Examine Fuzzy System to Present an Equilibrium Model for the Internal Pressure Losses of Alpha Type Stirling Engine: Comparison with ANN Model

Author:

Musmar Sa’ed A.1,Tlili Iskander2,Al-Halhouli Ala’Aldeen34,Mucciardi Frank5

Affiliation:

1. Department of Industrial Engineering, The University of Jordan, Amman, 11942, Jordan

2. Physics Department, College of Science, Al-Zulfi, Majmaah University, Al-Majmaah 11952, Saudi Arabia

3. Mechatronics Engineering Department, School of Applied Technical Sciences, German Jordanian University, Amman 11180, Jordan

4. Faculty of Engineering, Middle East University, Amman 11831, Jordan

5. Department of Mining and Materials Engineering, McGill University, Montreal, Quebec H3A 0C5, Canada

Abstract

Global warming associated with the greenhouse effect urge finding alternative energy strategies concerned with sustainable energy resources that are environmentally friendly and provide energy saving. Waste heat recovery engines are attracting devices that convert usually wasted energy to valuable mechanical or electrical energy. The current research aims to develop a mathematical model to investigate the effects of regenerator physical dimensions on the alpha Stirling engine performance indicators. A mathematical model integrating an internal pressure drop has been proposed to act as a thermodynamic optimization tool for the Stirling engine. The main conclusion was that both geometrical factors and working fluid initial charge (gas mass) craft the performance parameters of alpha type Stirling engine that operates with air as working material. After that, Artificial neural networks of Levenberg Marquardt and Orthogonal Distance Regression models, and Fuzzy systems trained for Mass Charge from M = 0.002 to 0.004 Kg are compared to find the least uncertainty. Results revealed that the Fuzzy system and Orthogonal Distance Regression model could predict more effectively than the Levenberg Marquardt model.

Funder

srsf

Publisher

World Scientific Pub Co Pte Ltd

Subject

Artificial Intelligence,Information Systems,Control and Systems Engineering,Software

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