REAL-TIME COMPUTATIONAL FLUID DYNAMICS FLOW RESPONSE VISUALISATION AND INTERACTION APPLICATION BASED ON AUGMENTED REALITY
The behaviour of fluid flow is a complex paradigm for cognitive interpretation and visualisation. Engineers need to visualise the behaviour mechanics of flow field response in order to enhance the cognitive ability in problem solving. Therefore, mixed reality related technology is the solution for e...
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oai:doaj.org-article:15ed4d2d40904dab9dd185c7cb15a48f2021-11-15T07:23:03ZREAL-TIME COMPUTATIONAL FLUID DYNAMICS FLOW RESPONSE VISUALISATION AND INTERACTION APPLICATION BASED ON AUGMENTED REALITY10.32890/jict2020.19.4.51675-414X2180-3862https://doaj.org/article/15ed4d2d40904dab9dd185c7cb15a48f2020-08-01T00:00:00Zhttp://e-journal.uum.edu.my/index.php/jict/article/view/jict2020.19.4.5https://doaj.org/toc/1675-414Xhttps://doaj.org/toc/2180-3862The behaviour of fluid flow is a complex paradigm for cognitive interpretation and visualisation. Engineers need to visualise the behaviour mechanics of flow field response in order to enhance the cognitive ability in problem solving. Therefore, mixed reality related technology is the solution for enhanced virtual interactive learning environment. However, there are limited augmented reality platforms on fluid flow interactive learning. Therefore, an interactive education application is proposed for students and engineers to interact and understand the complex flow behaviour pattern subjected to elementary geometry body relative to external flow. This paper presented the technical development of a real-time flow response visualisation augmented reality application for computational fluid dynamics application. It was developed with the assistance of several applications such as Unity, Vuforia, and Android. Particle system modules available in the Unity engine were used to create a two-dimensional flow stream domain. The flow visualisation and interaction were limited to two-dimensional and the numerical fluid continuum response was not analysed. The physical flow response pattern of three simple geometry bodies was validated against ANSYS simulated results based on visual empirical observation. The particle size and number of particles emitted were adjusted in order to emulate the physical representation of fluid flow. Colour contour was set to change according to fluid velocity. Visual validation indicated trivial dissimilarities between FLUENT generated results and flow response exhibited by the proposed augmented reality application. Ashwindran Naidu SanderasagranAzizuddin Abd AzizDaing Mohamad Nafiz Daing IdrisUUM Pressarticleaugmented realitycomputational fluid dynamicsimage targetvuforiaunity engineparticle systemInformation technologyT58.5-58.64ENJournal of ICT, Vol 19, Iss 4, Pp 559-581 (2020) |
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augmented reality computational fluid dynamics image target vuforia unity engine particle system Information technology T58.5-58.64 |
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augmented reality computational fluid dynamics image target vuforia unity engine particle system Information technology T58.5-58.64 Ashwindran Naidu Sanderasagran Azizuddin Abd Aziz Daing Mohamad Nafiz Daing Idris REAL-TIME COMPUTATIONAL FLUID DYNAMICS FLOW RESPONSE VISUALISATION AND INTERACTION APPLICATION BASED ON AUGMENTED REALITY |
description |
The behaviour of fluid flow is a complex paradigm for cognitive interpretation and visualisation. Engineers need to visualise the behaviour mechanics of flow field response in order to enhance the cognitive ability in problem solving. Therefore, mixed reality related technology is the solution for enhanced virtual interactive learning environment. However, there are limited augmented reality platforms on fluid flow interactive learning. Therefore, an interactive education application is proposed for students and engineers to interact and understand the complex flow behaviour pattern subjected to elementary geometry body relative to external flow. This paper presented the technical development of a real-time flow response visualisation augmented reality application for computational fluid dynamics application. It was developed with the assistance of several applications such as Unity, Vuforia, and Android. Particle system modules available in the Unity engine were used to create a two-dimensional flow stream domain. The flow visualisation and interaction were limited to two-dimensional and the numerical fluid continuum response was not analysed. The physical flow response pattern of three simple geometry bodies was validated against ANSYS simulated results based on visual empirical observation. The particle size and number of particles emitted were adjusted in order to emulate the physical representation of fluid flow. Colour contour was set to change according to fluid velocity. Visual validation indicated trivial dissimilarities between FLUENT generated results and flow response exhibited by the proposed augmented reality application.
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format |
article |
author |
Ashwindran Naidu Sanderasagran Azizuddin Abd Aziz Daing Mohamad Nafiz Daing Idris |
author_facet |
Ashwindran Naidu Sanderasagran Azizuddin Abd Aziz Daing Mohamad Nafiz Daing Idris |
author_sort |
Ashwindran Naidu Sanderasagran |
title |
REAL-TIME COMPUTATIONAL FLUID DYNAMICS FLOW RESPONSE VISUALISATION AND INTERACTION APPLICATION BASED ON AUGMENTED REALITY |
title_short |
REAL-TIME COMPUTATIONAL FLUID DYNAMICS FLOW RESPONSE VISUALISATION AND INTERACTION APPLICATION BASED ON AUGMENTED REALITY |
title_full |
REAL-TIME COMPUTATIONAL FLUID DYNAMICS FLOW RESPONSE VISUALISATION AND INTERACTION APPLICATION BASED ON AUGMENTED REALITY |
title_fullStr |
REAL-TIME COMPUTATIONAL FLUID DYNAMICS FLOW RESPONSE VISUALISATION AND INTERACTION APPLICATION BASED ON AUGMENTED REALITY |
title_full_unstemmed |
REAL-TIME COMPUTATIONAL FLUID DYNAMICS FLOW RESPONSE VISUALISATION AND INTERACTION APPLICATION BASED ON AUGMENTED REALITY |
title_sort |
real-time computational fluid dynamics flow response visualisation and interaction application based on augmented reality |
publisher |
UUM Press |
publishDate |
2020 |
url |
https://doaj.org/article/15ed4d2d40904dab9dd185c7cb15a48f |
work_keys_str_mv |
AT ashwindrannaidusanderasagran realtimecomputationalfluiddynamicsflowresponsevisualisationandinteractionapplicationbasedonaugmentedreality AT azizuddinabdaziz realtimecomputationalfluiddynamicsflowresponsevisualisationandinteractionapplicationbasedonaugmentedreality AT daingmohamadnafizdaingidris realtimecomputationalfluiddynamicsflowresponsevisualisationandinteractionapplicationbasedonaugmentedreality |
_version_ |
1718428477896523776 |