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A Simplified Model of VIPER Thermal Management System. Part II: Integrated VehicleNASA’s Volatiles Investigating Polar Exploration Rover (VIPER) thermal management system (TMS) relies on four loop heat pipes (LHPs) to transport electronic waste heat to the vehicle cooling radiative surface and avoid overheating. The TMS has also ten constant conductance heat pipes (CCHPs) dedicated to balance the thermal load within the internal environment where the avionics boxes are mounted, also called warm electronic box (WEB), and to transport the heat from two of the science payload instruments. The TMS also uses two thermal straps to thermally link the batteries to the WEB. These thermal components, in addition to heaters, thermostat, multi-layer insulation (MLIs), and isolators forms the core of the VIPER TMS. The complex heat transport balance managed by the TMS is challenging to characterize and model. The more fidelity and granularity of a model, the more costly the computational resources needed and the longer the simulation and modeling time. When the priority is to provide quick but reliable assessments of the thermal performance or real time thermal feedback for training of console operators, simplified modeling tools are needed. To satisfy that need, this paper describes the effort to develop and correlate a model of VIPER TMS based on control volume approach. The correlation effort in particular focuses on hibernation, cold thermal balance, and hot thermal balance data from the integrated vehicle thermal vacuum (TVAC) test. Thus, the correlated model captures the heat leaks during hibernations and the performance at two extremes, bounding, operating scenarios.
Document ID
20260005904
Acquisition Source
Marshall Space Flight Center
Document Type
Presentation
Authors
Ezequiel F Medici
(S&K Global Solutions (United States) Polson, Montana, United States)
Jodi C Turk
(Marshall Space Flight Center Redstone Arsenal, United States)
Elijah R Stewart
(Marshall Space Flight Center Redstone Arsenal, United States)
Tim Page
(Amentum Chantilly, Virginia, United States)
Zane W Mittag
(Johnson Space Center Houston, United States)
Juan M Barragan
(Johnson Space Center Houston, United States)
Angel Alvarez-Hernandez
(Johnson Space Center Houston, United States)
Date Acquired
July 1, 2026
Subject Category
Spacecraft Design, Testing and Performance
Report/Patent Number
ICES-2026-478
Meeting Information
Meeting: 55th International Conference on Environmental Systems (ICES 2026)
Location: Rio Grande
Country: PR
Start Date: July 12, 2026
End Date: July 16, 2026
Sponsors: International Conference on Environmental Systems (ICES)
Funding Number(s)
WBS: 714607.01.11.03.01.03
Distribution Limits
Public
Copyright
Public Use Permitted.
Keywords
Thermal Modeling
Lunar Thermal Control
Loop Heat Pipe
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