• 제목/요약/키워드: reversal experiment

검색결과 67건 처리시간 0.026초

청틸라피아의 체조성과 생식소 중량 지수에 미치는 $17\alpha-Methyltestosterone$ 호르몬의 영향 (Effects of Dietary $17\alpha-Methyltestosterone$ on Body Composition and Gonosomatic Indices in Blue Tilapia, Oreochromis aureus(Steindachner))

  • 조재윤;알 오닐 스미들먼;더글러스 테이브
    • 한국양식학회지
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    • 제8권3호
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    • pp.183-193
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    • 1995
  • 청틸라피아 (Oreochromis aureus)의 자어에 0, 1, 10, 60 ppm의 $17\alpha-methyltestosterone$(MT)을 30 일간 사료에 섞어 먹인 후 다음 57 일간을 0 ppm을 먹인 그룹은 다시 세그룹으로 나누어 0 ppm MT (0-0), 10 ppm MT (0-10), 및 60 ppm MT (0-60)을 먹였고, 60 ppm 을 먹인 그룹은 다시 3 그룹으로 나누어 0 ppm MT (60-0), 10 ppm MT (60-10), 및 60 ppm MT (60-60)을 먹였으며, 초기 30 일간 1 ppm과 10 ppm MT를 먹인 것은 계속해서 1과 10 ppm을 먹여서 체조성과 생식소 중량지수에 미치는 영향을 조사하였다. 초기 30 일간 어체의 조단백과 조지방은 MT 농도와 역상관 관계를 보였고, 수분 함량은 순상관 관계를 보였다. 후기 57 일간에 먹인 MT는 초기 30 일간 먹인 MT 보다도 숫컷의 체조성에 더 큰 영향을 미쳤다. 사료 중의 MT는 초기 30 일간이나 후기 57 일간 모두 숫컷의 생식소 중량지수에 나쁜 영향을 보인 반면에, 암컷의 경우에는 후기 57 일간에 사료 중의 MT 양이 생식소 중량지수에 나쁜 영향을 나타내었다.

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음향채널이 존재하는 천해에서의 수동 시역전 통신 성능 분석 (Analysis of passive time-reversal communication performance in shallow water with underwater sound channel)

  • 최강훈;김선효;최지웅;김현수;김병남
    • 한국음향학회지
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    • 제37권1호
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    • pp.21-30
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    • 2018
  • 수동 시역전 기법은 시공간적인 집속효과를 통해 다중경로 채널응답에 의한 인접 심볼간 간섭의 영향을 줄임으로써 수중통신 시스템의 오류 성능을 향상시킬 수 있는 방법이다. 이러한 수동 시역전 기법은 일반적으로 시역전 결합에 사용되는 수신신호가 많을수록 큰 공간 다이버시티 이득을 얻기 때문에 많은 수의 수신기를 사용할 때 우수한 통신 성능을 얻을 수 있다. 본 논문에서는 제한된 개수의 수신기를 사용하더라도 많은 수의 수신기를 사용할 때와 근접한 통신 성능을 얻을 수 있는 수신기의 개수와 조합에 대해 분석한다. 분석을 위해 2015년 5월에 제주 남서쪽 해역에서 수행된 SAVEX15(Shallow-water Acoustic Variability Experiment 2015) 실험 데이터를 활용한다. 음향채널이 존재하는 채널 특성 때문에 에너지가 집중되는 수심이 존재하였고 에너지가 집중되는 수심에 존재하는 수신기를 포함하여 수동 시역전 결합을 할 때, 일부의 수신기만을 사용하여 최적에 가까운 통신 성능을 도출할 수 있음을 보인다.

펌프장 정전시 역류발생시간에 관한 연구 (A Study on the Reversal Flow Time due to Blackout)

  • 박종호;박한영
    • 한국유체기계학회 논문집
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    • 제14권6호
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    • pp.26-34
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    • 2011
  • Waterhammer and slamming phenomena can occur when power is cut off due to reversal flow in pipeline and sudden close of check valve. Therefore analysis of reversal flow time, which means the time of reversal flow in pipeline due to pumping station blackout, is needed to protect facilities from waterhammer economically and efficiently. However systematic study on reversal flow time has not been done yet. So theory of reversal flow time analysis is proposed and verified with experiment using several parameters like pump specific speed, motor pole number, and characteristic curve of pipeline in this study.

