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Cryogenic Pressure Control Modeling for Ellipsoidal Space Tanks

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TLDR
In this paper, a computational fluid dynamics (CFD) model is developed to simulate pressure control of an ellipsoidal-shaped liquid hydrogen tank under external heating in normal gravity.
Abstract
A computational fluid dynamics (CFD) model is developed to simulate pressure control of an ellipsoidal-shaped liquid hydrogen tank under external heating in normal gravity. Pressure control is provided by an axial jet thermodynamic vent system (TVS) centered within the vessel that injects cooler liquid into the tank, mixing the contents and reducing tank pressure. The two-phase cryogenic tank model considers liquid hydrogen in its own vapor with liquid density varying with temperature only and a fully compressible ullage. The axisymmetric model is developed using a custom version of the commercially available FLOW-31) software. Quantitative model validation is ,provided by engineering checkout tests performed at Marshall Space Flight Center in 1999 in support of the Solar Thermal Upper Stage_ Technology Demonstrator (STUSTD) program. The engineering checkout tests provide cryogenic tank self-pressurization test data at various heat leaks and tank fill levels. The predicted self-pressurization rates, ullage and liquid temperatures at discrete locations within the STUSTD tank are in good agreement with test data. The work presented here advances current CFD modeling capabilities for cryogenic pressure control and helps develop a low cost CFD-based design process for space hardware.

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Journal ArticleDOI

Effect of Interfacial Turbulence and Accommodation Coefficient on CFD Predictions of Pressurization and Pressure Control in Cryogenic Storage Tank

TL;DR: In this paper, Laminar models agree closely with the pressure evolution and vapor phase temperature stratification but under-predict liquid temperatures, and the results seem to equally apply to large cryogenic tank simulations as well as small scale simulant fluid pressurization cases.
Journal ArticleDOI

Pressurization performance and temperature stratification in cryogenic final stage propellant tank

TL;DR: In this article, a CFD model is established to investigate the performance and thermal stratification in the final stage liquid oxygen (LOX) tank, which is subjected to aerodynamic heat and space radiations during launch.
Journal ArticleDOI

Thermodynamic performance of pre-pressurization in a cryogenic tank

TL;DR: In this paper, the authors investigated the thermodynamic performance of a cryogenic liquid oxygen (LOX) tank during the ground open parking and ground pre-pressurization phase.
Proceedings ArticleDOI

Cryogenic Fluid Management Technology For Moon and Mars Missions

TL;DR: In this article, the authors organize Cryogenic Fluid Management Project technology efforts according to Exploration Architecture target areas, and discuss the scope of trade studies, analytical modeling, and test efforts presently underway, as well as future plans, to address those target areas.
Journal ArticleDOI

Dynamic Behaviors of Liquid in Partially Filled Tank in Short-term Microgravity

TL;DR: In this article, the dynamic behavior of free surface in tank models (tubes) using water as the working medium utilizing the Drop Tower Beijing, which can provide a 3.6s short-term microgravity condition.
References
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Journal ArticleDOI

Pressure Control Analysis of Cryogenic Storage Systems

TL;DR: In this article, self-pressurization of cryogenic storage tanks due to heat leak through the thermal protection system is examined along with the performance of various pressure control technologies for application in microgravity environments.
Proceedings ArticleDOI

Cryogenic Tank Modeling for the Saturn AS-203 Experiment

TL;DR: A computational fluid dynamics (CFD) model is developed for the Saturn S-IVB liquid hydrogen (LH2) tank to simulate the 1966 AS-203 flight experiment as discussed by the authors, which is the only known, adequately-instrumented, low-gravity, cryogenic self pressurization test that is well suited for CFD model validation.
Proceedings ArticleDOI

A pressure control analysis of cryogenic storage systems

TL;DR: In this paper, self-pressurization of cryogenic storage tanks due to heat leak through the thermal protection system is examined along with the performance of various pressure control technologies for application in microgravity environments.
Proceedings ArticleDOI

Solar Thermal Upper Stage Cryogen System Engineering Checkout Test

TL;DR: In this article, a liquid hydrogen (LH2) storage and supply system for the solar thermal upper stage of the STUSTD program is described, and a 30-day simulation of a complete LEO and GEO transfer mission is presented.
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