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The IAPWS formulation 1995 for the thermodynamic properties of ordinary water substance for general and scientific use [Review]

机译:IAPWS公式1995,用于普通和科学用途的普通水质的热力学性质[综述]

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In 1995, the International Association for the Properties of Water and Steam (IAPWS) adopted a new formulation called "The IAPWS Formulation 1995 he Thermodynamic Properties of Ordinary Water Substance for General and Scientific Use", which we abbreviate to IAPWS-95 formulation or IAPWS-95 for short. This IAPWS-95 formulation replaces the previous formulation adopted in 1984. This work provides information on the, selected experimental, data of the thermodynamic properties of,water used to develop the new formulation, but information is also given on newer data. The article presents all details of the IAPWS-95 formulation, which is in the form of a fundamental equation explicit in the Helmholtz free energy. The function for the residual part of the Helmholtz-free energy was fitted to selected data for the following properties: (a) thermal properties of the single-phase region (prhoT) and of the vapor-liquid phase boundary (p(sigma)rho'rho"T), including the phase-equilibrium condition (Maxwell criterion), and (b) the caloric properties specific isochoric heat capacity, specific isobaric heat capacity, speed of sound, differences in, the specific enthalpy and in the specific internal energy, Joule,Thomson coefficient, and isothermal throttling coefficient. By applying modem strategies for optimizing the functional form of the equation of state and for the simultaneous nonlinear fitting to the. data of all mentioned properties, the resulting IAPWS-95 formulation covers a validity range for temperatures from the melting line (lowest temperature 251.2 K at 209.9 MPa) to 1273 K and pressures up to 1000 MPa. In this entire range. of validity, IAPWS-95 represents even the most accurate data to within their experimental uncertainty. In the most important part of the liquid region, the estimated uncertainty,of IAPWS-95 ranges from +/- 0.001% to +/- 0.02% in density, +/- 0.03% to +/- 0.2% in speed of sound, and +/- 0.1% in isobaric heat capacity. In the liquid region at ambient pressure, IAPWS-95 is extremely accurate in density (uncertainty less than or equal to+/-0.0001%) and in speed of sound ( 0.005%). In a large part of the gas region the estimated uncertainty in density ranges from +/- 0.03% to +/- 0.05%, in speed of sound it amounts to +/- 0.15% and in isobaric heat capacity it is +/- 0.2%. In the critical region, IAPWS 95 represents not only the thermal properties very well but also the caloric properties in a reasonable way. Special interest has been focused on the extrapolation behavior of the new formulation. At least for the basic properties such as pressure and enthalpy, IAPWS-95 can be extrapolated up to extremely high pressures and temperatures. In addition to, the IAPWS-95 formulation, independent equations for. he densities, and the most important caloric vapor, pressure, properties along the vapor-liquid phase boundary, and for the pressure on the melting and sublimation curve, are given. Moreover, a so-called gas equation for densities lip to 55 kg m(-3) is also included. Tables of the thermodynamic properties calculated from the IAPWS-95 formulation are listed in the Appendix. (C) 2002 American Institute of Physics. [References: 180]
机译:1995年,国际水和蒸汽特性协会(IAPWS)采用了一种新的配方,即“ IAPWS配方1995他用于一般和科学用途的普通水质的热力学特性”,我们将其缩写为IAPWS-95配方或IAPWS简称-95。此IAPWS-95配方替代了1984年采用的以前的配方。这项工作提供了有关用于开发新配方的水的热力学性质的数据(选定的实验数据)的信息,但也提供了有关较新数据的信息。本文介绍了IAPWS-95公式的所有详细信息,该公式采用亥姆霍兹自由能中明确表示的基本方程式的形式。将不含亥姆霍兹能量的剩余部分的函数拟合到具有以下特性的选定数据:(a)单相区(prhoT)和汽液相边界(p(sigmarho) “ rho” T),包括相平衡条件(麦克斯韦准则),以及(b)热量特性,比等容热容量,比等压热容量,声速,差,比焓和比内热,焦耳,汤姆森系数和等温节流系数。通过应用调制解调器策略优化状态方程的函数形式并同时对所有上述性质的数据进行非线性拟合,所得的IAPWS-95公式涵盖了有效范围适用于从熔点(最低温度251.2 K,在209.9 MPa时)到1273 K以及最高1000 MPa的压力,在整个范围内,IAPWS-95甚至可以代表最准确的数据减少实验不确定性。在液体区域的最重要部分,IAPWS-95的估计不确定度的密度范围为+/- 0.001%至+/- 0.02%,声速为+/- 0.03%至+/- 0.2%,等压热容量的+/- 0.1%。在环境压力下的液体区域,IAPWS-95的密度(不确定度小于或等于+/- 0.0001%)和声速(0.005%)极其精确。在大部分气体区域中,估计的密度不确定性范围为+/- 0.03%至+/- 0.05%,声速为+/- 0.15%,等压热容为+/- 0.2 %。在关键区域,IAPWS 95不仅很好地表现了热性能,而且还以合理的方式代表了热性能。特别关注的是新配方的外推行为。至少对于诸如压力和焓之类的基本特性,IAPWS-95可以推断到极高的压力和温度。除IAPWS-95公式外,还提供独立方程式。给出了密度,最重要的热量蒸气,压力,沿气-液相边界的性质以及熔解和升华曲线上的压力。此外,还包括一个所谓的密度唇线到55 kg m(-3)的气体方程。由IAPWS-95配方计算得出的热力学性质表列于附录中。 (C)2002美国物理研究所。 [参考:180]

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