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Weislogel MM, Chen Y, Bolleddula DA. A better nondimensionalization scheme for slender
laminar flows: The Laplacian operator scaling method. Physics of Fluids. 2008;20(9):093602-1 -
093602-7. doi: 10.1063/1.2973900. [d]


Weislogel MM, Chen Y, Collicott SH, Jenson RM. Capillary wetting analysis of the CFE-Vane Gap
geometry. 46th AIAA Aerospace Sciences Meeting and Exhibit, Reno, NV; 2008.[a]


Weislogel MM, Haake D, Dreyer M, Klatte J. A fast numerical procedure for steady capillary flow
in open channels. Acta Mechanica. 2008;201:269-276. doi: 10.1007/s00707- 008 -0063-1. [c]


Weislogel MM, Jenson RM, Chen Y, Collicott SH, Klatte J, Dreyer ME. Postflight summary of the
Capillary Flow Experiments aboard the International Space Station. 59th International
Astronautical Congress, Glasgow, Scotland; 2008. IAC-08-A2.6.A8.


Weislogel MM, Jenson RM, Collicott SH, Williams SL. Geometry pumping on spacecraft (The
CFE-Vane Gap Experiments on ISS). Japan Society of Microgravity Application. 2008;25(3): 291-



  1. [e]


Weislogel MM, Jenson RM, Dreyer M, Klatte J. The Capillary Flow Experiments aboard ISS:
Moving contact line experiments and numerical analysis. 4 6th AIAA Aerospace Sciences
Meeting and Exhibit, Reno, NV; 2008. [b]


Weislogel MM, Jenson RM, Dreyer M, Klatte J. Interim results from the capillary flow
experiment aboard ISS; The moving contact line boundary condition. 45th AIAA Aerospace
Sciences Meeting and Exhibit, Reno, NV; 2007.


Weislogel MM, Golliher EL, Hickman M, Green RD, Bunnell CT, Kurta CE. Preliminary results
from the Capillary Flow Experiment Aboard ISS: The moving contact line boundary condition.
Proceedings of the 43rd AIAA Aerospace Sciences Meeting and Exhibit, Reno, NV; 2005.


This investigation is complete; however additional results are pending publication.

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