• 제목/요약/키워드: inner array

검색결과 99건 처리시간 0.028초

Multiplexed Hard-Polymer-Clad Fiber Temperature Sensor Using An Optical Time-Domain Reflectometer

  • Lee, Jung-Ryul;Kim, Hyeng-Cheol
    • International Journal of Aeronautical and Space Sciences
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    • 제17권1호
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    • pp.37-44
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    • 2016
  • Optical fiber temperature sensing systems have incomparable advantages over traditional electrical-cable-based monitoring systems. However, the fiber optic interrogators and sensors have often been rejected as a temperature monitoring technology in real-world industrial applications because of high cost and over-specification. This study proposes a multiplexed fiber optic temperature monitoring sensor system using an economical Optical Time-Domain Reflectometer (OTDR) and Hard-Polymer-Clad Fiber (HPCF). HPCF is a special optical fiber in which a hard polymer cladding made of fluoroacrylate acts as a protective coating for an inner silica core. An OTDR is an optical loss measurement system that provides optical loss and event distance measurement in real time. A temperature sensor array with the five sensor nodes at 10-m interval was economically and quickly made by locally stripping HPCF clad through photo-thermal and photo-chemical processes using a continuous/pulse hybrid-mode laser. The exposed cores created backscattering signals in the OTDR attenuation trace. It was demonstrated that the backscattering peaks were independently sensitive to temperature variation. Since the 1.5-mm-long exposed core showed a 5-m-wide backscattering peak, the OTDR with a spatial resolution of 40 mm allows for making a sensor node at every 5 m for independent multiplexing. The performance of the sensor node included an operating range of up to $120^{\circ}C$, a resolution of $0.59^{\circ}C$, and a temperature sensitivity of $-0.00967dB/^{\circ}C$. Temperature monitoring errors in the environment tests stood at $0.76^{\circ}C$ and $0.36^{\circ}C$ under the temperature variation of the unstrapped fiber region and the vibration of the sensor node. The small sensitivities to the environment and the economic feasibility of the highly multiplexed HPCF temperature monitoring sensor system will be important advantages for use as system-integrated temperature sensors.

다층 PCB 구조를 이용한 전방향성 코리니어 안테나 (Omnidirectional Collinear Antenna Using for Multi-Layer PCB Structure)

  • 정혁;서경환
    • 한국전자파학회논문지
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    • 제22권11호
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    • pp.1133-1136
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    • 2011
  • 본 논문에서는 ISM(산업/과학/의료) 대역(2.4~2.5 GHz)에서 IEEE 802.11b/g 적용을 위한 스트립라인 구조의 코리니어 안테나를 제안하였으며, 이는 동축 코리니어 안테나와 전 방향 평면 마이크로스트립 안테나(OMA)의 단점을 보완한 것이다. 4층 PCB 구조를 이용하여 기존 안테나에 비해 개선된 특성과 제작상의 이점을 가질 수 있었다. 안테나 배열을 위해 안테나 소자들의 외부 도체와 내부 도체를 ${\lambda}$/2 길이로 서로 엇갈리게 연결하여 동위상을 갖는 구조를 가지며, 상대 유전율 4.4, 손실 탄젠트(loss tangent) 0.02인 FR4 epoxy 기판을 이용하여 제작하였다. 최대 이득은 약 4.93 dBi가 측정되었으며, 기존 OMA 구조에 비하여 이득은 약 0.33 dBi 개선된 결과를 얻었다.

다구찌 방법을 이용한 시로코 홴의 최적설계에 관한 실험적 연구 (An Experimental Study on the Optimum Design of Sirocco Fan by Using Taguchi Method)

