制冷型红外探测器杜瓦辐射漏热的精确计算
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1.昆明物理研究所,云南 昆明 650223;2.红外探测全国重点实验室,云南 昆明 650223

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TN215

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Precise calculation of radiation heat of cryogenic infrared detector Dewar
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1.Kunming Institute of Phyics, Kunming 650223, China;2.National Key Laboratory of Infrared Detection Technologies, Kunming 650223, China

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    摘要:

    制冷型红外探测器杜瓦的热负载是表征杜瓦绝热能力的综合指标,辐射漏热是热负载的一部分,计算辐射漏热时,传统的方法一般将杜瓦简化为同轴圆筒模型,简化模型与实际模型相差较大且无法计算发射率、透射率和反射率随波长变化的表面之间的辐射换热。为提高杜瓦辐射漏热的计算精度,本文基于蒙特卡洛原理,采用3D Studio Max建模,提取模型信息开发程序,得到了一套基于辐射传递因子的杜瓦辐射漏热通用计算程序。为了初步检验计算程序的准确性,按灰体假设计算了两型实验杜瓦的冷端辐射漏热并与实验测量值进行比对,实验杜瓦1(典型1 K×1 K)冷端辐射漏热的理论计算值和实验测量值分别为155 mW和136 mW,两者的误差为19 mW;实验杜瓦2(典型640×512)冷端辐射漏热的理论计算值和实验测量值分别为87 mW和79 mW,两者的误差为8 mW。初步检验计算程序的准确性后,考虑材料表面发射率、透射率和反射率随波长的变化及温度对辐射波长的影响,理论计算和实验测量了工程用典型1 K1 K长波杜瓦在窗片面对发射率为0.9的灰体时的冷端辐射漏热,理论计算值为127 mW,实验测量值为110 mW,两者的误差为17 mW。

    Abstract:

    The thermal load of the cryogenic infrared detector Dewar is a comprehensive indicator characterizing the adiabatic capacity of the Dewar. Radiation heat is a part of the thermal load. When calculating the radiation heat, the traditional approach typically simplifies the Dewar to a coaxial cylindrical model. This simplified model differs significantly from the actual one and the traditional approach is incapable of computing the radiation heat transfer between surfaces where emissivity, transmittance, and reflectance vary with wavelength. To enhance the calculation accuracy of the Dewar''s radiation heat, based on Monte Carlo principle, a 3D Studio Max model was employed, model information was extracted, and a program was developed, resulting in a set of general calculation program for the Dewar''s radiation heat based on the radiation transfer factor. To preliminarily verify the accuracy of the calculation program, the cold side radiation heat of two types of experimental Dewars was calculated according to the gray body assumption and compared with the measured values. The theoretical calculated value and measured value of the cold side radiation heat of experimental Dewar 1 were 155 mW and 136 mW, respectively, with the error of 19 mW; the theoretical calculated value and measured value of cold side radiation heat of experimental Dewar 2 were 87 mW and 79 mW, respectively, with the error of 8 mW. After initially testing the accuracy of the calculation program, the cold side radiation heat of an engineering typical 1 K×1 K long-wave Dewar was calculated and measured experimentally when the emissivity of the window facing it was 0.9. The theoretical calculated value was 127 mW, and the measured value was 110 mW, with the error of 17 mW.

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曾昌行,陈军,李司,杨秀华,李秋妍,丁智鸿,陶朝坤,徐世春.制冷型红外探测器杜瓦辐射漏热的精确计算[J].红外与毫米波学报,2025,44(4):486~495]. ZENG Chang-Hang, CHEN Jun, LI Si, YANG Xiu-Hua, LI Qiu-Yan, DING Zhi-Hong, TAO Chao-Kun, XU Shi-Chun. Precise calculation of radiation heat of cryogenic infrared detector Dewar[J]. J. Infrared Millim. Waves,2025,44(4):486~495.]

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  • 收稿日期:2024-11-05
  • 最后修改日期:2025-05-13
  • 录用日期:2024-12-18
  • 在线发布日期: 2025-05-12
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