Calibration of the Heat Flow and Physical Properties Package (HP 3 ) for the InSight Mars Mission
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T. Spohn | W. Banerdt | T. Spohn | J. Knollenberg | M. Grott | J. Knollenberg | S. Smrekar | T. Wippermann | T. Hudson | M. Grott | C. Krause | M. Scharringhausen | S.E. Smrekar | T.L. Hudson | W.B. Banerdt | M. Scharringhausen | T. Wippermann | M. Grott | C. Krause | J. Knollenberg | Christian Krause | M. Scharringhausen | Sue Smrekar
[1] J. Ruiz,et al. Present-day heat flow model of Mars , 2017, Scientific Reports.
[2] J. Huw Davies,et al. Global map of solid Earth surface heat flow , 2013 .
[3] D. White,et al. The Hysteresis Characteristics of Some Industrial PRTs , 2010 .
[4] G. Kargl,et al. Determination of the effective thermal conductivity of granular materials under varying pressure conditions , 2008 .
[5] Matthias Grott,et al. Thermal structure of Martian soil and the measurability of the planetary heat flow , 2007 .
[6] M. Grott,et al. Thermal evolution and Urey ratio of Mars , 2014 .
[7] S. Piqueux,et al. Low-temperature specific heat capacity measurements and application to Mars thermal modeling , 2019, Icarus.
[8] Christian Krause,et al. Apollo lunar heat flow experiment revisited: A critical reassessment of the in situ thermal conductivity determination , 2010 .
[9] D. Davies,et al. Earth's surface heat flux , 2009 .
[10] W. Banerdt,et al. The Thermal State and Interior Structure of Mars , 2018, Geophysical Research Letters.
[11] Stephen J. Keihm,et al. The Apollo 15 lunar heat-flow measurement , 1972 .
[12] M. Golombek,et al. A Pre-Landing Assessment of Regolith Properties at the InSight Landing Site , 2018, Space Science Reviews.
[13] J. Jaeger. Conduction of Heat in an Infinite Region Bounded Internally by a Circular Cylinder of a Perfect Conductor , 1956 .
[14] K. Gwinner,et al. Selection of the InSight Landing Site , 2017 .
[15] Suzanne Hurter,et al. Heat flow from the Earth's interior: Analysis of the global data set , 1993 .
[16] Günter Kargl,et al. In situ methods for measuring thermal properties and heat flux on planetary bodies , 2011, Planetary and space science.
[17] M. Golombek,et al. Pre-mission InSights on the Interior of Mars , 2019, Space Science Reviews.
[18] K. Zacny,et al. Improved data reduction algorithm for the needle probe method applied to in-situ thermal conductivity measurements of lunar and planetary regoliths , 2014 .
[19] U. Hammerschmidt,et al. Transient Hot Strip (THS) Method: Uncertainty Assessment , 2000 .
[20] J. Tamba,et al. Evaluation of Small-Sized Platinum Resistance Thermometers with ITS-90 Characteristics , 2011 .
[21] J. Ruiz. The early heat loss evolution of Mars and their implications for internal and environmental history , 2014, Scientific Reports.
[22] Jovan Bojkovski,et al. Determination of PRT Hysteresis in the Temperature Range from −50 °C to 300 °C , 2010 .
[23] K. Rasmussen,et al. Megaregolith insulation, internal temperatures, and bulk uranium content of the moon , 1987 .
[24] O. Gasnault,et al. Long-Term Evolution of the Martian Crust-Mantle System , 2013 .
[25] D. Breuer,et al. The Heat Flow and Physical Properties Package (HP3) for the InSight Mission , 2018, Space Science Reviews.
[26] J. Blackwell. A Transient-Flow Method for Determination of Thermal Constants of Insulating Materials in Bulk Part I—Theory , 1954 .