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首页> 外文期刊>International Journal of Thermophysics >Thermodynamic Properties of Gaseous Nitrous Oxide and Nitric Oxide from Speed-of-Sound Measurements
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Thermodynamic Properties of Gaseous Nitrous Oxide and Nitric Oxide from Speed-of-Sound Measurements

机译:从声速测量中气态一氧化二氮和一氧化氮的热力学性质

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摘要

The speed of sound was measured in gaseous nitrous oxide (N2O) and nitric oxide (NO) using an acoustic resonance technique with a relative standard uncertainty of less than 0.01%. The measurements span the temperature range 200 to 460 K at pressures up to the lesser of 1.6 MPa or 80% of the vapor pressure. The data were analyzed to obtain the constant-pressure ideal-gas heat capacity p 0 as a function of temperature with a relative standard uncertainty of 0.1%. For N2O, the values of p 0 agree within 0.1% with those determined from spectroscopic data. For NO, the values of p 0 differ from spectroscopic results by as much as 1.5%, which is slightly more than the combined uncertainties. The speed-of-sound data were fitted by virial equations of state to obtain temperature-dependent density virial coefficients. Two virial coefficient models were employed, one based on square-well intermolecular potentials, and the second based on a hard-core Lennard-Jones intermolecular potential. The resulting virial equations reproduced nearly all the sound-speed data to within ±0.01% and may be used to calculate vapor densities with relative standard uncertainties of 0.1% or less.
机译:使用声共振技术在气态一氧化二氮(N2O)和一氧化氮(NO)中测量声速,相对标准不确定度小于0.01%。在压力高达1.6 MPa或较小的蒸气压的较小压力下,测量范围为200至460 K的温度范围。分析数据以获得恒定压力理想气体热容量p 0 作为温度的函数,相对标准不确定度为0.1%。对于N2 O,p 0 的值与光谱数据确定的值相差0.1%。对于NO,p 0 的值与光谱结果的差异最大为1.5%,略大于合并的不确定性。通过状态的病毒方程拟合声速数据,以获得依赖于温度的密度病毒系数。使用了两种病毒系数模型,一种基于方形阱分子间电势,另一种基于硬核Lennard-Jones分子间电势。所得的病毒方程将几乎所有的声速数据重现到±0.01%以内,并可用于计算相对标准不确定度为0.1%或更小的蒸气密度。

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