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Variation of measured sound speeds in gaseous and liquid air with temperature and pressure

机译:气态和液态空气中测得的声速随温度和压力的变化

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摘要

Based on sound speeds in gaseous and liquid air measured by Younglove and Frederick [Int. J. Thermophys. 13(6), 1033-1041 (1992)], empirical equations for the computation of sound speeds in the above media at relatively smaller temperature and pressure ranges were derived. For gaseous air, over a temperature range from 200 to 300 K and pressure from 0.614 to 10.292 MPa, the maximum deviation between the measured sound speeds and those computed with the empirical equation is 56 ppm. For liquid air, over the ranges from 90 to 110 K for temperature and from 0.763 to 13.823 MPa for pressure, the corresponding deviation is 173 ppm.
机译:基于Younglove和Frederick [Int。 J.热物理学。 13(6),1033-1041(1992)],推导了在相对较小的温度和压力范围内计算上述介质中声速的经验公式。对于气态空气,在200至300 K的温度范围和0.614至10.292 MPa的压力下,测得的声速与通过经验公式计算的声速之间的最大偏差为56 ppm。对于液态空气,温度范围从90到110 K,压力范围从0.763到13.823 MPa,相应的偏差为173 ppm。

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