15th European Turbulence Conference 2015
August 25-28th, 2015, Delft, The Netherlands
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Turbulence Modeling for Oscillatory Pipe Flow


Go-down etc15 Tracking Number 117

Presentation:
Session: Wall-bounded flows 4
Room: Room B
Session start: 10:30 Thu 27 Aug 2015

Alexander Shapiro   salesh81@gmail.com
Affifliation:

David Greenblatt   davidg@technion.ac.il
Affifliation:

Gershon Grossman   grossmng@tx.technion.ac.il
Affifliation:


Topics: - Wall bounded flows, - Large eddy simulation and related techniques

Abstract:

Oscillating pipe flows, with zero mean velocity, are common in engineering systems and particularly in Stirling-based engines and heat pumps, e.g. pulse-tube cryogenic coolers. These flows are particularly challenging to model because their flow state depends on both the Reynolds number and the dimensionless frequency or Womerlsey number. A central challenge in modeling these systems is that the Reynolds number varies greatly within the cycle, often crossing from laminar to turbulent flow regimes. Indeed, flows that have super-critical Reynolds numbers may pass between states a total of four times; two laminar-turbulent transitions and two turbulent-laminar transitions. Contrary to a steady flow in which the transition between the laminar and the turbulent regimes is affected only by the Reynolds number, for oscillating flow the transition is affected by a combination of Reos and a dimensionless frequency-based number such as Womersley (Wo). The objective of this work is to develop and validate a computational method that solves the incompressible oscillating flow equations for different combinations of Reos and Wo.