An equation of state for liquid iron and implications for the Earth's core
Open Access
- 10 March 1994
- journal article
- Published by American Geophysical Union (AGU) in Journal of Geophysical Research
- Vol. 99 (B3) , 4273-4284
- https://doi.org/10.1029/93jb03158
Abstract
An equation of state is presented for liquid iron based on published ultrasonic, thermal expansion, and enthalpy data at 1 bar and on pulse‐heating and shock wave compression and sound speed data up to 10 Mbar. The equation of state parameters, centered at 1 bar and 1811 K (the normal melting point of iron), are density, ρ0 = 7019 kg/m3, isentropic bulk modulus, KS0 = 109.7 GPa, and the first‐and second‐pressure derivatives of KS, K′S0 = 4.66 and K″S0 = −0.043 GPa−1. A parameterization of the Grüneisen parameter γ as a function of density ρ and specific internal energy E is γ = γ0 + γ′(ρ/ρ0)n(E ‐ E0) where γ0 = 1.735, γ′ = −0.130 kg/MJ, n = −1.87, and E0 is the internal energy of the liquid at 1 bar and 1811 K. The model gives the temperature dependence of γ at constant volume as (∂γ/∂T)v|1bar,1811K = −8.4 × 10−5 K−1. The constant volume specific heat of liquid Fe at core conditions is 4.0–4.5 R. The model gives excellent agreement with measured temperatures of Fe under shock compression. Comparison with a preliminary reference Earth model indicates that the light component of the core does not significantly affect the magnitude of the isentropic bulk modulus of liquid Fe but does decrease its pressure derivative by ∼10%. Pure liquid Fe is 3–6% more dense than the inner core, supporting the presence of several percent of light elements in the inner core.Keywords
This publication has 37 references indexed in Scilit:
- Electronic structure of the liquid 3d and 4d transition metalsJournal of Physics: Condensed Matter, 1991
- Sound speed and thermophysical properties of liquid iron and nickelPhysical Review B, 1990
- Analysis of shock temperature data for ironHigh Pressure Research, 1990
- Ideal FeFeS, FeFeO phase relations and Earth's corePhysics of the Earth and Planetary Interiors, 1989
- Soft-sphere reference system in thermodynamic variational calculations. II. Liquid transition metalsJournal of Physics F: Metal Physics, 1988
- Analytic expression for the dielectric screening function of strongly coupled electron liquids at metallic and lower densitiesPhysical Review B, 1981
- Models of the Earth's CoreScience, 1981
- Preliminary reference Earth modelPhysics of the Earth and Planetary Interiors, 1981
- Applications of liquid state physics to the Earth's corePhysics of the Earth and Planetary Interiors, 1980
- Is the common definition of the Mie-Grüneisen equation of state inconsistent?Geophysical Research Letters, 1977