• 제목/요약/키워드: Envelope surface

검색결과 167건 처리시간 0.027초

압전 수중음향센서 음향특성의 유한요소해석 (Finite Element Analysis for Acoustic Characteristics of Piezoelectric Underwater Acoustic Sensors)

  • 김재환;손선봉;조철희;조치영
    • 한국음향학회지
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    • 제20권1호
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    • pp.68-76
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    • 2001
  • 유한요소법을 이용하여 압전 수중음향센서의 모델링 및 음향특성을 해석하였다. 압전 수중음향센서의 해석에서 기본적인 압전-탄성 구조물과 유체-구조물의 연성해석을 위한 유한요소 정식화를 하였으며 무한영역의 음향유체를 처리하기 위하여 IWEE (Infinite Wave Envelop Element)를 도입하였다. Tonpilz형 수중음향센서를 수중 산란체로 볼 경우 입사파가 산란체의 표면을 가진할 때 산란체로부터 발생되는 산란파는 IWEE로 인하여 무한 유체영역에서의 산란파의 감소특성을 갖게 되어 무한영역을 유한영역으로 나눈 인위적인 경계에서 반사가 일어나지 않게 되므로 산란파의 음압을 정확히 구할 수 있었다. 또한, 이러한 산란해석을 바탕으로 입사파에 대한 음향센서 내부의 전기적 응답특성인 RVS (Receiving Voltage Signal)를 구하였다. 이러한 일련의 연구 과정들은 소나 시스템을 정확히 해석하고 음향특성을 예측하는데 큰 도움이 될 것이다.

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평판 및 모서리형 현장열저항 측정기기 개발을 위한 Computer Simulation (Computer Simulation for Developing the Plate and Corner Type In-Situ Thermal Resistance Measuring Device)

  • 강병웅;박승익;유승선;박효순
    • 태양에너지
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    • 제19권4호
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    • pp.71-80
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    • 1999
  • 본 연구는 예비실험에서 나타난 평판 및 모서리형 현장 열저항 측정기의 내부공기 온도편차를 줄일 수 있는 방안을 모색하기 위한 것으로 연구결과 다음과 같은 결론을 얻을 수 있었다. 첫째, 측정기의 크기에 따라 기기내의 온도편차는 큰 변화가 없으므로 사용과 운반이 용이한 소형이 적정하며 둘째, 방열판의 위치는 측정기 Casing을 통한 부수적인 손실열량을 최소화하기 위해 측정기 내부 표면과 이격시켜 설치하고 셋째, 방열판의 온도는 측정기내부온도가 실내온도까지 접근하는 도달시간을 고려하여 가능한 한 낮게 설정하고 넷째, 측정기 내부에 설치되는 팬은 측정기의 상부에 설치하여 기류를 하향으로 토출하며 다섯째, 방열판 앞에는 Baffle Plate를 설치하는 것이 기기내의 온도편차를 줄일 수 있는 유효한 방법임을 알 수 있었다.

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Azasugar-Containing Phosphorothioate Oligonucleotide (AZPSON) DBM-2198 Inhibits Human Immunodeficiency Virus Type 1 (HIV-1) Replication by Blocking HIV-1 gp120 without Affecting the V3 Region

  • Lee, Jinjoo;Byeon, Se Eun;Jung, Ju Yeol;Kang, Myeong-Ho;Park, Yu-Jin;Jung, Kyeong-Eun;Bae, Yong-Soo
    • Molecules and Cells
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    • 제38권2호
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    • pp.122-129
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    • 2015
  • DBM-2198, a six-membered azasugar nucleotide (6-AZN)-containing phosphorothioate (P = S) oligonucleotide (AZPSON), was described in our previous publication [Lee et al. (2005)] with regard to its antiviral activity against a broad spectrum of HIV-1 variants. This report describes the mechanisms underlying the anti-HIV-1 properties of DBM-2198. The LTR-mediated reporter assay indicated that the anti-HIV-1 activity of DBM-2198 is attributed to an extracellular mode of action rather than intracellular sequence-specific antisense activity. Nevertheless, the antiviral properties of DBM-2198 and other AZPSONs were highly restricted to HIV-1. Unlike other P = S oligonucleotides, DBM-2198 caused no host cell activation upon administration to cultures. HIV-1 that was pre-incubated with DBM-2198 did not show any infectivity towards host cells whereas host cells pre-incubated with DBM-2198 remained susceptible to HIV-1 infection, suggesting that DBM-2198 acts on the virus particle rather than cell surface molecules in the inhibition of HIV-1 infection. Competition assays for binding to HIV-1 envelope protein with anti-gp120 and anti-V3 antibodies revealed that DBM-2198 acts on the viral attachment site of HIV-1 gp120, but not on the V3 region. This report provides a better understanding of the antiviral mechanism of DBM-2198 and may contribute to the development of a potential therapeutic drug against a broad spectrum of HIV-1 variants.

