نتایج جستجو برای: regenerative brayton cycle

تعداد نتایج: 293837  

2000
R. Schleicher A. R. Raffray C. P. Wong

The He Brayton cycle appears to be the best nearterm power conversion method for maximizing the economic potential of fusion. Key factors affecting the Brayton cycle efficiency includes the turbine inlet temperature, compressor and turbine adiabatic efficiencies, recuperator effectiveness and cycle fractional pressure loss. The compression ratio is also important because for fusion conditions, ...

2014
Dillip Kumar Mohanty Vijay Venkatesh

The combined cycle gas turbine integrates the Brayton cycle as topping cycle and the steam turbine Rankine cycle as bottoming cycle in order to achieve higher thermal efficiency and proper utilization of energy by minimizing the energy loss to a minimum. In this work, the effect of various operating parameters such as maximum temperature and pressure of Rankine cycle, turbine inlet temperature ...

Journal: :Entropy 2003
Sudhir Kumar Tyagi Subhash Chandra Kaushik Vivek Tiwari

An ecological optimization along with a detailed parametric study of an irreversible regenerative Brayton heat engine with isothermal heat addition have been carried out with external as well as internal irreversibilities. The ecological function is defined as the power output minus the power loss (irreversibility) which is ambient temperature times the entropy generation rate. The external irr...

Journal: :Entropy 2018
Fuli Zhu Lingen Chen Wenhua Wang

An irreversible Maisotsenko reciprocating Brayton cycle (MRBC) model is established using the finite time thermodynamic (FTT) theory and taking the heat transfer loss (HTL), piston friction loss (PFL), and internal irreversible losses (IILs) into consideration in this paper. A calculation flowchart of the power output (P) and efficiency (η) of the cycle is provided, and the effects of the mass ...

Journal: :Energies 2022

Considering a simple regenerative Brayton cycle, the impact of using different fuel blends containing variable volumetric percentage hydrogen in methane was analysed. Due to potential combustion gas turbines reduce overall CO2 emissions and dependency on natural gas, further research is needed understand thermodynamic cycle. For that purpose, qualitative analysis carried out assess exergetic en...

2016
Joseph Palmer Essam Shehab

Distributed propulsion concepts are promising in terms of improved fuel burn, better aerodynamic performance, and greater control. Superconducting networks are being considered for their superior power density and efficiency. This study discusses the design of cryogenic cooling systems which are essential for normal operation of superconducting materials. This research project has identified si...

Journal: :International Conference on Aerospace Sciences and Aviation Technology 2013

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