An R-package for water and steam properties for scientific and general use

B. B. Filho, E. Cabral, A. Barroso
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Abstract

The International Association for the Properties of Water and Steam (IAPWS) develops formulations for the calculation of thermophysical properties of water as a function of different combinations of temperature, density, pressure, enthalpy, and entropy. These properties are useful for scientists and nuclear, chemical, and mechanical engineers who analyse experimental data or are involved with projects and equipment development, like heat exchangers, turbines, or nuclear power reactors. The IAPWS-95 formulation solves the fundamental equation of Helmholtz free energy as a function of temperature and density. This paper gives a description of how these equations are solved and exemplifies the use of a package developed for the free platform R. The IAPWS95 package was developed to help users to get access to the IAPWS-95 formulation in a free software environment which is growing exponentially. Transport properties were programmed using other IAPWS releases. The examples consider the uncertainty analysis of thermal parameters of a nuclear power reactor and the preparation of tables and graphs of water properties.
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科学和通用的水和蒸汽特性R包
国际水和蒸汽性质协会(IAPWS)开发了计算水的热物理性质的公式,作为温度、密度、压力、焓和熵的不同组合的函数。这些特性对于分析实验数据或参与项目和设备开发(如热交换器、涡轮机或核电反应堆)的科学家和核、化学和机械工程师非常有用。IAPWS-95公式解决了亥姆霍兹自由能作为温度和密度函数的基本方程。本文描述了这些方程是如何求解的,并举例说明了为自由平台R开发的软件包的使用。开发IAPWS95软件包是为了帮助用户在指数级增长的自由软件环境中访问IAPWS-95公式。传输属性是使用其他IAPWS版本编程的。实例考虑了核反应堆热参数的不确定性分析和水特性图表的编制。
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CiteScore
0.80
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2
期刊介绍: Today, nuclear reactors generate nearly one quarter of the electricity in nations representing two thirds of humanity, and other nuclear applications are integral to many aspects of the world economy. Nuclear fission remains an important option for meeting energy requirements and maintaining a balanced worldwide energy policy; with major countries expanding nuclear energy"s role and new countries poised to introduce it, the key issue is not whether the use of nuclear technology will grow worldwide, even if public opinion concerning safety, the economics of nuclear power, and waste disposal issues adversely affect the general acceptance of nuclear power, but whether it will grow fast enough to make a decisive contribution to the global imperative of sustainable development.
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