首页> 外文期刊>The Canadian Journal of Chemical Engineering >EQUATION OF STATE FOR GASEOUS NITROGEN DETERMINED FROM ISOTROPIC MODEL POTENTIALS
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EQUATION OF STATE FOR GASEOUS NITROGEN DETERMINED FROM ISOTROPIC MODEL POTENTIALS

机译:由各向同性模型势确定的气态氮状态方程

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A four-term virial equation of state was combined with isotropic potential models to predict accurate volumetric and caloric thermodynamic properties of nitrogen in the gas phase. The parameters of the model potentials were determined from a fit to acoustic data alone; no other data was used. For nitrogen, it was only necessary to approximate the fourth virial coefficient at the level of interactions that contained no more than one triplet potential; higher order approximations offered no further advantage. It was shown that the four-term virial equation was more accurate than the three-term analogue. It was found that predicted virial coefficients became consistent with experimental values when temperature was >150±30K; conversely, below this range virial coefficients predicted by the model did not agree with experiment. It was believed that predicted fourth virial coefficient was reliable and accurate only above about 150 K. Predicted compressibility factors deviated by <0.05% at pressures of up to 10-12 MPa, or densities up to 4mol/dm~3 (≈0.4ρ_c), only when temperature was >220K. Values of enthalpy predicted from the equation of state showed good agreement with experimental data.
机译:将四项状态状态方程与各向同性电势模型相结合,以预测气相中氮气的准确体积和热量热力学性质。仅根据对声学数据的拟合确定模型电势的参数。没有使用其他数据。对于氮,仅需在不超过一个三重态电位的相互作用水平上近似第四病毒力系数即可;高阶近似没有提供进一步的优势。结果表明,四项病毒方程比三项模拟更准确。发现当温度> 150±30K时,预测的病毒系数与实验值一致。相反,在此范围以下,模型预测的病毒系数与实验不一致。据信,预测的第四维里系数仅在大约150 K以上才是可靠和准确的。在高达10-12 MPa的压力或密度高达4mol / dm〜3(≈0.4ρ_c)时,预测的压缩系数偏离<0.05%。 ,仅当温度> 220K时。由状态方程预测的焓值与实验数据吻合良好。

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