Parametric Evaluation of Wobble-Yoke Stirling Engine State Space Model

A conceptual design of Stirling engine suitable for onboard aircraft application is the motivation behind this study. The aim is to evaluate the suitability of the system to be integrated in aircraft as part of energy contributor by recycling the waste thermal energy. A parametric evaluation of an e...

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Autores principales: Abdullah Ermira Junita, Lee Rick Kit
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Lenguaje:EN
FR
Publicado: EDP Sciences 2021
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Acceso en línea:https://doaj.org/article/4374ca4faa7f4ab28b6ceb4eeac928e7
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spelling oai:doaj.org-article:4374ca4faa7f4ab28b6ceb4eeac928e72021-11-08T15:18:56ZParametric Evaluation of Wobble-Yoke Stirling Engine State Space Model2267-124210.1051/e3sconf/202131302003https://doaj.org/article/4374ca4faa7f4ab28b6ceb4eeac928e72021-01-01T00:00:00Zhttps://www.e3s-conferences.org/articles/e3sconf/pdf/2021/89/e3sconf_isec2021_02003.pdfhttps://doaj.org/toc/2267-1242A conceptual design of Stirling engine suitable for onboard aircraft application is the motivation behind this study. The aim is to evaluate the suitability of the system to be integrated in aircraft as part of energy contributor by recycling the waste thermal energy. A parametric evaluation of an established Wobble-Yoke Stirling Engine state space model was performed to determine a suitable pre-compensator design that is able to produce the highest power output given the size and mass constraint. Simulation was performed using MATLAB in order to analyze the dynamic properties of the engine as a closed-loop system, with temperature, pressure and damping coefficient acting as controlling parameters. The parametric evaluation was conducted to determine the effect of assemble mass of piston, maximum displacement of piston and viscous damping coefficient to the performance of the system. The methodology can be used in the conceptual design process in order to determine the sizing and power output of the stirling engine system.Abdullah Ermira JunitaLee Rick KitEDP SciencesarticleEnvironmental sciencesGE1-350ENFRE3S Web of Conferences, Vol 313, p 02003 (2021)
institution DOAJ
collection DOAJ
language EN
FR
topic Environmental sciences
GE1-350
spellingShingle Environmental sciences
GE1-350
Abdullah Ermira Junita
Lee Rick Kit
Parametric Evaluation of Wobble-Yoke Stirling Engine State Space Model
description A conceptual design of Stirling engine suitable for onboard aircraft application is the motivation behind this study. The aim is to evaluate the suitability of the system to be integrated in aircraft as part of energy contributor by recycling the waste thermal energy. A parametric evaluation of an established Wobble-Yoke Stirling Engine state space model was performed to determine a suitable pre-compensator design that is able to produce the highest power output given the size and mass constraint. Simulation was performed using MATLAB in order to analyze the dynamic properties of the engine as a closed-loop system, with temperature, pressure and damping coefficient acting as controlling parameters. The parametric evaluation was conducted to determine the effect of assemble mass of piston, maximum displacement of piston and viscous damping coefficient to the performance of the system. The methodology can be used in the conceptual design process in order to determine the sizing and power output of the stirling engine system.
format article
author Abdullah Ermira Junita
Lee Rick Kit
author_facet Abdullah Ermira Junita
Lee Rick Kit
author_sort Abdullah Ermira Junita
title Parametric Evaluation of Wobble-Yoke Stirling Engine State Space Model
title_short Parametric Evaluation of Wobble-Yoke Stirling Engine State Space Model
title_full Parametric Evaluation of Wobble-Yoke Stirling Engine State Space Model
title_fullStr Parametric Evaluation of Wobble-Yoke Stirling Engine State Space Model
title_full_unstemmed Parametric Evaluation of Wobble-Yoke Stirling Engine State Space Model
title_sort parametric evaluation of wobble-yoke stirling engine state space model
publisher EDP Sciences
publishDate 2021
url https://doaj.org/article/4374ca4faa7f4ab28b6ceb4eeac928e7
work_keys_str_mv AT abdullahermirajunita parametricevaluationofwobbleyokestirlingenginestatespacemodel
AT leerickkit parametricevaluationofwobbleyokestirlingenginestatespacemodel
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