• Title/Summary/Keyword: Temperature measurement

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Measurement of HTS tapes Properties under Over current condition (고온초전도선재의 과전류 통전특성 측정)

  • 이광연;임형우;이희준;차귀수;이지광
    • Proceedings of the Korea Institute of Applied Superconductivity and Cryogenics Conference
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    • 2002.02a
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    • pp.263-266
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    • 2002
  • Rises of temperature and resistance are observed in HTS tapes under over current condition. In this paper, we measured HTS tapes properties under low-over current condition with a little temperature rise as well as high-over current condition with a large temperature rise. According to the results of measurement, rises of temperature and resistance strongly depend on insulation level and duration of over current condition.

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Measurement of Temperature Field using Holographic and Speckle Visualization Techniques (홀로그래피/스페클 가시화를 이용한 온도분포 측정)

  • 백성훈;박승규;김철중
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 1995.10a
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    • pp.371-374
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    • 1995
  • The real-time holographic interferometer with a digital high-speed camera is applied to the visualization of transient temperature field. Collimated and diffused laser beams are used to the object beam according to the shape and transmittance of the phase object. Also, ESPI(Electronic Speckle Speckle Pattern Interferometer) technique is used to the visualization and quantitatie measurement of slow-varying temperature field. The experimental results obtained form these two techniques are discussed.

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A Study on the Temperature Accuracy due to Conditions of Thermocouple Installation (열전대의 설치상태에 따른 온도측정 오차에 관한 연구)

  • 선양래
    • Journal of Advanced Marine Engineering and Technology
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    • v.6 no.1
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    • pp.49-54
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    • 1982
  • In the equipments of industrial plant and marine engine, an exact temperature measurement is indispensable. Temperature measurement errors are induced by electrical and heat errors, and the insufficient immersion length of thermowell exerts an important effect to the haet error. In this paper, the author analyses the relation between temperature errors and the rate of immersion length to outside diameter (L/D) in order to reduce the heat errors.

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Simultaneous measurement of velocity and temperature fields in micro-scale flow and its application to electrokinetic flow (마이크로 스케일 유동에서의 속도장 온도장 동시 측정 기법과 동전기 유동에의 적용)

  • Lee, Beom-Joon;Jin, Song-Wan;Kim, Young-Won;Yoo, Jung-Yul
    • Proceedings of the KSME Conference
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    • 2007.05b
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    • pp.2585-2590
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    • 2007
  • In this paper, a technique of simultaneously measuring the velocity and the temperature in micro-scale flow is proposed. This method uses particle tracking velocimetry (PTV) for measuring the velocity and laser induced fluorescence (LIF) for measuring the temperature. To measure the accurate velocity and temperature, images for PTV and for LIF are separated by using two light sources and a shutter which is synchronized with a camera. By using only one camera, measurement system can be simplified and the error from complicate optical system can be minimized. Error analyses regarding the concentrations of fluorescent dye and particle and the light source fluctuation are also conducted. It is found that the error of the temperature and the velocity highly depends on the concentration of fluorescent particles which are used for PTV. This technique is applied to the simultaneous measurement of the velocity and the temperature in the electrokinetic flow. It is found that the velocity and temperature vary with the electric field strength and the concentration of electrolyte.

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A Study on Temperature Measurement for Quenching of Carbon Steel (탄소강 담금질 공정의 온도 측정방법에 대한 고찰)

  • Kim, D.K.;Jung, K.H.;Kang, S.H.;Im, Y.T.
    • Transactions of Materials Processing
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    • v.19 no.1
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    • pp.25-31
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    • 2010
  • To achieve desired microstructure and mechanical property of a manufacturing product, heat treatment process is applied as a secondary process after forging. Especially, quenching process is used for improving strength, hardness, and wear resistance since phase transformation occurs owing to rapid heat transfer from the surface of the specimen. In the present paper, a study on surface temperature measurement for water quenching of eutectoid steel was investigated. In order to determine the temperature history in experiments, three different measuring schemes were used by varying installation techniques of K-type thermocouples. Depending on the measured temperature distribution at the surface of the specimen, convective heat transfer coefficients were numerically determined as a function of temperature by the inverse finite element analysis considering the latent heat generation due to phase transformation. Based on the inversely determined convective heat transfer coefficient, temperature, phase, and hardness distributions in the specimen after water quenching were numerically predicted. By comparing the experimental and computational hardness distribution at three different locations in the specimen, the best temperature measuring scheme was determined. This work clearly demonstrates the effect of temperature measurement on the final mechanical property in terms of hardness distribution.

