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검색결과 453건 처리시간 0.034초

A cable tension identification technology using percussion sound

  • Wang, Guowei;Lu, Wensheng;Yuan, Cheng;Kong, Qingzhao
    • Smart Structures and Systems
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    • 제29권3호
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    • pp.475-484
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    • 2022
  • The loss of cable tension for civil infrastructure reduces structural bearing capacity and causes harmful deformation of structures. Currently, most of the structural health monitoring (SHM) approaches for cables rely on contact transducers. This paper proposes a cable tension identification technology using percussion sound, which provides a fast determination of steel cable tension without physical contact between cables and sensors. Notably, inspired by the concept of tensioning strings for piano tuning, this proposed technology predicts cable tension value by deep learning assisted classification of "percussion" sound from tapping a steel cable. To simulate the non-linear mapping of human ears to sound and to better quantify the minor changes in the high-frequency bands of the sound spectrum generated by percussions, Mel-frequency cepstral coefficients (MFCCs) were extracted as acoustic features to train the deep learning network. A convolutional neural network (CNN) with four convolutional layers and two global pooling layers was employed to identify the cable tension in a certain designed range. Moreover, theoretical and finite element methods (FEM) were conducted to prove the feasibility of the proposed technology. Finally, the identification performance of the proposed technology was experimentally investigated. Overall, results show that the proposed percussion-based technology has great potentials for estimating cable tension for in-situ structural safety assessment.

A Comprehensive View of Three-minute Umbral Oscillations

  • Chae, Jongchul;Cho, Kyuhyoun;Kang, Juhyeong;Kwak, Hannah;Lee, Kyeore
    • 천문학회보
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    • 제44권2호
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    • pp.40.3-40.3
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    • 2019
  • Our recent observations of the Sun through strong spectral lines have revealed several important properties of the three-minute umbral oscillations inside sunspots -- the oscillations of intensity and Doppler velocity with periods of 2 to 3 minutes. The oscillations usually occur in the form of a time series of oscillation packets each of which lasts 10 to 20 minutes, not as continuous trains. Each oscillation packet is characterized by a singly peaked power spectrum of velocity oscillation. The oscillations propagate in the vertical direction from the photosphere to the corona. In the upper chromosphere, they develop into shocks that eventually collide with the transition region. When shocks propagate along a highly inclined direction, the merging of two successive shocks can take place. Once they enter the corona, they change to linear compressional waves. In the image plane, the three-minute oscillations propagate with high speeds in the transverse direction as well, usually propagating radially outwards from a point, and sometimes accompanying spiraling patterns of Doppler velocity. These observational properties can be theoretically explained by postulating the spatio-temporally localized source of fast MHD waves at a depth of about 2000 km below the surface, the excitation of slow MHD waves via mode conversion near the photosphere, and the resonance of the slow waves in the photospheric layer below the temperature minimum, and the nonlinear development of slow waves in the chromosphere.

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Avantor® ACE® UltraCore HPLC/UHPLC 칼럼 가이드 (Avantor® ACE® UltraCore HPLC and UHPLC Columns)

  • Peter Bridge;Ian Phillips;Gemma Lo;Cassandra Rusher
    • FOCUS: LIFE SCIENCE
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    • 제1호
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    • pp.4.1-4.15
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    • 2024
  • The Avantor® ACE® UltraCore series encompasses High Performance Liquid Chromatography (HPLC) and Ultra High Performance Liquid Chromatography (UHPLC) columns designed to deliver high throughput and high-efficiency ultra-fast separations. Utilizing ultra-inert solid-core silica particles with monodisperse particle distribution, these columns combine the high efficiency of UHPLC with the operability of HPLC instrumentation, yielding lower backpressure and high-resolution separations suitable for a broad spectrum of analytes. The Avantor® ACE® UltraCore range includes three primary product types: • UltraCore BIO: Designed for large biomolecules (≥5 kDa), these columns offer exceptional performance in separating biologically derived compounds. • UltraCore: Ideal for standard small organic molecules, providing rapid separations for both synthetic and natural mixtures. • UltraCore Super: Equipped with encapsulated bonding technology for small organic molecules in extreme pH conditions, optimal for high pH buffer requirements. The Avantor® ACE® UltraCore columns present a versatile and high-efficiency solution for chromatographic separation needs, accommodating a wide range of molecular sizes and providing enhanced resolution and reduced analysis time. Their adaptability to both HPLC and UHPLC systems, combined with the advantages of solid-core technology, makes them an invaluable tool in analytical and preparative chromatography.

