• 제목/요약/키워드: Infrared light radiation

검색결과 74건 처리시간 0.026초

국내 태양광자원의 성분 및 파장별 분석에 관한 연구 (A Study on the Solar Radiation Analysis for Components and Classified Wavelength in Korea)

  • 조덕기;윤창열;김광득;강용혁
    • 한국태양에너지학회 논문집
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    • 제32권2호
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    • pp.35-41
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    • 2012
  • Knowledge of the solar radiation components and classified wavelength data are essential for modeling many solar photovoltaic systems. This is particularly the case for applications that concentrate the incident energy to attain high photo-dynamic efficiency achievable only at the higher intensities. In order to estimate the performance of concentrating PV systems, it is necessary to know the intensity of the beam radiation, as only this components can be concentrated, and The new PV cell can generate electricity from ultraviolet and infrared light as well as visible light. The Korea Institute of Energy Research(KIER) has began collecting solar radiation components data since January, 1988, and solar radiation classified wavelength data since November, 2008. KIER's solar radiation components and classified wavelength data will be extensively used by concentrating PV system users or designers as well as by research institutes. It is essential to utilize the solar radiation data as application and development of solar energy system increase. Consider able efforts have been made constructing a standard data base system from measure data.

플라스틱 광섬유를 이용한 조명시스템 개발과 특성 분석 (Development and Performance Property Investigation of Lighting System using Plastic Optical Fiber)

  • 신상욱;이진우
    • 조명전기설비학회논문지
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    • 제24권12호
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    • pp.25-32
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    • 2010
  • Compared to general lighting method, the lighting system that uses optic fiber can provide only the visible light of good quality to subject by eliminating ultraviolet ray and infrared ray. Thanks to this merit, it is possible to prevent the hard phenomenon of subject caused by ultraviolet ray and infrared ray and to provide the agreeable light environment. This study developed indoors illumination system of high color rendering on the basis of plastic optic fiber with excellent optical property and processing to substitute halogen lamp which has been used for excellent color rendering in spite of low efficiency and short life. Producing pilot product of the designed illumination system and evaluating the property of electric and optical property, ultraviolet ray radiation quantity and temperature property, this study verified the excellence of suggested lighting system of plastic optic fiber.

원적외선이 흰쥐의 생존율에 미치는 영향 (The effect of Far-infrared on survival rate of mice)

  • 김재윤;박승규;김진상;박래준
    • The Journal of Korean Physical Therapy
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    • 제13권3호
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    • pp.561-567
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    • 2001
  • IR classified by wavelength three parts NIR, MIR. FIR. There is FIR which is radiated from healthy human body the wave length is 8-14m. The Sun's ray is composed of Infared(49%), Visible light(40%) and Ultra violet(11%), however the ray getting to the earth is FIR(60%), IR(20%), and UV(20%). Human beings has utilized FIR already from time immemorial. Hershel found out Infrared for the first time, in the Industrial Revolution the Infrared and FIR had been begun to use making products. FIR with low temperature can deeply penetrate on the human body composed things without troublesome, since FIR has effectively operated on the human body at low temperature (35-40 $^{\circ}$C). In this study, we experimented in the specific temperature FlR radiation intensity. water consumption rate, feed consumption rate. survival rate and mean of weight balance with FlR radiation instrument. According to the results, the FlR radiation to the mice assisted to increase the survival rate.

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고온 환경에서의 적외선 열화상 측정에 관한 연구 (Research on Measurement of Infrared Thermograpphy under High Temperature Condition)

  • 이준식;전재욱
    • 한국산업융합학회 논문집
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    • 제27권1호
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    • pp.57-62
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    • 2024
  • This study conducted a measurement method of high temeprature conditions using infrared termography. All objects emit infrared light, and this emissivity has a significant impact on the temperature measurements of infrared thermal imaging (IR) cameras. In order to measure the temperature more accurately with the IR camera, correction equations were derived by measuring the emissivity according to the temperature change of combustible metals in a high-temperature environment. Two combustible metals, Mg and Al, were used to measure emissivity with changing temperature. Each metal was heated, the emissivity was measured by comparing the temperature with IR camera and thermocouples so that the correlation between temperature and emissivity could be anslyzed. As a result of the experiment, the emissivity of the metals increases as the temperature increased. This can be interpreted as a result of increased radiation emission as the thermal movement of internal metal molecules increased.

