摘要
设计了镓黑体对海表测温辐射计进行定标。首先,介绍了该黑体的结构与工作原理,对黑体发射率进行仿真,并开展发射率的测量实验,讨论其不确定度的来源。然后,开展了电加热和水浴加热下镓的相变复现实验,讨论电加热功率对镓相变复现的影响。最后,通过红外海面温度自主辐射计实验对该黑体进行验证。结果表明:该黑体基于蒙特卡罗软件仿真的发射率优于0.9988,实验测得的黑体辐射源发射率结果与仿真结果较为吻合,测量重复性(标准偏差)达0.1%;相变温度坪台的复现性均优于±0.03 K;相变温坪附近时,红外海面温度自主辐射计和FLUKE 1524测温仪测得的黑体腔附近温度的数据差值均在±0.15 K以内。设计的镓黑体可以应用到海表测温辐射计进行校准,为发展自主知识产权的海表测温设备提供校准源。
A gallium fixed-point blackbody infrared radiation source is designed to calibrate the sea surface temperature radiometer.Due to the fact that the sea surface temperature radiometer requires additional regular calibration data before and after deployment to monitor the performance characteristics of the instrument,water bath blackbodies and ammonia heat pipe blackbodies are commonly used internationally for calibration.However,water bath blackbodies are greatly affected by atmospheric pressure,and ammonia heat pipe blackbodies are large in volume and difficult to transport.Therefore,a gallium blackbody is designed for the calibration of sea surface temperature radiometers.Firstly,the structure and working principle of a gallium fixed-point blackbody radiation source are introduced.The simulation software,which is based on the Monte Carlo algorithm,then simulate the emissivity of STEEP321 blackbodies and conducted experiments to measure the emissivity.The source of emissivity uncertainty is discussed.Experiments on phase transformation reproducibility of gallium under electric heating and water-bath heating are carried out and the effect of electric heating power on phase transformation reproducibility of gallium is discussed.Finally,the measurement experiment of ISAR thermometer radiometer is carried out to verify the blackbody.The results show that the emissivity is better than 0.9988,and the emissivity measured by the radiation method is in good agreement with the theoretical simulation results,and the measurement repeatability(standard deviation)reaches 0.1%.The results show that the reproducibility of phase change temperature table is better than±0.03 K.The difference between ISAR and FLUKE 1524 measurements of the temperature near the blackbody cavity is within±0.15 K.The blackbody is developed successfully and can be used to calibrate the sea surface temperature radiometer after modification,and it can provide calibration sources for the development of sea surface temperature measurement equipment with independent intellectual property rights.The theoretical calculation of emissivity is high,but the actual measurement of emissivity is lower than the theory for the following reasons:the ratio of black body cavity length to opening diameter is not large enough,and the uncertainty in the measurement process of emissivity.The craft used for the fixed-point container is generally to spray polytetrafluoroethylene film on its surface.Thicker polytetrafluoroethylene cylinder and polytetrafluoroethylene sleeve are installed with gallium fixed point,which greatly avoids the pollution caused by direct contact of metal when the sprayed polytetrafluoroethylene film is relatively thin.
作者
张凯临
赵治园
任传运
杨铭伦
曲利芹
ZHANG Kailin;ZHAO Zhiyuan;REN Chuanyun;YANG Minglun;QU Liqin(Faculty of Information Science and Engineering,Ocean University of China,Qingdao 266100,China;Institute of Oceanology of Sanya,Ocean University of China,Sanya 572024,China)
出处
《光子学报》
EI
CAS
CSCD
北大核心
2024年第1期118-128,共11页
Acta Photonica Sinica
基金
海南省自然科学基金(No.122CXTD519)。
关键词
红外测温
黑体辐射源
镓固定点
船载辐射计定标
Infrared temperature measurement
Blackbody radiation source
Gallium fixed-point
Calibration of shipborne radiometer