EQUATION OF STATE FOR D//2O IN THE LIQUID REGION OF UP TO 1000 BAR.

Munetaka Ikeda, Yuji Kageyama, Akira Nagashima

Abstract

For D//2O in the compressed liquid state, several equations of state are available, but they do not fully represent more precise experimental data in very recent years. Present report describes a newly correlated equation of state for D//2O in the liquid (partly gaseous) region of up to 380 degree C and 1000 bar. The latest correlated equation expresses the specific volume as a function of temperature and pressure, considering conveniences in industrial calculations and also in the calculation of derived functions. Equations of derived functions, namely the enthalpy, the entropy and the specific heat at constant pressure, have been obtained from the new equation of state. Properties of liquid D//2O were calculated with the aid of the new equation.

Original languageEnglish
Title of host publicationBull JSME
Pages1492-1498
Number of pages7
Volume20
Edition149
StatePublished - 1977 Nov 1
Externally publishedYes

Fingerprint

Equations of state
Liquids
Density (specific gravity)
Specific heat
Enthalpy
Entropy
Temperature

ASJC Scopus subject areas

  • Engineering(all)

Cite this

Ikeda, M., Kageyama, Y., & Nagashima, A. (1977). EQUATION OF STATE FOR D//2O IN THE LIQUID REGION OF UP TO 1000 BAR. In Bull JSME. (149 ed., Vol. 20, pp. 1492-1498)

EQUATION OF STATE FOR D//2O IN THE LIQUID REGION OF UP TO 1000 BAR. / Ikeda, Munetaka; Kageyama, Yuji; Nagashima, Akira.

Bull JSME. Vol. 20 149. ed. 1977. p. 1492-1498.

Research output: Chapter in Book/Report/Conference proceedingChapter

Ikeda, M, Kageyama, Y & Nagashima, A 1977, EQUATION OF STATE FOR D//2O IN THE LIQUID REGION OF UP TO 1000 BAR. in Bull JSME. 149 edn, vol. 20, pp. 1492-1498.
Ikeda M, Kageyama Y, Nagashima A. EQUATION OF STATE FOR D//2O IN THE LIQUID REGION OF UP TO 1000 BAR. In Bull JSME. 149 ed. Vol. 20. 1977. p. 1492-1498.

Ikeda, Munetaka; Kageyama, Yuji; Nagashima, Akira / EQUATION OF STATE FOR D//2O IN THE LIQUID REGION OF UP TO 1000 BAR.

Bull JSME. Vol. 20 149. ed. 1977. p. 1492-1498.

Research output: Chapter in Book/Report/Conference proceedingChapter

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