비정형 건물일체형 태양광 발전 시스템 규칙기반 BIM설계 지원 도구 개발 (Development of a Rule-based BIM Tool Supporting Free-form Building Integrated Photovoltaic Design)

  • 홍성문;김대성;김민철;김주형
    • 한국BIM학회 논문집
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    • 제5권4호
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    • pp.53-62
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    • 2015
  • Korea has been at the forefront of green growth initiatives. In 2008, the government declared the new vision toward 'low-carbon society and green growth'. The government subsidies and Feed-in Tariff (FIT) increased domestic usage of solar power by supplying photovoltaic housing and photovoltaic generation systems. Since 2000, solar power industry has been the world's fastest growing source with the annual growth rate of 52.5%. Especially, BIPV(Building Integrated Photovoltaic) systems are capturing a growing portion of the renewable energy market due to several reasons. BIPV consists of photovoltaic cells and modules integrated into the building envelope such as a roof or facades. By avoiding the cost of conventional materials, the incremental cost of photovoltaics is reduced and its life-cycle cost is improved. When it comes to atypical building, numerous problems occur because PV modules are flat, stationary, and have its orientation determined by building surface. However, previous studies mainly focused on improving installations of solar PV technologies on ground and rooftop photovoltaic array and developing prediction model to estimate the amount of produced electricity. Consequently, this paper discusses the problem during a planning and design stage of BIPV systems and suggests the method to select optimal design of the systems by applying the national strategy and economic policies. Furthermore, the paper aims to develop BIM tool based on the engineering knowledge from experts in order for non-specialists to design photovoltaic generation systems easily.

양면형 BIPV 시스템의 설치환경에 따른 발전특성 분석 (Analysis of Generation Characteristics of a Bifacial BIPV System According to Installation Methods)

  • 강준구;김진희;김준태
    • Current Photovoltaic Research
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    • 제3권4호
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    • pp.121-125
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    • 2015
  • BIPV system is one of the best ways to harness PV module. The BIPV system not only produces electricity, but also acts as a building envelope. Thus, it has the strong point of increasing the economical efficiency by applying the PV modules to the buildings. Bifacial solar cells can convert solar energy to electrical energy from both sides of the module. In addition, it is designed as 3 busbar layout which is the same with ordinary mono-facial soalr cells. Therefore, many of the module manufacturers can easily produce the bifacial solar cells without changing their manufacturing equipment. Moreover, bifacial BIPV system has much potential in building application by utilizing glass to glass structure. However, the performance of bifacial solar cells depends on a variety of factors, ranging from the back surface to surrounding conditions. Therefore, in order to apply bifacial solar cells to buildings, an analysis of bifacial PV module performance should be carried out that includes a consideration of various design elements, and reflects a wide range of installation conditions. As a result it found that the white insulation reflector type can improve the performance of the bifacial BIPV system by 16%, compared to the black insulation reflector type. The performance of the bifacial BIPV was also shown to be influenced by inclination angle, due to changes in both the amount of radiation captured on the front face and the radiation transmitted to the rear face through the transparent space. In this study is limited design condition and installation condition. Accordingly follow-up researches in this part need to be conducted.