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Core design study of the Wielenga Innovation Static Salt Reactor (WISSR)

  • T. Wielenga;W.S. Yang;I. Khaleb
    • Nuclear Engineering and Technology
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    • 제56권3호
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    • pp.922-932
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    • 2024
  • This paper presents the design features and preliminary design analysis results of the Wielenga Innovation Static Salt Reactor (WISSR). The WISSR incorporates features that make it both flexible and inherently safe. It is based on innovative technology that controls a nuclear reactor by moving molten salt fuel into or out of the core. The reactor is a low-pressure, fast spectrum transuranic (TRU) burner reactor. Inherent shutdown is achieved by a large negative reactivity feedback of the liquid fuel and by the expansion of fuel out of the core. The core is made of concentric, thin annular fuel chambers containing molten fuel salt. A molten salt coolant passes between the concentric fuel chambers to cool the core. The core has both fixed and variable volume fuel chambers. Pressure, applied by helium gas to fuel reservoirs below the core, pushes fuel out of a reservoir and up into a set of variable volume chambers. A control system monitors the density and temperature of the fuel throughout the core. Using NaCl-(TRU,U)Cl3 fuel and NaCl-KCl-MgCl2 coolant, a road-transportable compact WISSR core design was developed at a power level of 1250 MWt. Preliminary neutronics and thermal-hydraulics analyses demonstrate the technical feasibility of WISSR.

$M{\ddot{o}}ssbauer$ 분광법에 의한 원자로 용기재료의 비파괴적 중성자 조사평가에 대한 연구 (Study of the Nondestructive Test Method for the Embrittlement Evaluation of Nuclear Reactor Vessel Material by $M{\ddot{o}}ssbauer$ Spectroscopy)

  • 정명모;장기상;유근배;김길무;윤인섭;홍치유
    • 비파괴검사학회지
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    • 제20권3호
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    • pp.183-190
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    • 2000
  • 본 연구에서는 고속 중성자가 조사된 원자로 용기 재료의 자기적 성질 변화를 $M{\ddot{o}}ssbauer$ 분광법을 이용하여 측정하였으며, X-선 회절실험을 이용하여 중성자 조사재료의 결정성 변화를 평가하였다. 시편은 크기가 $23mm{\times}18mm{\times}70{\mu}m$로 제작되었으며, 343K에서 $10^{12}n/cm^2{\sim}10^{18}n/cm^2$의 범위에서 중성자 조사를 하였다. X-선 회절실험 결과로부터, $10^{16}n/cm^2$의 중성자가 조사된 시료에서부터 결정성이 변화가 시작되고, $10^{17}n/cm^2$ 이상의 중성자가 조사된 시료에서 결정성이 심각하게 손상되는 것이 관찰되었다. 또한 $M{\ddot{o}}ssbauer$ 분광실험으로부터 중성자 조사량이 $10^{16}n/cm^2$ 이하인 시료에서는 자기적성질의 변화가 관찰되지 않았으나, $10^{17}n/cm^2$ 이상의 중성자가 조사된 시료에서 자기완화 현상이 일어나는 것이 관찰되었다. 따라서 두 실험 모두 비파괴적 실험방법에 따른 중성자 조사취화 평가로 활용이 가능한 것으로 평가되었다.