  • 김장권
    • 대한기계학회논문집B
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    • 제23권6호
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    • pp.761-768
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    • 1999
  • This paper is studied to find the optimum condition of double-inlet Sirocco fan installed in an indoor PAC for low noise operation by the Taguchi method. The goal of this study is to obtain the best combination of each control factor which results in a desired flowrate of Sirocco fan with minimum variability. In this study, the parameter design of the Taguchi method is adopted for robust design by the dynamic characteristic analysis using orthogonal arrays and S/N ratios. The flowrate measurements are conducted by using a multiple-nozzle-type fan tester according to the orthogonal array L9($3^4$). The results of this study can be summarized as follows ; (i) The optimum condition of control factor is a set of where A is an inner to outer diameter ratio($D_1/D_2$), B is a width to outer diameter ratio($L/D_2$), C is a blade attachment angle(${\theta}$) and D is a number of blade(Z), (ii) The flowrate under the optimum condition satisfies the equation $y=0.0384{\cdot}M$ where M is a signal factor, namely number of revolution. The flowrate performance improves about 7.3% more largely as compared with the current condition, which results in about 35RPM reduction of number of revolution for the target flowrate $18.5m^3/min$, and (iii) The sensitivity analysis shows that the major factors in contribution to flowrate performance are A, B, and D ; the percentage contributions of each control factor are 44.01%(Z), 26.77%($D_1/D_2$) and 20.42%($L/D_2$).

Pulse 전위를 적용한 전기화학적 증착 공정으로 제조된 가시광 활성 이종접합 $CuInS_2-TiO_2$ Nanotube 화합물 광전극 (Visible Light-Driven $CuInS_2-TiO_2$ Nanotube Composite Photoelectrodes with Heterojunction Structureusing Pulsed-Electrochemical Deposition Process)

  • 윤정호;;박영구
    • 한국응용과학기술학회지
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    • 제30권1호
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    • pp.49-56
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    • 2013
  • Excellent electron transport properties with enhanced light scattering ability for light harvesting have made well-ordered one dimensional $TiO_2$ nanotube(TNT) arrays an alternative candidate over $TiO_2$ nanoparticles in the area of solar energy conversion applications. The principal drawback of TNT arrays being activated only by UV light has been addressed by coupling the TNT with secondary materials which are visible light-triggered. As well as extending the absorption region of sunlight, the introduction of these foreign components is also found to influence the charge separation and electron lifetime of TNT. In this study, a novel method to fabricate the TNT-based composite photoelectrodes employing visible responsive $CuInS_2$ (CIS) nanoparticles is presented. The developed method is a square wave pulse-assisted electrochemical deposition approach to wrap the inner and outer walls of a TNT array with CIS nanoparticles. Instead of coating as a dense compact layer of CIS by a conventional non-pulsed-electrochemical deposition method, the nanoparticles pack relatively loosely to form a rough surface which increases the surface area of the composite and results in a higher degree of light scattering within the tubular channels and hence a greater chance of absorption. The excellence coverage of CIS on the tubular $TiO_2$ allows the construction of an effective heterojunction that exhibits enhanced photoelectrochemical performance.

증기발생기의 슬러지 세척장치 설계 및 제어방법 (Design of Sludge Washing Apparatus in Steam Generator and Control Method)

  • 김정훈;배용한;권순량
    • 한국콘텐츠학회논문지
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    • 제10권10호
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    • pp.68-77
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    • 2010
  • 원자력 발전소에서 증기발생기를 장기간 운영할 경우 슬러지가 증기발생기 내부에 축적되어 좋지 못한 영향을 미치게 된다. 본 논문은 이러한 슬러지를 효율적으로 제거할 수 있는 슬러지 세척장치의 설계 및 그 제어방법에 관한 것이다. 본 논문에서는 슬러지 세척장치 설계를 위해, 첫째, 수학적 모델 적용과 랩테스트를 통해 고압수 분사를 위한 노즐을 설계하고, 둘째, 슬러지 세척장치 구동에 필요한 성능 파라미터에 대한 수학적 이론을 정립한다. 셋째, 정립된 성능파라미터에 기반하여 세척장치의 물리적 구조체를 설계하고, 마지막으로 장치의 구동방법을 제시한다. 본 논문에서 제시하는 슬러지 세척장치는 증기발생기의 벽면을 따라 이동하면서 전열관 배열 틈사이에 대응하여 고압수를 분사하는 방식으로 슬러지를 제거함으로써 상대적으로 슬러지가 다량 형성되는 내측 바닥면이 매우 효과적으로 세척될 수 있다.

