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On-Demand Non-Contact Distillation: Low-g Demonstrations of a Leidenfrost Waste-Water ProcessorLeidenfrost phenomenon is employed as a potential solution to NASA’s urine water recovery problem by providing a method for on demand non-contact distillation. Leidenfrost investigations have been almost exclusively conducted in terrestrial environments and are in turn largely defined by the ever-presence of gravity. In this work we demonstrate a variety of Leidenfrost effects for enormous liquid droplets in the microgravity environment of a 2.1 second drop tower. Dynamic Leidenfrost droplet impacts on a selection of heated hydrophilic and superhydrophobic surfaces in microgravity are presented. Nearly ideal elastic non- contact impacts and droplet oscillation modes are observed. Impact experiments are extended to a variety of heated substrates including macro pillar arrays, confined passageways, and others. The potential for contamination-free processing is obvious, with the proof of concept to be pursued shortly.
Document ID
20205004870
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Rawand M. Rasheed
(Johnson Space Center Houston, Texas, United States)
Mark M. Weislogel ORCID
(Portland State University Portland, Oregon, United States)
Date Acquired
July 22, 2020
Publication Date
July 7, 2019
Publication Information
Publication: International Conference on Environmental Systems
Publisher: Texas Tech University Libraries
Subject Category
Man/System Technology And Life Support
Report/Patent Number
ICES-2019-222
Meeting Information
Meeting: 49th International Conference on Environmental Systems (ICES)
Location: Boston, MA
Country: US
Start Date: July 7, 2019
End Date: July 11, 2019
Sponsors: International Conference on Environmental Systems (ICES)
Funding Number(s)
CONTRACT_GRANT: 80NSSC17K0175
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
External Peer Committee
Keywords
Leidenfrost
Superhydrophobic
Hydrophobic
Urine
Water
Recovery
Microgravity
Low gravity
Droplet
Impact
Processing
Fluids
Fluid
Drop
Tower
Capillary
Thermal
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