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TERRAPOWER, LLC TRAVELING WAVE REACTOR DEVELOPMENT PROGRAM OVERVIEW

  • Hejzlar, Pavel;Petroski, Robert;Cheatham, Jesse;Touran, Nick;Cohen, Michael;Truong, Bao;Latta, Ryan;Werner, Mark;Burke, Tom;Tandy, Jay;Garrett, Mike;Johnson, Brian;Ellis, Tyler;Mcwhirter, Jon;Odedra, Ash;Schweiger, Pat;Adkisson, Doug;Gilleland, John
    • Nuclear Engineering and Technology
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    • 제45권6호
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    • pp.731-744
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    • 2013
  • Energy security is a topic of high importance to many countries throughout the world. Countries with access to vast energy supplies enjoy all of the economic and political benefits that come with controlling a highly sought after commodity. Given the desire to diversify away from fossil fuels due to rising environmental and economic concerns, there are limited technology options available for baseload electricity generation. Further complicating this issue is the desire for energy sources to be sustainable and globally scalable in addition to being economic and environmentally benign. Nuclear energy in its current form meets many but not all of these attributes. In order to address these limitations, TerraPower, LLC has developed the Traveling Wave Reactor (TWR) which is a near-term deployable and truly sustainable energy solution that is globally scalable for the indefinite future. The fast neutron spectrum allows up to a ~30-fold gain in fuel utilization efficiency when compared to conventional light water reactors utilizing enriched fuel. When compared to other fast reactors, TWRs represent the lowest cost alternative to enjoy the energy security benefits of an advanced nuclear fuel cycle without the associated proliferation concerns of chemical reprocessing. On a country level, this represents a significant savings in the energy generation infrastructure for several reasons 1) no reprocessing plants need to be built, 2) a reduced number of enrichment plants need to be built, 3) reduced waste production results in a lower repository capacity requirement and reduced waste transportation costs and 4) less uranium ore needs to be mined or purchased since natural or depleted uranium can be used directly as fuel. With advanced technological development and added cost, TWRs are also capable of reusing both their own used fuel and used fuel from LWRs, thereby eliminating the need for enrichment in the longer term and reducing the overall societal waste burden. This paper describes the origins and current status of the TWR development program at TerraPower, LLC. Some of the areas covered include the key TWR design challenges and brief descriptions of TWR-Prototype (TWR-P) reactor. Selected information on the TWR-P core designs are also provided in the areas of neutronic, thermal hydraulic and fuel performance. The TWR-P plant design is also described in such areas as; system design descriptions, mechanical design, and safety performance.

반복적 대화식 통합 탄성파 속도분석 (An Iterative, Interactive and Unified Seismic Velocity Analysis)

