About: Variational Principle based Modeling of Film Blowing Process for LDPE Considering Non-Isothermal Conditions and Non-Newtonian Polymer Melt Behavior     Goto   Sponge   NotDistinct   Permalink

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  • In this work, film blowing process analysis has been performed theoretically by using minimum energy approach for non-Newtonian polymer melts considering non-isothermal processing conditions and the obtained predictions were compared with both, theoretical and experimental data (bubble shape, velocity and temperature profiles) taken from the open literature. It has been found that model predictions are in very good agreement with the corresponding experimental data.
  • In this work, film blowing process analysis has been performed theoretically by using minimum energy approach for non-Newtonian polymer melts considering non-isothermal processing conditions and the obtained predictions were compared with both, theoretical and experimental data (bubble shape, velocity and temperature profiles) taken from the open literature. It has been found that model predictions are in very good agreement with the corresponding experimental data. (en)
Title
  • Variational Principle based Modeling of Film Blowing Process for LDPE Considering Non-Isothermal Conditions and Non-Newtonian Polymer Melt Behavior
  • Variational Principle based Modeling of Film Blowing Process for LDPE Considering Non-Isothermal Conditions and Non-Newtonian Polymer Melt Behavior (en)
skos:prefLabel
  • Variational Principle based Modeling of Film Blowing Process for LDPE Considering Non-Isothermal Conditions and Non-Newtonian Polymer Melt Behavior
  • Variational Principle based Modeling of Film Blowing Process for LDPE Considering Non-Isothermal Conditions and Non-Newtonian Polymer Melt Behavior (en)
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  • RIV/70883521:28110/12:43868851!RIV13-MSM-28110___
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  • P(ED2.1.00/03.0111), P(GAP108/10/1325)
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  • 177043
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  • RIV/70883521:28110/12:43868851
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  • Mathematical modeling, Variational principle, Numerical analysis, Non-isothermal film blowing, Non-Newtonian fluids, Films (en)
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  • [63FDFCB38908]
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  • Harvard
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  • RECENT ADVANCES in FLUID MECHANICS, HEAT & MASS TRANSFER and BIOLOGY
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  • Zatloukal, Martin
  • Kolařík, Roman
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number of pages
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  • WSEAS press
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  • 978-1-61804-065-7
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  • 28110
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