구조물 손상진단을 위한 Lamb 파의 시간-역전현상에 대한 실험 (Experiment on the Time-Reversal of Lamb Waves for the Application to Structural Damage Detection)

  • 고한석;이창호;이우식
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2007년도 추계학술대회 논문집
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    • pp.913-916
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    • 2007
  • In this paper, the possibility of time reversal phenomenon was investigated in damage detection of structure. In conventional lamb wave techniques, damage is identified by comparing the measured data (baseline signals) and the current data. But this method can lead to high false signal in the intact condition of structures due to environmental conditions of the structures. So in this studying, we investigate the possibility of damage detection in the aluminum plate using the time reversal phenomenon of lamb waves.

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폭압에 의한 방폭문의 구조적 안정성에 대한 연구 (A Study On Structural Stability Of Blast Door by Blast Pressure)

  • 김남혁;박관진;이근오
    • 한국안전학회지
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    • 제31권3호
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    • pp.8-15
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    • 2016
  • The purpose of this study is to design a model with the structural stability so as not to lose the operational function due to structural plastic or fail of a sliding blast door by blast pressure to this aim, a numerical simulation was performed using full-size experiments and M&S (Modeling & Simulation) of the sliding blast door. The sliding blast door ($W3,000{\times}H2,500mm$) under the blast load is in the form of a sliding type 2-way metal grill, which was applied by a design blast pressure (reflected pressure $P_r$) of 17 bar. According to the experimental results of a real sliding blast door under blast load, the blast pressure reached the sliding blast door approximately 4.3 ms after the explosion and lasted about 4.0 ms thereafter. The maximum blast pressure($P_r$) was 347.7 psi (2,397.3 kPa), it is similar to the UFC 3-340-02 of Parameter(91 %). In addition, operation inspection that was conducted for the sliding blast door after real test showed a problem of losing the door opening function, which was because of the fail of the Reversal Bolt that was installed to prevent the shock due to rebound of the blast door from the blast pressure. According to the reproduction of the experiment through M&S by applying the blast pressure measurement value of the full-size experiments, the sliding blast door showed a similar result to the full-size experiment in that the reversal bolt part failed to lose the function. In addition, as the pressure is concentrated on the failed reversal bolt, the Principal Tensile Failure Stress was exceeded in only 1.25 ms after the explosion, and the reversal bolt completely failed after 5.4 ms. Based on the result of the failed reversal bolt through the full-size experiment and M&S, the shape and size of the bolts were changed to re-design the M&S and re-analyze the sliding blast door. According to the M&S re-analysis result when the reversal bolt was designed in a square of 25 mm ($625mm^2$), the maximum pressure that the reversal bolt receives showed 81% of the principal tensile failure stress of the material, in plastic stage before fail.

Low Writing Field on Perpendicular Nano-ferromagnetic

  • Wibowo, Nur Aji;Rondonuwu, Ferdy S.;Purnama, Budi
    • Journal of Magnetics
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    • 제19권3호
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    • pp.237-240
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    • 2014
  • For heat-assisted magnetic recording, magnetization reversal probabilities of nano-Pt/MnSb multilayer film with perpendicular magnetic anisotropy under thermal pulse activation were investigated numerically by solving the Landau-Lifshift Gilbert Equation. Magnetic parameters of nano-Pt/MnSb multilayer were used with anisotropy energy of $3{\times}10^5$ erg/cc and saturation magnetization of 2100 G, which offer more than 10 y data stability at room temperature. Scheme of driven magnetic field and thermal pulse on writing mechanism was designed closely to real experiment. This study found that the chosen material is potential to be used as a high density magnetic storage that requires low writing field less than two-hundreds Oersted through definite heating and cooling interval. The possibility of writing data with a zero driven magnetic field also became an important result. Further study is recommended on the thickness of media and thermal pulse design as the essential parameters of the reversal magnetization.

