About: Computationally inexpensive method to determine size of gas-liquid interfacial area of rivulet spreading on inclined wetted plate     Goto   Sponge   NotDistinct   Permalink

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  • Today, the size of the free interface of a liquid objects spreading on substrates can be obtained through various CFD methods. However, all these methods are computationally very demanding, thus not very applicable in the day-to-day engineering practice. In the presented paper, a computationally inexpensive method to determine the size of the gas-liquid interface of the rivulet flowing down an inclined, wetted plate was derived and verified against the experimental data.
  • Today, the size of the free interface of a liquid objects spreading on substrates can be obtained through various CFD methods. However, all these methods are computationally very demanding, thus not very applicable in the day-to-day engineering practice. In the presented paper, a computationally inexpensive method to determine the size of the gas-liquid interface of the rivulet flowing down an inclined, wetted plate was derived and verified against the experimental data. (en)
Title
  • Computationally inexpensive method to determine size of gas-liquid interfacial area of rivulet spreading on inclined wetted plate
  • Computationally inexpensive method to determine size of gas-liquid interfacial area of rivulet spreading on inclined wetted plate (en)
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  • Computationally inexpensive method to determine size of gas-liquid interfacial area of rivulet spreading on inclined wetted plate
  • Computationally inexpensive method to determine size of gas-liquid interfacial area of rivulet spreading on inclined wetted plate (en)
skos:notation
  • RIV/60461373:22340/14:43897749!RIV15-MSM-22340___
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  • RIV/60461373:22340/14:43897749
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  • liquid spreading; fluid dynamics; rivulet (en)
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  • Isoz, M.: Computationally inexpensive method to determine size of gas-liquid interfacial area of rivulet spreading on inclined wetted plate, Proceedings of conference
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  • Isoz, Martin
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number of pages
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  • Institute of Thermomechanics AS CR, v.v.i.
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  • 978-80-87012-51-2
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  • 22340
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