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Technical Paper

Modeling of a Real LHP and Integration in a System Level Analysis

2006-07-17
2006-01-2228
An LHP-based thermal control system for cryocoolers on the Alpha Magnetic Spectrometer (AMS-02) has been designed and analyzed by means of the system level model based on Sinda/Fluint. It is integrated with the International Space Station (ISS) model by means of a time-varying sink temperature definition, and the performance of LHP-based thermal control is investigated. A parametric analysis is carried out also to understand the influence of critical parameters on the operation of LHP.
Technical Paper

Organic Pollutants from the Thermal Degradation of Oxygenated Fuels

1996-05-01
961088
A considerable effort is continuing in the U.S. to develop and introduce into society alternatives to the use of conventional gasoline and diesel fuel for transportation. The primary motives for this effort are twofold: energy security and improvement in air quality-most notable ozone, or smog, formation. Fused silica flow reactor instrumentation coupled with in-line GC-MS analysis has been used to examine the high-temperature thermal degradation of methanol, ethanol, M85, and E85 under fuel-lean (oxidative), stoichiometric, and fuel-rich (pyrolytic) conditions. Experiments have been conducted at temperatures of 650°C and 950°C for gas-phase residence times of 0.85 s. Specific reactivities of M85 were observed to be substantially lower than for the other fuels. Several previously unidentified species were observed in these experiments which may or may not impact atmospheric reactivity assessments of these fuels.
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