Temperature Sensor Anti-Sunlight Radiation Shield Material

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Abstract:

During the day, the air absorption of solar radiation is weaker than either of the temperature sensing element. At night, the infrared radiation of the air capacity and weaker than either of the temperature on the surface of the sensing element.The measured values of the components of any direct exposure to the air temperature during the day the system is higher than the actual temperature at night is lower than the actual temperature. To avoid this radiation error of temperature measurement devices to take effective radiation shielding measures. The thermometer screen is one of them, widely installed in the meteorological observation field.However, the weight of conventional thermometer screen, bulky and not suitable as a portable device and automotive equipment.Small temperature sensor anti-sunlight radiation shield is widely used in a variety of surface weather measurement occasions. This paper describes the developed by the Changchun Meteorological Instrument Research Institute, the temperature sensor anti-solar radiation shield (Model: DZQ03C-X) surface chemical composition.And detailed description of the DZQ03C-X and standard thermometer screen data of the temperature contrast in the same observation locations. Measurement of air temperatures of over 50 civil airports in China are using this DZQ03C-X temperature sensor anti-sunlight radiation shield.

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Periodical:

Advanced Materials Research (Volumes 557-559)

Pages:

324-328

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Online since:

July 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] Brandsma T, Van der Meulen JP. Thermometer screen intercomparison in De Bilt, Part II: Climatological effects, Netherlands, 2007.

DOI: 10.1002/joc.1524

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[2] Hatton DB. 2002. Results of an intercomparison of wooden and plastic thermometer screens. WMO Technical Conference on Meteorological and Environmental Instruments and Methods of Observation (TECO-2002), Bratislava, Slovak Republic, 23–25, 2002.

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