Some interaction characteristics of IR radiation with ice crystals - New IR channel exploration

  • Xu, Lisheng;Ding, Jilie
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2002년도 Proceedings of International Symposium on Remote Sensing
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    • pp.352-357
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    • 2002
  • Some interaction characteristics, i.e., light scattering characteristics, of infrared (IR) radiation with small ice crystals are investigated systematically by using the exact T-matrix approach. Some important facts are obtained, which reveal, especially, that the combination of both the 25 and 3.979$\mu$m together has some advantages and potential applications for remote sensing of cirrus and other ice clouds. A new far-IR channel at the wavelength of 25$\mu$m is proposed.

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저가형 열영상 시스템을 위한 실리콘 윈도우 제작 (Fabrication of Silicon Window for Low-price Thermal Imaging System)

  • 성병목;정동건;방순재;백선민;공성호
    • 센서학회지
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    • 제24권4호
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    • pp.264-269
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    • 2015
  • An infrared (IR) bolometer measures the change of resistance by absorbing incident IR radiation and generates a signal as a function of the radiation intensity. Since a bolometer requires temperature stabilization and light filtering except for the infrared rays, it is essential for the device to be packaged meeting conditions that above mentioned. Minimization of heat loss is needed in order to stabilize temperature of bolometer. Heat loss by conduction or convection requires a medium, so the heat loss will be minimized if the medium is a vacuum. Therefore, vacuum packaging for bolometer is necessary. Another important element in bolometer packaging is germanium (Ge) window, which transmits IR radiation to heat the bolometer. To ensure a complete transmittance of IR light, anti-reflection (AR) coatings are deposited on both sides of the window. Although the transmittance of Ge window is high for IR rays, it is difficult to use frequently in low-price IR bolometer because of its high price. In this paper, we fabricated IR window by utilizing silicon (Si) substrate instead of Ge in order to reduce the cost of bolometer packaging. To enhance the IR transmittance through Si substrate, it is textured using Reactive Ion Etching (RIE). The texturing process of Si substrate is performed along with the change of experimental conditions such as gas ratio, pressure, etching time and RF power.

입사광량의 조절과 이에 따른 비분산 적외선 알코올 센서의 온도 특성과 보정 (Temperature Compensation and Characteristics of Non-dispersive Infrared Alcohol Sensor According to the Intensity of Light)

  • 김진호;조희찬;이승환
    • 센서학회지
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    • 제27권1호
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    • pp.47-54
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    • 2018
  • In this paper, we describe the thermal characteristics of the output voltages of ethanol gas sensor according to the amount of radiation incident on the infrared sensors located at each focal point of two elliptical waveguides. In order to verify the output characteristics of the gas sensor according to the amount of incident light on the infrared sensor, two combinations of sensor modules were fabricated. Hydrophobic thin film is deposited on one of the reflectors of sensor modules and one of the two infrared sensors was equipped with a hollow disk (10 Ø), and the temperature characteristics of the infrared sensor equipped with the hollow disk (10 Ø) and the infrared sensor without the disk were tested. The temperature was varied from 253 K to 333 K at 10 K intervals based on 298 K. The properties of ethanol gas sensor have been identified with respect to varying temperature for a range of ethanol concentration from 0 ppm to 500 ppm. In the case of an infrared sensor equipped with a hollow disk (10 Ø), the output voltage of the sensor decreased by 0.8 mV and 1 mV, respectively, as the temperature increased. Conversely, the output voltage of the diskless infrared sensor showed an average increase of 67 mV and 57 mV as the temperature increased. The ethanol concentrations estimated on the basis of results show an error of more than 10 % for less than 100 ppm concentration. However, if the ethanol concentration exceeds 100 ppm, the gas concentration can be estimated within the range of ${\pm}10%$.

