• Title/Summary/Keyword: Measuring instruments

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A study for the characteristics of milli-gloss variation of unprinted coated paper and objective measurement tools for it

  • Jeon, Sung J.;Song, Yo H.;Lee, Jae S.;Shim, Gyu S.
    • Proceedings of the Korea Technical Association of the Pulp and Paper Industry Conference
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    • 2000.04a
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    • pp.118-125
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    • 2000
  • Gloss uniformity on unprinted coated papers is oftenly called as 'Surface Feeling' in market and roles as a very important criteria when a customer choose a paper. However, there is few researches on this quality so far and even there isn't much knowledge on the characteristics of gloss variation, ie what it is, where it comes from etc. Therefore, there should be a pre-research on its characteristics, factors, measuring method or tools prior to the following development activities. In this paper, we obtained about a dozen of papers including foreign products and measured not only basic properties of them, but also various characteristics related to ununiformity. Our experiments went further to printing, but that area is excluded in this paper. Also, we investigated several instruments for measuring gloss variation by an objective way all over the world and tested with our own samples so that we tried to find out which one is best-correlated with visual appreciation and suggest its results as possible. We found out several things from these experiments including what is difference between good and bad gloss uniformity, the factors of gloss variation, and the results of measurement for gloss variation with instruments.

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An Analysis of Aromatherapy Intervention Studies in Nursing (아로마테라피 중재를 적용한 간호학 논문 분석)

  • Chae, Young Ran;Won, Su Jin
    • Journal of Korean Biological Nursing Science
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    • v.15 no.2
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    • pp.54-64
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    • 2013
  • Purpose: This study aimed to analyze the effects and intervention methods of aromatherapy studies in nursing. Methods: A systematic literature review was conducted. Nursing literature databases were searched to identify intervention studies published in Korea between 2000 and 2011. Finally, 53 articles were included in the review. Results: The most preferred application method of aromatherapy was massage. The major dependent variables were anxiety, depression, pain, and sleep disturbance. 76.5% of the studies reported positive effects on anxiety. 93.8% of the studies reported positive effects on depression. 86.7% of the studies reported positive effects on pain. 92.3% of the studies reported positive effects on sleep disturbance. Psychometric measurements were mainly used in the studies. Only 33.9% of the studies adopted physical or physiological measurements. The most prevalent physical or physiological instrument was vital signs. Conclusion: Aromatherapy had positive effects on anxiety, depression, pain, and sleep disturbance measuring when using psychometric instruments. However, there was no sufficient evidence measuring when using physical or physiological instruments. These need to be studied using well-designed, randomized, controlled trials, and should encourage the use of both psychometric and physiological measures for aromatherapy intervention in nursing studies.

Flood Runoff Calculation using Disaster Monitoring CCTV System (재난감시용 하천 CCTV를 활용한 홍수유출량 산정)

  • Kim, Yong-Seok;Yang, Sung-Kee;Yu, Kwonkyu;Kim, Dong-Su
    • Journal of Environmental Science International
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    • v.23 no.4
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    • pp.571-584
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    • 2014
  • The present study aims to apply a surface image velocimetry(SIV) system to video images captured with CCTV and estimate the flood discharge. The CCTV was installed at the Hancheon Bridge of the Han Cheon in Jeju Island for disaster surveillance, and seven flood events occurred in 2012 were used. During the image analyses, input parameters, interrogation areas and searching areas were determined with proper calibration procedures. To check for accuracy and applicability of SIV, the velocities and flood discharges estimated by SIV were compared with the measured ones by an electromagnetic surface velocimeter, Kalisto. The comparison results showed fairly good agreements. The RMSE(Root Mean Square Error) values between two instruments showed a range of 4.13 and 14.2, and the determination coefficients reached 0.75 through 0.85. It means that the SIV could be used as a good alternative method for other traditional velocity measuring instruments in measuring flood discharges.

Development of On-line Water Quality Monitoring System (온라인 수질 감시 시스템의 개발)

  • Kim, Jae-Chul;Lee, Jae-Yun;Park, Jong-Sik;Kwon, Woo-Hyen;Kim, Sung-Ho;Lee, Chan-Won
    • Journal of Sensor Science and Technology
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    • v.5 no.3
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    • pp.75-85
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    • 1996
  • Real time water quality monitoring system in a large area has been developed. The system is hierarchically composed of CCMS(Central Control and Monitoring System), data loggers and water pollution measuring instruments, which enable systematic and efficient data collection and management. Also in this work we designed and constructed the instruments for measuring basic elements in water quality such as salinity, electrical conductivity, temperature, dissolved oxygen and the amount of coli in water.