반응표면 실험 계획법에 의한 Mono-Acetate 필터담배 설계의 물리성 예측 (Prediction of Physical Properties in the Design of Mono-Acetate Filter Cigarette by Response Surface Methodology)

  • 김영호;이영택;김성한;김윤동;임광수;김용태
    • 한국연초학회지
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    • 제16권1호
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    • pp.3-13
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    • 1994
  • To minimize the time ordinarily spent in mono filter cigarette design, we studied the relationship between major seven independant variables ; filament(X1) and total denier(X2), porosity of the aller plug wrap(X3), filter length(X4), Porosity of the tip paper(X5) and cigarette paper(X6) and net weight of the reference cut tobacco(X7). Ninty trial numbers were obtained as a results of using rotatable central composite design and it is analyzed by the multiple regression analysis with stepwise in SAS/pc under restricted conditions. That is, UPD (Y1) = 82.96 - 3.80X1 + 2.50X2 - 3.29X3 - 3.15X5 - 0.83X22 + 1.88X5X6 - 1.38 X5X7(R2: 0.63), EPD(Y2) : 120.91 - 5.70X1 + 3.60X2 + 4.23X4 - 0.93X6 + 4.06X7 (R2=0.84), TVR(Y3) = 49.70 - 0.78X1 + 3.60X3 + 2.00X4 + 4.20X5 - 0.93X6 + 2.64X7 - 1.07X1X2 + 1.0IX1 X3 + 1.05X2X6 + 0.45X22 - 0.64X42 + 1.29X4X6 - 0.97X4X7 - 1.28X5X6 + 1.53X5X7 + 1.39X6X7(R2=0.65), and EVR(Y4) : 3.24-0.21X3-0.20X4 -0.24X5+0.67X6+0.26X4X7 (R2=0.55), where EPD : encapsulated pressure drop, VPD : unencapsulated pressure drop, TVR ; tip ventilation rate, and En : envelope ventilation rate. All variables in the model are significant at the 0.05 level.

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계장화한 긴 바를 사용한 세라믹판의 충격 파괴 거동 (Impact Fracture Behavior of Ceramic Plates Using Instrumented Long Bar)

  • 신형섭;오상엽;최수용;서창민;장순남
    • 대한기계학회논문집A
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    • 제26권4호
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    • pp.787-793
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    • 2002
  • In this study, a bar impact test of low velocity was carried out to gain an insight into the damage mechanism and sequence induced in alumina plates(AD 85 and AD 90) under impact conditions. An experimental setup utilizing an instrumented long bar impact was devised, that can measure directly the impact force applied to the specimen and supply a compressive contact pressure to the specimen. During the bar impact testing, the influences of the contact pressure applied along the impact direction to the specimen on the fracture behavior were investigated. The measured impact force profiles explained well the damage behavior induced in alumina plates. The higher contact pressure to the specimen led to the less damage due to the suppression of radial cracks due to the increase in the apparent flexural stiffness of plate. It had produced the change of damage pattern developed in the specimen; from the radial cracks to the local contact stress dominant damage. It would contribute to the improvement of the ballistic property in ceramic plates. The observed results showed the following sequence in damage developed: The development of cone crack at impact region, the formation of radial cracks from the rear surface of plate depending on the plate thickness, the occurrence of crushing within the cone envelope and the fragmentation.

Comparison of aerodynamic loading of a high-rise building subjected to boundary layer and tornadic winds

