Search Results - "Renze, P."

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  1. 1

    Empirical drag closure for polydisperse gas–liquid systems in bubbly flow regime: Bubble swarm and micro-scale turbulence by Buffo, A., Vanni, M., Renze, P., Marchisio, D.L.

    Published in Chemical engineering research & design (01-09-2016)
    “…•A CFD-PBM model is used to describe the bubble polydispersity.•A novel empirical drag closure is proposed and tested on six different test cases.•Bubble swarm…”
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    Journal Article
  2. 2

    Large-eddy simulation of film cooling flows at density gradients by Renze, P., Schröder, W., Meinke, M.

    “…The present paper investigates the impact of the velocity and density ratio on the turbulent mixing process in gas turbine blade film cooling. A cooling fluid…”
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    Journal Article
  3. 3

    Prediction of gas density effects on bubbly flow hydrodynamics: New insights through an approach combining population balance models and computational fluid dynamics by Hecht, K. J., Krause, U., Hofinger, J., Bey, O., Nilles, M., Renze, P.

    Published in AIChE journal (01-10-2018)
    “…Detailed measurements and computational fluid dynamics (CFD) investigation of the hydrodynamics in a bubble column containing internal features causing flow…”
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    Journal Article
  4. 4
  5. 5

    Large-eddy Simulation of Film Cooling Flows with Variable Density Jets by Renze, P., Schröder, W., Meinke, M.

    Published in Flow, turbulence and combustion (2008)
    “…The present paper investigates the impact of the velocity and density ratio on the turbulent mixing process in gas turbine blade film cooling. A cooling fluid…”
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    Journal Article Conference Proceeding
  6. 6

    Noise prediction for a turbulent jet using different hybrid methods by Gröschel, E., Schröder, W., Renze, P., Meinke, M., Comte, P.

    Published in Computers & fluids (01-05-2008)
    “…The acoustic field of a cold single stream jet at Mach number 0.9 and Reynolds number 3600 is determined via computational aeroacoustics (CAA) methods. The jet…”
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    Journal Article Conference Proceeding
  7. 7

    Experimental and Numerical Investigation of Pressure Swirl Atomizers by Renze, P., Heinen, K., Schönherr, M.

    Published in Chemical engineering & technology (01-07-2011)
    “…The prediction of droplet size distributions for atomization nozzles is important for process design and improvement of industrial spraying processes. However,…”
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    Journal Article