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Speed of sound in carbon dioxide at temperatures between (220 and 450) K and pressures up to 14 MPa

机译:温度在(220至450)K之间且压力高达14 MPa时二氧化碳中的声速

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The speed of sound u in carbon dioxide has been measured along seven isotherms at temperatures between (220 and 450) K by means of a spherical resonator. At supercritical temperatures, the greatest pressure on each isotherm was chosen to correspond to approximately one-half of the critical density while, at subcritical temperatures, the greatest pressure on each isotherm was limited to that at which the density was about 80 per cent of the saturated vapour density. Vibrational relaxation, which is severe in pure carbon dioxide at frequencies of the order 10 kHz when the pressure is below p = 1 MPa, necessitates significant corrections for dispersion and leads to greatly enhanced sound absorption, which limits the precision of the measurements somewhat. Nevertheless, the results have an overall estimated uncertainty which varies from 3.10(-4) u at the lowest temperature and pressure studied, to better than 5.10(-5) u at p greater than or equal to 1 MPa. The results have been analysed to obtain both second and third acoustic virial coefficients, and ordinary second virial coefficients. (C) 1998 Academic Press. [References: 27]
机译:已经通过球形谐振器在(220和450)K之间的温度下沿着七个等温线测量了二氧化碳中的声速u。在超临界温度下,每个等温线的最大压力被选择为大约等于临界密度的一半,而在次临界温度下,每个等温线的最大压力被限制为密度为约80%的压力。饱和蒸气密度。振动松弛在压力低于p = 1 MPa时,在纯二氧化碳中,在10 kHz量级的频率上非常严重,需要对色散进行重大校正,并导致吸声效果大大增强,这在一定程度上限制了测量的精度。然而,结果的总体估计不确定性从在研究的最低温度和压力下的3.10(-4)u变化到在p大于或等于1 MPa时优于5.10(-5)u。分析结果以获得第二和第三声学维里系数和普通的第二维里系数。 (C)1998年学术出版社。 [参考:27]

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