HI Shells and Supershells in the I-GALFA HI 21-cm Line Survey

  • 박금숙;구본철
    • 천문학회보
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    • 제36권2호
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    • pp.112.2-112.2
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    • 2011
  • We carry out a systematic study of HI shells and supershells in the first Galactic quadrant (l = $32^{\circ}$ to $77^{\circ}$, b = $-10^{\circ}$ to $10^{\circ}$) using the "Inner-Galaxy Arecibo L-band Feed Array (I-GALFA)" HI 21-cm survey data. The high-resolution (3.'4) and high sensitivity (0.2 K) of the survey provide us an opportunity to exploit the true nature of the sources detected in previous low-resolution studies and also to detect faint and/or small shells that were not detectable before. Our work is composed of three parts: (1) confirm the objects in the low-resolution (about 30') catalog of Heiles (1979), (2) search for fast-expanding HI shells associated with Galactic supernova remnants (SNRs), and (3) search for new shell structures. Among the 21 Heiles' supershells in the I-GALFA survey area, we confirm fourteen. The high resolution data reveal their complex morphology, and provide direct evidence for expansion in some sources. Among the 39 Galactic SNRs in the survey area, we find five with associated fast expanding HI shells, which is consistent with previous results. A remarkable result from the SNR study is the detection of HI gas at very high negative velocities in the SNR W44 that should be from the approaching part of the HI expanding shell. This is the first time to detect both the approaching and receding sides of an expanding shell in HI 21-cm emission line in SNRs. We have found 33 new shell candidates of angular sizes ranging from 0.5 to 6.5 degrees, half of which appear to be expanding. We summarize these results and discuss some individual interesting objects in detail.

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작전부대의 인원편성 최적화를 위한 워게임 전투실험 방법에 대한 연구 (A Study on Warfighting Experimentation for Organizing Operational Troops)

  • 이용빈;염봉진
    • 한국군사과학기술학회지
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    • 제14권3호
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    • pp.423-431
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    • 2011
  • Warfighting experimentation is an important process for identifying requirements against changing military environment and for verifying proposed measures for reforming military service. The wargame simulation experiment is regarded as one of the most effective means to warfighting experimentation, and its importance is increasing than ever. On the other hand, the results of wargame experiments could be unreliable due to the uncertainty involved in the experimental procedure. To improve the reliability of the experimental results, systematic experimental procedures and analysis methods must be employed, and the design and analysis of experiments technique can be used effectively for this purpose. In this paper, AWAM, a wargame simulator, is used to optimize the organization of operational troops. The simulation model describes a warfighting situation in which the 'survival rate of our force' and the 'survival rate of the enemy force' are considered as responses, 'the numbers of weapons in the squad' as control factors, and 'the uncontrollable variables of the battlefield' as noise factors. In addition, for the purpose of effective experimentation, the product array approach in which the inner and outer orthogonal arrays are crossed is adopted. Then, the signal-to-noise-ratio for each response and the desirabilities for the means and standard deviations of responses are calculated and used to determine a compromise optimal solution. The experimental procedures and analysis methods developed in this paper can provide guidelines for designing and analyzing wargame simulation experiments for similar warfighting situations.

단일 급전 원형 편파 마이크로스트립 안테나 설계 (Design of Singly Fed Microstrip Antennas Having Circular Polarization)

