A Lab-scale Investigation of the Mars Kieffer Model

被引:1
作者
Mc Keown, Lauren E. [1 ]
Poston, Michael J. [2 ]
Diniega, Serina [1 ]
Portyankina, Ganna [3 ]
Hansen, Candice J. [4 ]
Aye, Klaus-Michael [5 ]
Carey, Elizabeth M. [6 ]
Scully, Jennifer E. C. [1 ]
Piqueux, Sylvain [1 ]
Shiraishi, Lori R. [1 ]
Cruz, Sarah N. [1 ]
机构
[1] CALTECH, Jet Prop Lab, Pasadena, CA 91011 USA
[2] Southwest Res Inst, San Antonio, TX 78238 USA
[3] DLR Berlin, Berlin, Germany
[4] Planetary Sci Inst, Tucson, AZ 85719 USA
[5] Free Univ Berlin, Kaiserswerther Str 16-18, Berlin, Germany
[6] Airborne Snow Observ, Crowley Lake, CA 93546 USA
来源
PLANETARY SCIENCE JOURNAL | 2024年 / 5卷 / 09期
基金
美国国家航空航天局;
关键词
SUBLIMATION-DRIVEN ACTIVITY; HIRISE OBSERVATIONS; CARBON-DIOXIDE; ORBITER CAMERA; CO2; ICE; POLAR; ARANEIFORMS; EVOLUTION; EROSION; STATE;
D O I
10.3847/PSJ/ad67c8
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The Kieffer model is a widely accepted explanation for seasonal modification of the Martian surface by CO2 ice sublimation and the formation of a "zoo" of intriguing surface features. However, the lack of in situ observations and empirical laboratory measurements of Martian winter conditions hampers model validation and refinement. We present the first experiments to investigate all three main stages of the Kieffer model within a single experiment: (i) CO2 condensation on a thick layer of Mars regolith simulant; (ii) sublimation of CO2 ice and plume, spot, and halo formation; and (iii) the resultant formation of surface features. We find that the full Kieffer model is supported on the laboratory scale as (i) CO2 diffuses into the regolith pore spaces and forms a thin overlying conformal layer of translucent ice. When a buried heater is activated, (ii) a plume and dark spot develop as dust is ejected with pressurized gas, and the falling dust creates a bright halo. During plume activity, (iii) thermal stress cracks form in a network similar in morphology to certain types of spiders, dendritic troughs, furrows, and patterned ground in the Martian high south polar latitudes. These cracks appear to form owing to sublimation of CO2 within the substrate, instead of surface scouring. We discuss the potential for this process to be an alternative formation mechanism for "cracked" spider-like morphologies on Mars. Leveraging our laboratory observations, we also provide guidance for future laboratory or in situ investigations of the three stages of the Kieffer model.
引用
收藏
页数:15
相关论文
共 54 条
[11]   A new dry hypothesis for the formation of martian linear gullies [J].
Diniega, S. ;
Hansen, C. J. ;
McElwaine, J. N. ;
Hugenholtz, C. H. ;
Dundas, C. M. ;
McEwen, A. S. ;
Bourke, M. C. .
ICARUS, 2013, 225 (01) :526-537
[12]   Martian gully activity and the gully sediment transport system [J].
Dundas, Colin M. ;
Conway, Susan J. ;
Cushing, Glen E. .
ICARUS, 2022, 386
[13]   Defrosting, dark flow features, and dune activity on Mars: Example in Russell crater [J].
Gardin, E. ;
Allemand, P. ;
Quantin, C. ;
Thollot, P. .
JOURNAL OF GEOPHYSICAL RESEARCH-PLANETS, 2010, 115
[14]  
Hansen C., 2019, EPSC DPS JOINT M 201
[15]   A comparison of CO2 seasonal activity in Mars' northern and southern hemispheres [J].
Hansen, C. J. ;
Byrne, S. ;
Calvin, W. M. ;
Diniega, S. ;
Dundas, C. M. ;
Hayne, P. O. ;
McEwen, A. S. ;
McKeown, L. E. ;
Piqueux, S. ;
Portyankina, G. ;
Schwamb, M. E. ;
Titus, T. N. ;
Widmer, J. M. .
ICARUS, 2024, 419
[16]   Seasonal Erosion and Restoration of Mars' Northern Polar Dunes [J].
Hansen, C. J. ;
Bourke, M. ;
Bridges, N. T. ;
Byrne, S. ;
Colon, C. ;
Diniega, S. ;
Dundas, C. ;
Herkenhoff, K. ;
McEwen, A. ;
Mellon, M. ;
Portyankina, G. ;
Thomas, N. .
SCIENCE, 2011, 331 (6017) :575-578
[17]   HiRISE observations of gas sublimation-driven activity in Mars' southern polar regions: I. Erosion of the surface [J].
Hansen, C. J. ;
Thomas, N. ;
Portyankina, G. ;
McEwen, A. ;
Becker, T. ;
Byrne, S. ;
Herkenhoff, K. ;
Kieffer, H. ;
Mellon, M. .
ICARUS, 2010, 205 (01) :283-295
[18]   Variability of spider spatial configuration at the Martian south pole [J].
Hao, J. ;
Michael, G. G. ;
Adeli, S. ;
Jaumann, R. ;
Portyankina, G. ;
Hauber, E. ;
Millot, C. ;
Zuschneid, W. .
PLANETARY AND SPACE SCIENCE, 2020, 185
[19]   Araneiform terrain formation in Angustus Labyrinthus, Mars [J].
Hao, J. ;
Michael, G. G. ;
Adeli, S. ;
Jaumann, R. .
ICARUS, 2019, 317 :479-490
[20]   Laboratory simulation experiments on the solid-state greenhouse effect in planetary ices [J].
Kaufmann, Erika ;
Koemle, Norbert I. ;
Kargl, Guenter .
ICARUS, 2006, 185 (01) :274-286