more creative and various expressions are available in fashion as well. This study presented as its theoretical background the concept of soft sculpture affected by Marcel Duchamp among representative examples of the contingency that started to appear in art starting in the early 20th century. It also analyzed the soft sculpture appeared in 1960s and the expression methods and features of contingency appeared in fashion after late 1990s through a new approach of piling up, hanging up, and tying, three categories classified by Maurice $Fr{\acute{e}}churet$. Common features of the contingency expressed in soft sculpture and fashion were derived in the analysis, which are intensive effects of energy, values given to physical properties themselves, and esthetics of anti-form.

수평형 타공판의 소파특성 (Wave Absorbing Characteristics of a Horizontal Submerged Punching Plate)

  • 조일형
    • 한국해안해양공학회지
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    • 제14권4호
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    • pp.265-273
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    • 2002
  • 본 논문에서는 수면 밑에 잠긴 수평형 타공판의 소파특성을 이론계산과 모형실험을 통하여 살펴보았다. 타공판은 일정한 크기의 구멍이 균일하게 배열된 형태로, 파가 타공판 위를 통과하면서 타공판의 구멍을 통하여 강한 제트 흐름이 형성되면서 파 에너지가 소멸되는 특징을 가지고 있다. 이론해석 방법으로 선형파 이론에 근거한 고유함수전개법을 사용하였다. 타공판을 통과하는 유체의 법선방향속도는 타공판 전후의 압력차에 선형적으로 비례한다는 Darcy의 법칙을 가정하였다. 이때 공극율 계수라 불리는 비례상수는 타공판의 공극율과 밀접한 관계가 있다. 공극율 계수와 공극율사이의 함수 관계식을 얻기 위하여 수직벽 앞에 놓여진 6개의 서로 다른 공극율을 가진 타공판에 대하여 규칙파중에서 반사율을계측하였다. 해석결과와 모형실험결과를 비교하여 공극율 계수와 타공판의 공극율사이에는선형관계(b=57.63P-0.9717)가 있음을 밝혔다. 또한 최대 소파성능을 발휘하는 타공판의 공극율은 0.1근방이며, 잠긴깊이의 범위는 $d/h\\leq0.2$임을 확인하였다.

Where is the coronal loop plasma located, within a flux rope or between flux ropes?

  • 임다예;최광선;이시백
    • 천문학회보
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    • 제40권1호
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    • pp.66.3-67
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    • 2015
  • Without scrutinizing reflection, the plasma comprising a coronal loop is usually regarded to reside within a flux rope. This picture seems to have been adopted from laboratory plasma pinches, in which a plasma of high density and pressure is confined in the vicinity of the flux rope axis by magnetic tension and magnetic pressure of the concave inward magnetic field. Such a configuration, in which the plasma pressure gradient and the field line curvature vector are almost parallel, however, is known to be vulnerable to ballooning instabilities (to which belong interchange instabilities as a subset). In coronal loops, however, ideal MHD (magnetohydrodynamic) ballooning instabilities are impeded by a very small field line curvature and the line-tying condition. We, therefore, focus on non-ideal (resistive) effects in this study. The footpoints of coronal loops are constantly under random motions of convective scales, which twist individual loop strands quite randomly. The loop strands with the axial current of the same direction tend to coalesce by magnetic reconnection. In this reconnection process, the plasma in the loop system is redistributed in such a way that a smaller potential energy of the system is attained. We have performed numerical MHD simulations to investigate the plasma redistribution in coalescence of many small flux ropes. Our results clearly show that the redistributed plasma is more accumulated between flux ropes rather than near the magnetic axes of flux ropes. The Joule heating, however, creates a different temperature distribution than the density distribution. Our study may give a hint of which part of magnetic field we are looking to in an observation.

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The Effect of Gas Environment on the Electronic and Optical Properties of Amorphous Indium Zinc Tin Oxide Thin Films

  • Denny, Yus Rama;Lee, Sun-Young;Lee, Kang-Il;Seo, Soon-Joo;Oh, Suhk-Kun;Kang, Hee-Jae;Heo, Sung;Chung, Jae-Gwan;Lee, Jae-Cheol;Tougaard, Seven
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제43회 하계 정기 학술대회 초록집
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    • pp.141-141
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    • 2012
  • The electronic and optical properties of Indium Zinc Tin Oxide (IZTO) thin films using gas environment were investigated by X-ray photoelectron spectroscopy (XPS) and reflection electron energy loss spectroscopy (REELS). REELS spectra revealed that the band gaps of IZTO thin films are 3.26, 3.07, and 3.46 eV for water mixed with oxygen, argon mixed with oxygen, and air environments, respectively. The measured band gaps by REELS are consistent with the optical band gaps obtained by UV-Spectrometer. The optical properties represented by the dielectric function $\mathfrak{m}$, the refractive index n, the extinction coefficient k, and the transmission coefficient T of the IZTO thin films with different gas environments were determined from a quantitative analysis of REELS spectra. The calculated transmission from quantitative analysis of REELS spectra shows good agreement with transmission measured by UV-spectrometer. The transmission values of 89% and low electrical resistivity of $3.55{\times}10^{-3}{\Omega}{\cdot}cm$ have been achieved for argon mixed with oxygen which indicates that the gas enviroment plays an important role in improving the electronic and optical properties of films.

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