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- W2317368637 abstract "A decoupled analysis modelisation of a four cylinder double-acting kinematic Stirling engine is briefly presented. The main feature of this modelisation is the use of a software package combining the potentialities of a pre-/post-processor with a DAE solver. This makes the resulting modelisation very flexible and powerful. In order to highlight this versatility, we present the modelisation of the transient response of the modelled engine to a power change. Two different power control systems are compared : dead volume variation by variable angle swashplate and mean pressure variation by fluid flow from a gas storage vessel to the engine or inversely. It is known that unsuitable temporal torque evolutions can be obtained with this latter system. This phenomenon appears very clearly in the simulation results. Consequently, different strategies of supplying the fluid to the engine are examined in order to obtain the required torque evolution. Subscripts UP cond C E H id fr K net R sh ST T ta vis W 1 ... 4 appendix loss conduction loss compression space expansion space heater ideal analysis mechanical friction cooler net value regenerator shuttle loss storage vessel total value time averaged over the past period viscous loss wall at interface (seefig. I.) Nomenclature 1. Modelisation heat transfer area torque specific heat at constant pressure connecting pipe diameter friction factor convective heat transfer coefficient connecting pipe length mass of fluid mass flow rate pressure rate of heat exchanged specific gas constant time temperature velocity volume work rate" @default.
- W2317368637 created "2016-06-24" @default.
- W2317368637 creator A5034450555 @default.
- W2317368637 creator A5047450427 @default.
- W2317368637 date "1994-08-07" @default.
- W2317368637 modified "2023-09-27" @default.
- W2317368637 title "Dynamic simulation of kinematic Stirling engine applied to power control" @default.
- W2317368637 cites W2004886424 @default.
- W2317368637 doi "https://doi.org/10.2514/6.1994-4104" @default.
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