  • 서상용;정부흥;장성형
    • 지구물리와물리탐사
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    • 제2권1호
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    • pp.26-32
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    • 1999
  • 탄성파 속도분석법은 일괄식 속도분석법과 대화식 속도 분석등 두 가지가 있다. 일괄식 속도분석법에서는 각 속도 분석점마다 셈블런스 컨투어, 슈퍼게더 및 중합 패널등을 일괄 작성하여 도면화 시킨 후 분석자가 그 도면을 보고 속도 함수를 결정하는 방법이다. 과거 유행한 전산처리 소프트웨어들이 이 방법을 사용하고 있다. 그러나 이 방법은 도면 분석시 아주 많은 수작업이 필요하고 속도분석 결과도 정밀치 못하다는 단점이 있다. 최근에는 워크스테이션의 고속 그래픽 기능을 이용한 대화식 속도분석 기술이 개발되었다. 그런데 이들 프로그램은 기존 일괄식 속도분석법과 대동소이한 내용을 그래픽 화면으로 처리할 수 있도록 함으로써 종이 절약 외에는 특별히 나아진 것이 없다. 프로그램의 주 기능은 속도 스펙트럼에서 속도점 노드를 선택하는 것이며, 입력자료에 있을 수 있는 잡음을 제거하여 다시 속도 스펙트럼을 수정하는 기능은 없다. 잡음의 제거없이 계산한 부정확한 속도 스펙트럼을 이용해서 속도 함수를 선정한다면 정밀 속도분석은 불가능할 것이다. 방대한 탄성파 탐사자료에 대한 속도분석을 신속 정확하게 수행하기 위해서는 속도 분석과 밀접한 관련이 있는 전산처리 공정들 즉, 슈퍼게더 조립, 셈블런스 계산, 동보정, 뮤트, 중합등을 동시에 지원하는 통합된 반복적 대화식 속도분석 프로그램이 필요하다. 분석 구간의 속도와 뮤트함수를 변화시켰을 때 그로부터 얻어지는 셈블런스와 동보정 및 중합을 검토하고 이러한 수정과 검토를 신속히 반복할 수 있도록 함으로써 정확한 속도분석이 가능하기 때문이다. 여기에서는 속도분석을 신속 정확하게 수행하기 위해 속도 분석과 밀접한 관련이 있는 전산처리 공정들 즉, 슈퍼게더 조립, 셈블런스 계산, 동보정, 뮤트, 중합등을 동시에 지원하는 대화식 속도분석 프로그램 xva를 작성하였다. 대화식 속도분석에서는 분석 구간의 트레이스들을 고속으로 참조해야 하는데 이를 위해 간단한 트레이스 인덱스 파일을 설계하여 사용하였다. 직접파와 굴절파등 천부 잡음을 제거하기 위한 효과적인 수단인 뮤트 함수 영역 변환법을 새로 고안하였으며, 본 프로그램은 이 기법을 이용하고 있다. 본 영 역 변환법은 기존 알려진 역동보정법과 같이 정밀 전산처리가 가능할 뿐만 아니라 동보정과 역동보정시 발생하는 자료의 내삽 오차가 없으며 계산 시간이 크게 단축되기 때문에 정밀 대화식 속도 분석에 사용 가능하다. 프로그램 xva는 28개의 소스 파일로 구성된 패키지인데 줄 수는 12,029, 단어 수는 34,990, 글자 수는 304,073이다. 프로그램 xva는 X-Window와 Motif 환경하에서 작동한다. 프로그램 메뉴는 Motif 표준 스타일에 따라 작성하였는 바 그 사용법을 간략히 기술하였다. 본 프로그램이 완성됨으로 인하여 정밀 탄성파 속도 분석이 가능하게 되었고 그 결과 가스층의 존재 여부를 직접 확인할 수 있는 AVO(Amplitude Versus Offset)단면도등의 제작에 활용할 수 있었다.

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Are Quasars Growing Fast in the Early Universe?: The Lowest Eddington Ratio Quasar at z~6

  • Kim, Yongjung;Im, Myungshin;Jeon, Yiseul;Kim, Minjin;Hyun, Minhee;Kim, Dohyeong;Kim, Jae-Woo;Taak, Yoon Chan;Yoon, Yongmin;Choi, Changsu;Hong, Jueun;Jun, Hyunsung David;Karouzos, Marios;Kim, Duho;Kim, Ji Hoon;Lee, Seong-Kook;Pak, Soojong;Park, Won-Kee
    • 천문학회보
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    • 제42권2호
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    • pp.44.3-45
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    • 2017
  • To date, luminous quasars at z ~ 6 have been found to be in maximal accretion with the Eddington ratios, ${\lambda}Edd$ ~ 1, suggesting enhanced nuclear activities in the early universe. However, this may not be the whole picture of supermassive black hole (SMBH) growth since previous studies have not reached on faint quasars that are more likely to harbor SMBHs with low ${\lambda}Edd$. To understand the accretion activities in quasars at high redshift, we obtained the deep near-infrared (NIR) spectrum of a quasar, IMS J2204+0112, one of the few faintest quasars that have been identified at z ~ 6. From the NIR spectrum, we find that IMS J2204+0112 harbors a SMBH with about a billion solar mass, with ${\log}({\lambda}Edd)=-0.91$. This is the lowest accretion rate found so far for quasars at z ~ 6, but a common value among quasars at z ~ 2. The inclusion of this object in the ${\lambda}Edd$ analysis gives the intrinsic ${\lambda}Edd$ distribution of z ~ 6 quasars, which is lower than previous results that are based on bright quasars, but it is still higher than ${\lambda}Edd$ of z ~ 2 quasars. Although the number statistics needs to be improved in future, the low peak ${\lambda}Edd$ value is consistent with the SMBH growth from a massive black hole seed (~ 105 Msun) or from a stellar mass black hole through short-duration super-Eddington accretion events (${\lambda}Edd$ > 10).

