Teplofizika vysokikh temperatur
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Teplofizika vysokikh temperatur, 2018, Volume 56, Issue 2, paper published in the English version journal (Mi tvt10679)  

This article is cited in 4 scientific papers (total in 4 papers)

Papers published in the English version of the journal
Short Communications

CFD simulation of twin thermoacoustic prime mover for binary gas mixtures

N. M. Hariharana, P. Sivashanmugamb

a Department of Biotechnology, Sree Sastha Institute of Engineering and Technology, Chembarambakkam, Chennai, 600123 India
b Department of Chemical Engineering, National Institute of Technology, Tiruchirapalli, 620015 India
Citations (4)
References:
Abstract: The objective of the present simulation is to analyze the performance of a twin thermoacoustic prime mover using CFD in terms of frequency and pressure amplitude. Pure fluid media such as helium, argon, nitrogen and their binary gas mixtures are studied at a constant operating pressure of 5 bar. The GAMBIT 2.3.16 pre-processor is used for creating the geometry of twin prime mover and the CFD package FLUENT 6.3 is used for simulating the device with different combinations of gas mixtures. The geometrical parameters and temperature gradients across the stack are kept constant throughout the simulation. It is found that the pressure amplitude of the thermoacoustic oscillations is higher for pure argon, whereas the frequency of the oscillations is higher for helium $(495$ Hz$)$ rather than other gases and mixtures.
Received: 08.08.2016
Accepted: 08.11.2016
English version:
High Temperature, 2018, Volume 56, Issue 2, Pages 309–311
DOI: https://doi.org/10.1134/S0018151X18020232
Bibliographic databases:
Document Type: Article
Language: English
Citation: N. M. Hariharan, P. Sivashanmugam, “CFD simulation of twin thermoacoustic prime mover for binary gas mixtures”, High Temperature, 56:2 (2018), 309–311
Citation in format AMSBIB
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\by N. M. Hariharan, P. Sivashanmugam
\paper CFD simulation of twin thermoacoustic prime mover for binary gas mixtures
\jour High Temperature
\yr 2018
\vol 56
\issue 2
\pages 309--311
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\crossref{https://doi.org/10.1134/S0018151X18020232}
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\scopus{https://www.scopus.com/record/display.url?origin=inward&eid=2-s2.0-85047209021}
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  • This publication is cited in the following 4 articles:
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
    Teplofizika vysokikh temperatur Teplofizika vysokikh temperatur
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    Abstract page:174
    References:33
     
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