  • Ashrafi, Arash;Chowdhury, Jubayer;Hangan, Horia
    • Wind and Structures
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    • 제34권5호
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    • pp.395-405
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    • 2022
  • Tornado-induced damages to high-rise buildings and low-rise buildings are quite different in nature. Tornado losses to high-rise buildings are generally associated with building envelope failures while tornado-induced damages to low-rise buildings are usually associated with structural or large component failures such as complete collapses, or roofs being torn off. While studies of tornado-induced structural damages tend to focus mainly on low-rise residential buildings, transmission towers, or nuclear power plants, the current rapid expansion of city centers and development of large-scale building complexes increases the risk of tornadoes impacting tall buildings. It is, therefore, important to determine how tornado-induced load affects tall buildings compared with those based on synoptic boundary layer winds. The present study applies an experimentally simulated tornado wind field to the Commonwealth Advisory Aeronautical Research Council (CAARC) building and estimates and compares its pressure coefficient effects against the Atmospheric Boundary Layer (ABL) flow field. Simulations are performed at the Wind Engineering, Energy and Environment (WindEEE) Dome which is capable of generating both ABL and tornadic winds. A model of the CAARC building at a scale of 1:200 for both ABL and tornado flows was built and equipped with pressure taps. Mean and peak surface pressures for TLV flow are reported and compared with the ABL induced wind for different time-averaging. By following a compatible definition of the pressure coefficients for TLV and ABL fields, the resulting TLV pressure field presents a similar trend to the ABL case. Also, the results show that, for the high-rise building model, the mean and 3-sec peak pressures are larger for the ABL case compared to the TLV case. These results provide a way forward for the code implementation of tornado-induced pressures on high-rise buildings.

지중연속벽 시공을 위한 트렌치 굴착시 지반변형에 관한 모형실험 (Model Tests on Ground Deformation during Trench Excavation for Diaphragm Walls)

  • 홍원표;이문구;이재호
    • 한국지반공학회논문집
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    • 제22권12호
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    • pp.77-88
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    • 2006
  • 지중연속벽 시공을 위한 트렌치 굴착시 굴착배면지반의 침하거동을 규명하기 위한 모형실험을 실시하였다. 트렌치 굴착을 모사하는 모형실험장치를 제작하였으며 계측시스템을 이용하여 트렌치 굴착시 굴착배면지반의 침하를 측정하였다. 모형실험결과 트렌치 굴착시 굴착배면지반의 침하량은 굴착면에 가까워질수록 크게 증가하는 경향을 보이는 것으로 나타났다. 지반의 상대밀도가 작고, 지하수위가 높을수록 굴착시 배면지반에서의 침하량은 크게 발생하였다. 그리고, 굴착배면지반에서의 침하량은 최종 굴착깊이의 약40%에 해당하는 이격거리에서 급격하게 증가함을 알 수 있었다. 한편, 트렌치 굴착완료후 굴착면내 안정액의 수위를 저하시킬 경우 굴착측벽에서는 벌징(Bulging) 현상이 발생되고, 굴착배면지반에서는 침하현상이 발생되어 종국에는 굴착면 상부에서 지반붕괴가 발생되었다. 모형실험에서 측정된 굴착배면지반에서의 침하량은 Clough and O'Rourke(1990)에 의해 제안된 침하량보다 작게 발생하였으며, 굴착배면지반의 침하기준선은 굴착벽면 주변에서 급격하게 증가하는 쌍곡선형태로 관찰되었다.

방수배열소나의 연산량 감소를 위한 펄스 시작점 산출 방법 (A method of determining pulse start points for reduction in computational amount of intercept array sonar)

  • 김도영;신기철;정태진;엄민정
    • 융합신호처리학회논문지
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    • 제25권1호
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    • pp.1-6
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    • 2024
  • 방수배열소나의 주 기능은 적 수상함 및 잠수함, 어뢰 등에서 방사하는 펄스를 탐지하는 것이다. 펄스를 탐지한 경우에는 자함 입장에서 위험도가 높은 상황이므로 자함의 기동 및 생존을 위해 표적의 위치를 찾는 건 매우 중요하다. 표적의 위치는 각 센서에서 수신된 펄스의 시작점을 찾고 센서 간 시간지연 값을 계산하여 산출하게 된다. 펄스 시작점을 구하기 위해서는 신호의 포락선을 산출하고 미분 필터링 과정을 거치게 되는데 방수배열소나는 신호의 샘플링 주파수가 높아 처리하는 샘플 개수가 많으므로 이 과정은 연산량이 큰 문제가 있다. 이에 본 논문은 연산량을 줄일 수 있는 간축 적용 펄스 시작점 산출 방법을 제안하였다. 간축 계수를 변경하면서 시뮬레이션을 수행하였고 연산량이 감소함을 확인하였다. 제안한 방법은 실시간 처리 시스템에 효과적이며 자원 활용도에 장점을 가질 것으로 기대한다.