Simultaneous Measurement of Velocity and Temperature Fields in Micro-Scale Flow and Its Application to Electrokinetic Flow (마이크로 스케일 유동에서의 속도장 온도장 동시 측정 기법과 동전기 유동에의 적용)

  • Lee, Beom-Joon;Jin, Song-Wan;Kim, Young-Won;Yoo, Jung-Yul
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.31 no.7 s.262
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    • pp.644-652
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    • 2007
  • In this paper, a technique of simultaneously measuring the velocity and the temperature in micro-scale flow is proposed. This method uses particle tracking velocimetry (PTV) for measuring the velocity and laser induced fluorescence (LIE) for measuring the temperature. To measure the accurate velocity and temperature, images for PTV and for LIE are separated by using two light sources and a shutter which is synchronized with a camera. By using only one camera, measurement system can be simplified and the error from complicate optical system can be minimized. Error analyses regarding the concentrations of fluorescent dye and particle and the light source fluctuation are also conducted. It is found that the error of the temperature and the velocity highly depends on the concentration of fluorescent particles which are used for PTV. This technique is applied to the simultaneous measurement of the velocity and the temperature in the electrokinetic flow. It is found that the velocity and temperature vary with the electric field strength and the concentration of electrolyte.

The Feasibility Study on a High-Temperature Application of the Magnetostrictive Transducer Employing a Thin Fe-Co Alloy Patch

  • Heo, Tae-Hoon;Park, Jae-Ha;Ahn, Bong-Young;Cho, Seung-Hyun
    • Journal of the Korean Society for Nondestructive Testing
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    • v.31 no.3
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    • pp.278-286
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    • 2011
  • The on-line monitoring for the wall thinning in secondary system has been considered one of main issues for the safety of nuclear power plants. To establish the on-line monitoring technique for the pipe wall thinning, the development of the ultrasonic transducer working in high-temperature is very important. In this investigation, the magnetostrictive transducer is concerned for high temperature condition up to $300^{\circ}C$. The magnetostrictive transducer has many advantages such as high working temperature, durability, cost-effectiveness, and shear waves, most of all. A thin Fe-Co alloy patch whose Curie temperature is over $900^{\circ}C$ was employed as a ferromagnetic material for magnetostriction. Wave transduction experiments in various temperature were carried out and the effect of bias magnets was considered together with the dry coupling performance of the transducer. From experimental results, consequently, it was found that the magnetostrictive transducer works stable even in high temperature up to $300^{\circ}C$ and can be a promising method for the on-line monitoring of the wall thinning in nuclear power plants.

Temperature Measurement Techniques for RAON Cryomodule

  • Kim, Heetae;Jung, Yoochul;Jo, Yong Woo;Lee, Min Ki;Choi, Jong Wan;Kim, Youngkwon;Kim, Juwan;Paeng, Won-Gi;Kim, Moo Sang;Jung, Hoechun;Kwon, Young Kwan
    • Applied Science and Convergence Technology
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    • v.27 no.2
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    • pp.30-34
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    • 2018
  • Conducting and semiconducting temperature sensors are calibrated and applied to cryomodules. The definition of temperature is introduced and the pressure in vacuum is shown as a function of temperature. The resistance of Drude model is shown as a function of carrier density and mean free path. Temperature sensors are calibrated with Physical Property Measurement System (PPMS). The temperature sensors are applied to measure temperature accurately in RAON cryomodules.

Temperature Measurement System for Refrigerated Vehicle (냉동차량을 위한 온도 측정 시스템)

  • Lim, Yong-Jin;Kim, Jung-Hwan;Lim, Joon-hong
    • Journal of IKEEE
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    • v.23 no.1
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    • pp.159-163
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    • 2019
  • The food service industry has been grown due to improvement of living standards. In addition, the demand for frozen food delivery is increasing day by day at online/offline and the refrigerated vehicles are used in most of these food distributions. One of the most important factors in a refrigerated car is to measure the temperature accurately. Conventional temperature recording systems are generally connected directly to temperature sensor modules. Since the temperature data are transmitted to the temperature recorder by using the electric wire, there is a disadvantage that the resistance error must be compensated according to the cable length. In this paper, we propose a method to correct errors due to cable resistance using digital processing and CAN (Controller Area Network) communication. We use PT-1000 platinum sensor to increase the accuracy of the temperature measurement.

A Study on Measurement Error Factors of Theodolite System (데오도라이트 시스템의 측정 오차 요인에 관한 연구)

  • 박홍철;윤용식;최석원
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2003.06a
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    • pp.272-275
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    • 2003
  • Theodolite measurement system is non-contacted 3-dimensional measurement system. The system accuracy is 0.5 mm or better for distance 0 ~ 100 m. And the system is used for the measurement of a product for middle and large scale. This study was performed for finding the measurement error factors of the system. We could know that the main error factors are temperature, illumination and expertness. And we could find the measurement errors are $\pm$ 0.045 mm at temperature conditions is 2$0^{\circ}C$ and $\pm$ 0.012 mm at illumination condition is 300 lux. Also the results had significant differences by combinations of operator's expertness.

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