인듐안티모나이드(InSb) 소자를 이용한 적외선 방사온도 계측시스템의 개발연구 (Development of Radiation Thermometer using InSb Photo-detector)

  • 황병옥;이원식;장경영
    • 한국정밀공학회지
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    • 제12권7호
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    • pp.46-52
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    • 1995
  • This paper proposes methodologies for the development of radiation thermometer using InSb photo-detector of which spectral sensitivity is excellent over the wave length range of 2 .mu. m .approx. 5 .mu. m. The proposed radiation thermometer has broad measurement range from normal to high, up to more than 1000 .deg. C, with high accuracy, and can measure temperature on the material surface or heat emission noncontactely with high speed. Optical system was consisted of two convex lens with foruslength of 15.2mm for infrared lay focusing, Ge filter to cut the short wave length components and sapphire filter to cut the long wave length components. The cold shielded was installed in the whole surface of the light-absorbing element to remove the error- mometer, calibration using black body furnace which has temperature range of 90 .deg. C .approx. 1100 .deg. C was carried out, and temperature calaibration curve was obtained by exponential function curvefitting. The result shows maximum error less than 0.24%(640K .+-. 1.6K) over the measurement range of 90 .deg. C .approx. 700 .deg. C, and from this result the usefulness of the developed thermometer has been confirmed.

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태양 복사와 가시광선 복사 및 지구 복사와 적외선 복사의 관계에 대한 고등학생들의 인식 (High School Student Perception of the Relationships between Solar and Visible Radiation and between Terrestrial and Infrared Radiation)

  • 이종진;서은경;안유민
    • 한국지구과학회지
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    • 제43권2호
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    • pp.312-323
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    • 2022
  • 이 연구는 '태양 복사'가 '가시광선 복사'로, '지구 복사'가 '적외선 복사'로 상호 대체될 수 있는 개념인가에 대한 문제 인식에서 출발하였다. 이를 위해 각 개념을 어떻게 인식하고 있는지를 드러낼 수 있는 질문지를 통하여 지구과학 I을 이수한 고등학생들의 인식을 조사하고, 이들의 인식에 영향을 미칠 수 있는 교과서의 서술 및 삽화를 분석하였다. 이 연구의 주요 결과는 다음과 같다. 첫째, 조사에 참여한 학생들은 모두 태양 복사를 가시광선 영역에서만 방출되는 복사로 인식하고 있으며, 지구 열수지에서 대류·전도·숨은열을 복사에 의한 에너지 전달로 인식하고 있는 학생들도 약 35%로 나타났다. 둘째, 2015 개정 교육과정의 지구과학 I 6종 교과서를 분석한 결과, 2종에서는 '단파 복사'와 '장파 복사'라는 용어를 도입하지만 이들에 대한 설명이 없었으며, 다른 2종에서는 태양 복사를 각각 '주로 가시광선 형태의 복사' 또는 '파장이 짧은 가시광선 복사'로 서술하였다. 그 밖의 2종 교과서에 있는 태양 복사와 지구 복사에 관하여, 파장 영역에 대한 설명이 없거나 '단파장/장파장'이라는 모호한 용어가 사용되었다. 아울러 2종의 교과서에서 열수지 삽화에 일부 오류가 발견되었다. 따라서 교과서들이 단파 복사와 장파 복사에 관한 정확한 용어 정의 없이 태양 복사와 지구 복사를 설명함에 따라 학습자들은 태양 복사와 지구 복사를 각각 가시광선 복사와 적외선 복사라는 개념으로 인식할 개연성이 있다. 이를 종합해 보면, 교과서에 기술된 불분명한 진술이나 오류가 학생들의 오개념을 유발하거나 재생산할 수 있음을 함의한다. 이 연구에서 논의된 바가 지구의 열수지와 복사 평형에 대한 교수·학습 과정의 유용한 참고 자료로 활용되고, 추후 교과서 집필에서도 합리적인 서술 방안을 제안하는 데 기여할 수 있으리라 기대한다.

세상에서 가장 얇은 그래핀 발광 소자 (The World's Thinnest Graphene Light Source)

  • 김영덕
    • 진공이야기
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    • 제4권3호
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    • pp.16-20
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    • 2017
  • Graphene has emerged as a promising material for optoelectronic applications including as ultrafast and broadband photodetector, optical modulator, and nonlinear photonic devices. Graphene based devices have shown the feasibility of ultrafast signal processing for required for photonic integrated circuits. However, on-chip monolithic nanoscale light source has remained challenges. Graphene's high current density, thermal stability, low heat capacity and non-equilibrium of electron and lattice temperature properties suggest that graphene as promising thermal light source. Early efforts showed infrared thermal radiation from substrate supported graphene device, with temperature limited due to significant cooling to substrate. The recent demonstration of bright visible light emission from suspended graphene achieve temperature up to ~3000 K and increase efficiency by reducing the heat dissipation and electron scattering. The world's thinnest graphene light source provides a promising path for on-chip light source for optical communication and next-generation display module.