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A Study on the utilization of electronic micrometer for flatness measurement of precision surface plate (전기마이크로미터를 이용한 정밀측정용 정반의 평면도 측정에 관한 연구)

  • Kim, Gu-Yeong;Woo, In-Hun;Im, Jae-Seon;Jeong, Myeong-Se;Kim, Jong-Eok
    • Journal of the Korean Society for Precision Engineering
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    • v.4 no.3
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    • pp.52-59
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    • 1987
  • The flatness of a precision surface plate is generally measured by using precision angular measuring instruments such as laser interferometers, autocollimators and electronic levels. Since these instruments are expensive and measurement procedures are complex, such methods are not widely used in industries. In this study, an electronic micrometer that is easy to use and inexpensive to produce was developed in order to solve this problem. The flatness of a black granite surface plate, measured using this device was compared with the values obtained by using the conventional three methods. The results were consistent within ${\pm}1{\mu}m$. It proves that the flatness measuring method using electronic micrometers can be utilized for quantitative measurement. An accessory device that can improve the precision of measurement by attaching to the electronic micrometer was also designed and fabricated.

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Apophis Rendezvous Mission: II. Payloads and Operation Scenario

  • Jeong, Minsup;Choi, Young-Jun;Moon, Hong-Kyu;Kim, Myung-Jin;Choi, Jin;Moon, Bongkon;JeongAhn, Youngmin;Lee, Hee-Jae;Baek, Seul-Min;Yang, Hongu;Ishiguro, Masateru
    • The Bulletin of The Korean Astronomical Society
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    • v.46 no.1
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    • pp.44.1-44.1
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    • 2021
  • We plan to visit the Apophis, a Potentially Hazardous Asteroid (PHA). Apophis will have an extremely close encounter with the Earth on April, 2029. At the closest position, Apophis approaches 0.1 lunar distances from the Earth. The science goals are 1) mapping the surface of the asteroid before and after the encounter, 2) measuring surface roughness before and after the encounter, and 3) measuring interplanetary space environments such as magnetic field and dust particles. For the science goal, we are planning to employ five instruments for this mission, which are Polarimetric Asteroid Camera (PolACam), Asteroid Terrain Mapping Camera (MapCam), Laser Altimeter, Dust Particle Detector (DPDetector), Magnetometer (Mag). In this presentation, we plan to give a talk on the instruments.

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An Analysis of Convergence Phenomenon Using Industrial Convergence Coefficient (산업융합계수를 활용한 융합현상에 관한 연구)

  • Hwang, Sung-Hyun
    • The Journal of the Korea Contents Association
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    • v.17 no.3
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    • pp.666-674
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    • 2017
  • Today, the term of fusion, such as technology convergence and industrial convergence, is emerging as one of the most important trends in our society. The purpose of this study is to analyze the convergence coefficient of each industry using patent data and to analyze the convergence phenomenon in industry based on convergence coefficient. To do this, 2011-2015 Korean patent data were utilized. The research findings revealed that the ICC by industry was the highest in order of man-made fibres, paints/varnishes, petroleum products/nuclear fuel and other chemicals. Also, according to the inter-industry convergence matrix, the number of convergence patents was the greatest in order of office machinery and computers, special purpose machinery industries and Measuring instruments. Added same analysis was conducted through Industry with high number of patents. As a result, the convergence has been actively carried out in the fields of optical instruments, Basic chemical, Fabricated metal products, Measuring instruments and special purpose machine manufacturing industries.

Performance Evaluation of Measuring Instrument for Infra-Red Signature Suppression System Model Test (적외선 신호저감 장치 모형시험을 위한 계측기의 성능평가)

  • SeokTae Yoon
    • Journal of Korea Society of Industrial Information Systems
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    • v.28 no.6
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    • pp.21-27
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    • 2023
  • Modern naval ships install an Infra-Red Signature Suppression system (IRSS) in their exhaust pipe to reduce infrared signature emitted to the outside. In addition, naval ships are strategic assets with a very long life cycle, so high reliability of the performance of the equipment on board must be guaranteed. Therefore, equipment such as IRSS is evaluated for performance through model testing at the design stage. A variety of measuring instruments are used in IRSS model testing, and the reliability of these instruments must also be guaranteed. In this paper, a study was conducted to evaluate the reliability of measurement equipment used in IRSS model testing. The test equipment and instruments used were a hot gas wind tunnel, pitot tube, digital differential pressure gauge, thermocouple sensor, and digital recorder. As the fan speed of the hot gas wind tunnel increased, the measurement deviation of the flow decreased, and the temperature output of the thermocouple sensor showed differences in response time and stability depending on the method used.

