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The effect of heat conduction on the realization of the primary standard for sound pressure

机译:导热对声压基本标准的实现的影响

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摘要

Pressure reciprocity calibration of microphones provides the basis for primary measurement standards for sound pressure in air. At low frequencies, reciprocity calibration requires that a heat conduction correction be employed to account for energy transfer to and from the bounding surfaces of the close-coupled microphone arrangement. The standard governing reciprocity calibration, IEC 61094-2:2009, provides two models for the heat conduction correction: the Low Frequency Solution, and the Broadband Solution. Analysis has revealed significant and unexplained differences in behaviour between the models at very low frequencies, leading to inconsistency in calibration results, which has been quantified. Additionally, both heat conduction solutions given in IEC 61094-2 are simplifications that strictly apply only above their respective lower limiting frequencies. An international comparison on microphone calibration is currently underway that includes measurements below the lower limiting frequencies of the models. In this paper, the origin and nature of the Broadband simplifications have been identified, and estimates of the error given. A flaw in the Broadband theory is identified and its effect quantified. Simplification error for the Low Frequency solution is evaluated, and the full spectrum solution is given. This paper urges caution in the application of the models at low frequency and provides data useful for assessing the contribution to the measurement uncertainty.
机译:麦克风的压力互易性校准为空气中声压的主要测量标准提供了基础。在低频下,互易性校准要求采用热传导校正,以解决能量往返于紧密耦合麦克风装置的边界表面的传递问题。控制互易性校准的标准(IEC 61094-2:2009)提供了两种导热校正模型:低频解决方案和宽带解决方案。分析显示,在非常低的频率下,模型之间的行为存在显着且无法解释的差异,从而导致校准结果不一致(已量化)。另外,IEC 61094-2中给出的两种导热解决方案都是严格的简化,仅在其各自的下限频率以上严格应用。当前正在进行麦克风校准的国际比较,其中包括低于模型下限频率的测量。在本文中,已经确定了宽带简化的起源和性质,并给出了误差的估计。确定了宽带理论中的一个缺陷,并对其影响进行了量化。评估了低频解决方案的简化误差,并给出了全频谱解决方案。本文敦促在低频应用模型时要谨慎,并提供有用的数据,以评估对测量不确定度的影响。

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