Abstract
We perform DNS of passive scalar transport in low Reynolds number turbulent channel flow at Schmidt numbers up to Sc = 49. The high resolutions required to resolve the scalar concentration fields at such Schmidt numbers are achieved by a hierarchical algorithm in which the scalar fields only are solved on the grid dictated by the Batchelor scale. The velocity fields are solved on coarser grids and prolonged by a conservative interpolation to the fine grid. The trends observed so far at lower Schmidt numbers Sc ≤ 10 are confirmed, i.e. the mean scalar gradient steepens at the wall with increasing Schmidt number, the peaks of turbulent quantities increase and move towards the wall. The instantaneous scalar fields show a dramatic change. Observable structures get longer and thinner which is connected with the occurrence of steeper gradients, but the wall concentrations penetrate less deeply into the plateau in the core of the channel.
| Original language | English |
|---|---|
| Pages (from-to) | 289-292 |
| Number of pages | 4 |
| Journal | Proceedings of the International Symposium on Turbulence, Heat and Mass Transfer |
| Volume | 2006-September |
| DOIs | |
| State | Published - 2006 |
| Event | 2006 International Symposium On Turbulence, Heat and Mass Transfer, THMT 2006 - Dubrovnik, Croatia Duration: 25 Sep 2006 → 29 Sep 2006 |
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