Sensor State Isolation for Wastewater Based on Influent Characteristics Methodology (물질수지분석을 이용한 하수처리장 유입수질 측정 센서의 상태 진단)

  • Baek Jiwon;Kim Jongrack;You Kwangtae;Kim Yejin
    • Journal of Korean Society on Water Environment
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    • v.40 no.4
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    • pp.168-178
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    • 2024
  • Wastewater treatment plants are constantly exposed to influent wastewater that is constantly changing. This poses a major challenge to the operation of the plants. It is crucial to have a rapid and accurate measurement of the influent concentrations of wastewater in order to maintain and optimize treatment performance, as well as to develop energy-saving strategies. While laboratory measurements provide the highest accuracy in determining influent water quality, they are inevitably time-consuming procedures. In order to cope with the ongoing disturbances from wastewater influent, absorption-based optical measuring instruments have been developed. These instruments can detect the influent water quality in a short amount of time, improving their practicality and reliability. However, when these optical measuring instruments malfunction, the accuracy of the measured values decreases, leading to unreasonable operation of the treatment plant. This paper proposes a method for detecting anomalies in optical water quality measurement devices. The Harmony Search algorithm is used to validate the measured water quality values and detect abnormalities such as contamination or physical anomalies in the measurement apparatus. To assess the performance of the developed algorithm in detecting anomalies, validation was conducted by installing it in a field-scale wastewater treatment plant. The results consistently showed that the developed fault detection method for optical water quality measurements equipment provided acceptable results for normal, temporary abnormal, and long-term abnormal conditions.

Compensation of Light Scattering Method for Real-Time Monitoring of Particulate Matters in Subway Stations (지하역사 내 미세먼지 실시간 모니터링을 위한 광산란법 보정)

  • Kim, Seo-Jin;Kang, Ho-Seong;Son, Youn-Suk;Yoon, Sang-Lyeor;Kim, Jo-Chun;Kim, Gyu-Sik;Kim, In-Won
    • Journal of Korean Society for Atmospheric Environment
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    • v.26 no.5
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    • pp.533-542
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    • 2010
  • The $PM_{10}$ concentrations in the underground should be monitored for the health of commuters on the underground subway system. Seoul Metro and Seoul Metropolitan Rapid Transit Corporation are measuring several air pollutants regularly. As for the measurement of $PM_{10}$ concentrations, instruments based on $\beta$-ray absorption method and gravimetric methods are being used. But the instruments using gravimetric method give us 20-hour-average data and the $\beta$-ray instruments can measure the $PM_{10}$ concentration every one hour. In order to keep the $PM_{10}$ concentrations under a healthy condition, the air quality of the underground platform and tunnels should be monitored and controlled continuously. The $PM_{10}$ instruments using light scattering method can measure the $PM_{10}$ concentrations every less than one minute. However, the reliability of the instruments using light scattering method is still not proved. The purpose of this work is to study the reliability of the instruments using light scattering method to measure the $PM_{10}$ concentrations continuously in the underground platforms. One instrument using $\beta$-ray absorption method and two different instruments using light scattering method (LSM1, LSM2) were placed at the platform of the Jegi station of Seoul metro line Number 1 for 10 days. The correlation between the $\beta$-ray instrument and the LSM2 ($r^2$=0.732) was higher than that between the $\beta$-ray instrument and the LSM1 ($r^2$=0.393). Thus the LSM2 was chosen for further analysis. Three different regression analysis methods were tested: Linear regression analysis, Nonlinear regression analysis and Orthogonal regression analysis. When the instruments using light scattering method were used, the data measured these instruments have to be converted to actual $PM_{10}$ concentrations using some factors. With these analyses, the factors could be calculated successfully as linear and nonlinear forms with respect to the data. And the orthogonal regression analysis was performed better than the ordinary least squares method by 28.45% reduction of RMSE. These findings propose that the instruments using light scattering method light scattering method can be used to measure and control the $PM_{10}$ concentrations of the underground subway stations.