To ensure sufficient steam sterilization, preheating of the sterilizer walls is required. Here, the heating process with steam from inside the pressure chamber is investigated using a three-phase CFD model, which has proven to be well suited for ...

Artikel
Using Numerical Dissipation Rate and Viscosity to Assess Turbulence‐Related Data Accuracy – Part 2: Results
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The study focuses on the assessment of accuracy of turbulence-related data from computational fluid dynamics simulations using effective numerical dissipation rate and effective numerical viscosity. The experimental setup was discussed in the first paper of the two-part series. This second paper reports the results of the numerical experiments.
Abstract
This is the second part of a two-part paper focusing on the assessment of accuracy of turbulence-related data from CFD simulations using effective numerical dissipation rate and effective numerical viscosity. Experimental setup has been discussed in the first part of this series. Here, the relevant solution data obtained via CFD are compared to the values from laser Doppler anemometry measurements, and it is studied whether the accuracy of such data can be assessed using the two mentioned quantities. The overall outcome is that although judging mesh quality generally is possible, alone the two quantities are insufficient to draw conclusions regarding the actual solution data.
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