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20152020
most citedSmall-scale resolving simulations of the turbulent mixing in confined planar jets using one-dimensional turbulence

17 citations · 19 across the 4 of their papers we have counts for

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physics.flu-dyn2020

Predictive modeling of passive scalar transfer to a wall using stochastic one-dimensional turbulence

Marten Klein, Heiko Schmidt

Passive scalars in turbulent channel flows are investigated as canonical problem for heat and mass transfer in turbulent boundary-layer flows. The one-dimensional turbulence model…

physics.flu-dyn2020

On a lower-order framework for jet noise prediction based on one-dimensional turbulence

Sparsh Sharma, Marten Klein, Heiko Schmidt +1

Noise prediction requires the resolution of relevant acoustic sources on all scales of a turbulent flow. High-resolution direct numerical and large-eddy simulation would be ideal b…

physics.flu-dyn2019

The transition to the ultimate regime of thermal convection from a stochastic one-dimensional turbulence perspective

Marten Klein, Heiko Schmidt

The Rayleigh number dependence of the Nusselt number in turbulent Rayleigh--Bénard convection is numerically investigated for a moderate and low Prandtl number,

physics.flu-dyn201917 cited

Small-scale resolving simulations of the turbulent mixing in confined planar jets using one-dimensional turbulence

Marten Klein, Christian Zenker, Heiko Schmidt

Small-scale effects of turbulent mixing are numerically investigated by applying the map-based, stochastic, one-dimensional turbulence (ODT) model to confined planar jets. The mode…

physics.flu-dyn2018

IMEX based Multi-Scale Time Advancement in ODTLES

Christoph Glawe, Juan A. Medina M., Heiko Schmidt

In this paper we overcome a key problem in an otherwise highly potential approach to study turbulent flows, ODTLES (One-Dimensional Turbulence Large Eddy Simulation). From a method…

physics.flu-dyn2015

XLES Part II: From Extended Large Eddy Simulation to ODTLES

Christoph Glawe, Heiko Schmidt, Alan R. Kerstein +1

In turbulence research and flow applications, turbulence models like RaNS (Reynolds averaged Navier-Stokes) models and LES (Large Eddy Simulation) are used. Both models filter the…