토오컨강화와 사회적강화를 이용한 유아원 아동의 부적절한 학습행동의 수정 (Modifying Inappropriate Behaviors of Nursery School Children through Token and Social Reinforcement)

  • 김진숙
    • 아동학회지
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    • 제8권2호
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    • pp.61-71
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    • 1987
  • The effects of token and social reinforcement on inappropriate study behaviors of nursery school children were investigated. The subjects were three nursery school boys, and the target behaviors were : 1) out-of-seat behaviors, 2) bothering other children, and 3) disruptive behaviors. The ABAB(Reversal) design was used in this experiment. It consisted of four periods : baseline, reinforcement I, reversal, and reinforcement II. During the reinforcement period, social reinforcement as well as token reinforcement was applied. In all three subjects, inappropriate study behaviors decreased during the reinforcement periods (I, II), and increased during the reversal period, showing the effects of token and social reinforcement. The subjects showed stability in three post-experimental tests, indicating that modification of inappropriate study behaviors was being maintained.

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유도초음파의 시간.역전 현상을 활용한 구조손상 진단기법 (Structural Damage Diagnosis Method by Using the Time-Reversal Property of Guided Waves)

  • 이우식;최정식
    • 한국정밀공학회지
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    • 제27권6호
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    • pp.64-74
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    • 2010
  • This paper proposes a new TR-based baseline-free SHM technique in which the time-reversal (TR) property of the guided Lamb waves is utilized. The new TR-based SHM technique has two distinct features when compared with the other TR-based SHM techniques: (1) The backward TR process commonly conducted by the measurement is replaced by the computation-based process; (2) In place of the comparison method, the TOF information of the damage signal extracted from the reconstructed signal is used for the damage diagnosis in conjunction with the imaging method which enables us to represent the damage as an image. The proposed TR-based SHM technique is then validated through the damage diagnosis experiment for an aluminum plate with a damage at different locations.

A phase synthesis time reversal impact imaging method for on-line composite structure monitoring

  • Qiu, Lei;Yuan, Shenfang
    • Smart Structures and Systems
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    • 제8권3호
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    • pp.303-320
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    • 2011
  • Comparing to active damage monitoring, impact localization on composite by using time reversal focusing method has several difficulties. First, the transfer function of the actuator-sensor path is difficult to be obtained because of the limitation that no impact experiment is permitted to perform on the real structure and the difficulty to model it because the performance of real aircraft composite is much more complicated comparing to metal structure. Second, the position of impact is unknown and can not be controlled as the excitation signal used in the active monitoring. This makes it not applicable to compare the difference between the excitation and the focused signal. Another difficulty is that impact signal is frequency broadband, giving rise to the difficulty to process virtual synthesis because of the highly dispersion nature of frequency broadband Lamb wave in plate-like structure. Aiming at developing a practical method for on-line localization of impact on aircraft composite structure which can take advantage of time reversal focusing and does not rely on the transfer function, a PZT sensor array based phase synthesis time reversal impact imaging method is proposed. The complex Shannon wavelet transform is presented to extract the frequency narrow-band signals from the impact responded signals of PZT sensors. A phase synthesis process of the frequency narrow-band signals is implemented to search the time reversal focusing position on the structure which represents the impact position. Evaluation experiments on a carbon fiber composite structure show that the proposed method realizes the impact imaging and localization with an error less than 1.5 cm. Discussion of the influence of velocity errors and measurement noise is also given in detail.

열교환코일 내장형 태양열 축열조의 성능향상 (제1보 실증실험) (Performance Enhancement of Solar Thermal Storage Tank with Heat Exchange Coils (Part 1 : Verification Experiment))

  • 이욱재;홍희기
    • 설비공학논문집
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    • 제27권4호
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    • pp.213-219
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    • 2015
  • A thermal storage tank with internal heat exchange coils is commonly used in solar thermal systems with a collector area below $100m^2$. The coils are installed in the lower part of the tank because the temperature of the upper part of the tank can drop if the outlet temperature of the collector becomes lower than the upper temperature of the tank, which is a kind of temperature reversal. As an alternative to the well-mixed storage tank with lower coil only, we have proposed a tank with lower and upper coils and have achieved superior thermal stratification in the tank, which results in increased collector efficiency and solar fraction. But, the phenomenon of temperature reversal was often observed in the tank when the load or solar radiation changed rapidly. In the present work, revised control was successfully applied, i.e., to heat only the lower coil using a three way valve if temperature reversal occurs and to operate the collector at a low flow rate when the quality of solar radiation is not good.