Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Thomas Mahefkey"'
Publikováno v:
4th International Energy Conversion Engineering Conference and Exhibit (IECEC).
The impact of thermal management related conceptual improvements including thermal energy storage on the overall performance of thermal management system (TMS) for a pulsed power platform was assessed with the help of a general thermodynamic analysis
Autor:
Venkatrama Shanmugasundaram, Thomas Mahefkey, Brian Donovan, Mysore L. Ramalingam, Brian Hager
Publikováno v:
3rd International Energy Conversion Engineering Conference.
A general thermodynamic analytical investigation has been conducted to assess the impact of thermal management related conceptual improvements on the overall performance of thermal management system (TMS). The power system, for which the TMS is being
Autor:
Venkatrama Shanmugasundaram, Brian Hager, Brian Donovan, Thomas Mahefkey, Mysore L. Ramalingam
Publikováno v:
3rd International Energy Conversion Engineering Conference.
Pulsed power systems for directed energy weapon platforms are becoming increasingly important in modern combat situations. A general thermodynamic analytical investigation was developed to assess the impact of technological improvements on mission ef
Publikováno v:
SAE Technical Paper Series.
General thermodynamic analytical investigations on the primary components of aircraft power systems, as well as vehicle integration and mission considerations, have revealed that thermal management plays a key role in limiting payload size and perfor
Autor:
Venkatrama Shanmugasundaram, Brian Donovan, Mysore L. Ramalingam, Brian Hager, Thomas Mahefkey
Publikováno v:
Advanced Energy Systems.
A general thermodynamic analytical evaluation tool was developed to investigate the impact of technological improvements on mission effectiveness and weapon power generation in an aircraft based pulsed power system. The power system investigated cons
Publikováno v:
Advanced Energy Systems.
A general thermodynamic analytical program was developed to investigate the impact of secondary power system (SPS) improvements on mission effectiveness and weapon power generation in a tactical aircraft. Preliminary analysis revealed, among other th