首页> 外文期刊>Journal of engineering for gas turbines and power: Transactions of the ASME >Supplementary Backward Equations T(p,h), v(p,h), and T(p,s), v(p,s) for the Critical and Supercritical Regions (Region 3 of the Industrial Formulation IAPWS-IF97 for Water and Steam
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Supplementary Backward Equations T(p,h), v(p,h), and T(p,s), v(p,s) for the Critical and Supercritical Regions (Region 3 of the Industrial Formulation IAPWS-IF97 for Water and Steam

机译:临界和超临界区域的补充后向方程 T(p,h)、v(p,h) 和 T(p,s)、v(p,s)(工业配方 IAPWS-IF97 用于水和蒸汽的区域 3)

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摘要

In modeling advanced steam power cycles, thermodynamic properties as functions of pressure and enthalpy (p,h) or pressure and entropy (p, s) are required in the critical and supercritical regions (region 3 of IAPWS-IF97). With IAPWS-IF97, these calculations require cumbersome two-dimensional iteration of temperature T and specific volume v from (p,h) or (p, s). While these calculations in region 3 are not frequently required, the computing time can be significant. Therefore, the International Association for the Properties of Water and Steam (IAPWS) adopted backward equations for T(p,h), v(p,h), T(p, s), and v(p, s) in region 3, along with boundary equations for the saturation pressure as a function of enthalpy, p{sub}(3sat)(h), and of entropy, p{sub}(3sat)(s). Using the new equations, two-dimensional iteration can be avoided. The numerical consistency of temperature and specific volume obtained in this way is sufficient for most uses. This paper summarizes the need and the requirements for these equations and gives complete numerical information. In addition, numerical consistency and computational speed are discussed.
机译:在模拟高级蒸汽动力循环时,临界和超临界区域(IAPWS-IF97 的区域 3)需要热力学属性作为压力和焓 (p,h) 或压力和熵 (p, s) 的函数。使用IAPWS-IF97,这些计算需要从(p,h)或(p,s)对温度T和比体积v进行繁琐的二维迭代。虽然区域 3 中的这些计算并不经常需要,但计算时间可能很长。因此,国际水和蒸汽性质协会 (IAPWS) 采用了区域 3 中 T(p,h)、v(p,h)、T(p, s) 和 v(p, s) 的反向方程,以及饱和压力作为焓 p{sub}(3sat)(h) 和熵 p{sub}(3sat)(s) 函数的边界方程。使用新的方程,可以避免二维迭代。以这种方式获得的温度和比体积的数值一致性对于大多数用途来说已经足够了。本文总结了这些方程的必要性和要求,并给出了完整的数值信息。此外,还讨论了数值一致性和计算速度。
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