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Optical Method for Measuring Deposition Amount of Black Carbon Particles on Foliar Surface

  • Yamaguchi, Masahiro;Takeda, Kenta;Otani, Yoko;Murao, Naoto;Sase, Hiroyuki;Lenggoro, I. Wuled;Yazaki, Kenichi;Noguchi, Kyotaro;Ishida, Atsushi;Izuta, Takeshi
    • Asian Journal of Atmospheric Environment
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    • 제6권4호
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    • pp.268-274
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    • 2012
  • To perform quick measurements of black carbon (BC) particles deposited on foliar surfaces of forest tree species, we investigated an optical method for measuring the amount of BC extracted from foliar surfaces and collected on quartz fiber filters. The seedlings of Fagus crenata, Castanopsis sieboldii, Larix kaempferi and Cryptomeria japonica were exposed to submicron BC particles for one growing season (1 June to 7 December 2009). At the end of the growing season, the leaves or needles of the seedlings were harvested and washed with deionized water followed by washing with chloroform to extract the BC particles deposited on the foliar surfaces. The extracted BC particles were collected on a quartz fiber filter. The absorption spectrum of the filters was measured by spectrophotometer with an integrating sphere. To obtain the relationship between the absorbance of the filter and the amount of BC particles on the filter, the amount of BC particles on the filter was determined as that of elemental carbon (EC) measured by a thermal optical method. At wavelengths below 450 nm, the absorption spectrum of the filter showed absorption by biological substances, such as epicuticular wax, resulting in the low coefficient of determination ($R^2$) in the relationship between the amount of EC on the filter ($M_{EC}$, ${\mu}g\;C\;cm^{-2}$ filter area) and the absorbance of the filter. The intercept of the regression line between $M_{EC}$ and the absorbance of the filter at 580 nm ($A_{580}$) was closest to 0. There was a significant linear relationship between the $A_{580}$ and $M_{EC}$ ($R^2$=0.917, p<0.001), suggesting that the amount of BC particles collected on the filter can be predicted from the absorbance. This optical method might serve as a simple, fast and cost-effective technique for measuring the amount of BC on foliar surfaces.

국민안전처 통합관리시스템 연계 가능한 시설물 진동 감지 및 분석 시스템 개발 (A Development of Real-time Vibration Monitoring and Analysis System Linked to the Integrated Management System of Ministry of Public Safety and Security)

  • 임지훈;정진우;문대중;최동호
    • 한국구조물진단유지관리공학회 논문집
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    • 제20권3호
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    • pp.130-139
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    • 2016
  • 국내의 지진 발생 추이가 증가세를 보이고 있으며, 이에 따라 시설물 피해를 주고 큰 인명 피해를 초래하는 지진재해에 대한 대비의 중요성이 대두되고 있다. 지진재해에 대비하기 위해서는 지진 또는 진동가속도에 대한 실시간 계측을 하는 것이 중요하다. 일본과 미국의 경우 중요 시설물에 대하여 이미 실시간 지진가속도계측을 시행하고 있으며 계측된 지진가속도데이터는 데이터베이스화되어 관리되고 있다. 이를 이용해 내진설계기준 개정시 또는 지진으로 인한 피해 예측시 활용하고 있다. 국내의 경우, 최근 지진재해대책법 및 시행규칙이 개정되어 공포되었으며, 국민안전처에서 지진가속도계측자료 통합관리시스템을 구축해 나가고 있는 상황이다. 본 연구의 목적은 국민안전처 통합관리시스템에 연계가 가능한 시설물 실시간 진동 감지 및 분석 시스템을 개발 하는 것이다. 이 시스템은 지진가속도계측데이터 모니터링 기능을 포함하며, 또한 고속푸리에변환, 고유진동수 추출, 응답스펙트럼, 파워스펙트럼, 진도 표출, 시설물 건전도 평가 등 다양한 가속도데이터 분석 기능을 갖추고 있을 뿐만 아니라 국민안전처 지진가속도계측자료 시스템에 연계가 가능하도록 설계되었다. 개발된 시스템은 시설물의 안전관리 네트워크 구축, 지진 또는 진동으로 인한 시설물의 피해에 대한 대비, 유지관리 비용의 최소화에 긍정적인 효과가 있을 것이라고 판단된다.