  • 오세창;전중창;박위상
    • 한국전자파학회논문지
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    • 제10권7호
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    • pp.998-1009
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    • 1999
  • 본 논문에서는 X 밴드 주파수에서 단얼 마이크로스트립 선로 급전방식을 갖는 원형 편파 개구면-패치 안테나(aperture-patch antenna) 및 환 구조 안테나(ring antenna)를 설계, 제작하여 특성을 측정하였다. 개구면-패치 안테나는 동작 대역폭이 매우 넓으며, 환 구조 안테나는 크기가 작아서 대형 배열안테나의 기본 복사소자로 적합하다. 이 두 종류의 안테나에 대하여 VSWR 대역폭과 원형편파 축비(axial ratio)를 개선하기 위한 여러 가지 설계 파라미터의 영향을 분석하였다. 개구면과 환 복사소자는 공진기 모델(cavity mode!)에 근거하여 초기 설계를 하였으며. 원형편파를 발생시키기 위한 개구면 내부의 패치와 환 내부의 스터브(stub) 는 Ensemble 소프트웨어를 사용하여 최적화 하였다. 제작된 안테나는 개구면-패치 안테나의 경우 25 %의 V VSWR 대역폭(3dB 기준)과 1.2 dB의 최소 축비를 가지며, 환 구조 안테나에서는 6.7 %의 VSWR 대역폭과 1.6 dB의 최소 축비를 가진다.

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TEM 정밀 시편 제작용 몰리브덴 합금 미세 고정 부품의 제작을 위한 절삭 가공 방법에 관한 연구 (A study on machining method about molybdenum alloy micro fixing part for TEM precision specimen.)

  • 김기범;이창우;이해진;함민지;김건희
    • Design & Manufacturing
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    • 제11권3호
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    • pp.19-24
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    • 2017
  • In these days, increase requirement of TEM (Transmission Electro Microscope) in not only scientific field but also industrial field. Because TEM can measure inner-structure of specimen a variety of materials like metal, bio. etc. When use TEM, specimen should be thin about 50nm. So making for thin specimen, use Ion milling device that include specimen holder. The holder generally made of Aluminium Aluminium holder is worn away easily. For this reason, using time of ion milling with aluminum holder is too short. To solve the problem, we replace aluminium holer to molybdenum alloy holder. In this paper, we design molybdenum alloy holer for CAM and modify CAD modeling for effective machining process. So we array a specimen 3 by 4 and setup orientation for one-shot machining process. Next we make a CAM program for machining. we making a decision two machining strategy that chose condition of tool-path method, step-down, step-over. etc. And then conduct machining using CNC milling machining center. To make clear difference between case.1 and case.2, we fixed machining conditions like feed-rate, main spindle rpm, etc. After machining, we confirm the condition of workpiece and analysis the problems case by case. Finally, case.2 work piece that superior than case.1 cutting with WEDM because that method can not ant mechanical effect on workpiece.

Effect of spatial variability of concrete materials on the uncertain thermodynamic properties of shaft lining structure

  • Wang, Tao;Li, Shuai;Pei, Xiangjun;Yang, Yafan;Zhu, Bin;Zhou, Guoqing
    • Structural Engineering and Mechanics
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    • 제81권2호
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    • pp.205-217
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    • 2022
  • The thermodynamic properties of shaft lining concrete (SLC) are important evidence for the design and construction, and the spatial variability of concrete materials can directly affect the stochastic thermal analysis of the concrete structures. In this work, an array of field experiments of the concrete materials are carried out, and the statistical characteristics of thermophysical parameters of SLC are obtained. The coefficient of variation (COV) and scale of fluctuation (SOF) of uncertain thermophysical parameters are estimated. A three-dimensional (3-D) stochastic thermal model of concrete materials with heat conduction and hydration heat is proposed, and the uncertain thermodynamic properties of SLC are computed by the self-compiled program. Model validation with the experimental and numerical temperatures is also presented. According to the relationship between autocorrelation functions distance (ACD) and SOF for the five theoretical autocorrelation functions (ACFs), the effects of the ACF, COV and ACD of concrete materials on the uncertain thermodynamic properties of SLC are analyzed. The results show that the spatial variability of concrete materials is subsistent. The average temperatures and standard deviation (SD) of inner SLC are the lowest while the outer SLC is the highest. The effects of five 3-D ACFs of concrete materials on uncertain thermodynamic properties of SLC are insignificant. The larger the COV of concrete materials is, the larger the SD of SLC will be. On the contrary, the longer the ACD of concrete materials is, the smaller the SD of SLC will be. The SD of temperature of SLC increases first and then decreases. This study can provide a reliable reference for the thermodynamic properties of SLC considering spatial variability of concrete materials.