屏蔽式总温传感器稳态误差分析与修正
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中国飞行试验研究院 西安 710089

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TB942;TN37

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Analysis and correction of steady-state errors in shielded total temperature sensors
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Chinese Flight Test Establishment,Xi′an 710089, China

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    摘要:

    为满足航空发动机高温高速气流总温的高精度测试需求,本文基于流固热耦合数值模拟方法,系统研究了某型屏蔽式热电偶在0.2~0.8 Ma七种速度工况及700℃~1 200℃六种温度工况下的流动换热与测温误差特性。结果表明:该屏蔽罩滞止效果显著,使测量端前端流速降低80%以上。误差分析表明,各误差项随着马赫数增大而增大,其增长率表现为辐射误差 > 导热误差 > 速度误差;在低马赫数(Ma≤0.3)下,导热误差占主导,而随着马赫数升高,辐射误差影响显著增强并成为主要误差源,温度升高亦加剧辐射误差的影响。总体而言,导热与辐射误差共同占总误差93%以上,是影响测温精度的关键因素。采用辐射误差经验公式修正后,稳态误差由17.97 K降低至0.64 K,总温恢复系数提升至0.92以上,显著提高了测温精度。

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    To meet the demand for high-precision testing of total temperature in high-temperature, high-speed airflows within aeroengines, this paper employs fluid-structure interaction numerical simulation methods to systematically investigate the flow heat transfer and temperature measurement error characteristics of a shielded thermocouple under seven velocity conditions ranging from 0.2 to 0.8 Ma and six temperature conditions from 700℃ to 1 200℃. Results indicate that the shielding cover exhibits significant stagnation effects, reducing flow velocity at the measurement tip by over 80%. Error analysis reveals that all error terms increase with rising Mach number, with growth rates following the sequence: radiation error > thermal conduction error > velocity error. At low Mach numbers (Ma≤0.3), thermal conduction error dominates. However, as Mach number increases, radiation error becomes significantly more influential and emerges as the primary error source. Elevated temperatures further exacerbate the impact of radiation error. Overall, thermal conduction and radiation errors collectively account for over 93% of the total error, constituting the key factors affecting measurement accuracy. After applying an empirical radiation error correction formula, the steady-state error decreased from 17.97 K to 0.64 K, and the overall temperature recovery coefficient improved to above 0.92, significantly enhancing measurement precision.

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引用本文

周佳易.屏蔽式总温传感器稳态误差分析与修正[J].电子测量技术,2025,48(24):19-26

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  • 在线发布日期: 2026-02-04
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