Balance of Liquid-phase Turbulence Kinetic Energy Equation for Bubble-train Flow
スポンサーリンク
概要
- 論文の詳細を見る
In this paper the investigation of bubble-induced turbulence using direct numerical simulation (DNS) of bubbly two-phase flow is reported. DNS computations are performed for a bubble-driven liquid motion induced by a regular train of ellipsoidal bubbles rising through an initially stagnant liquid within a plane vertical channel. DNS data are used to evaluate balance terms in the balance equation for the liquid phase turbulence kinetic energy. The evaluation comprises single-phase-like terms (diffusion, dissipation and production) as well as the interfacial term. Special emphasis is placed on the procedure for evaluation of interfacial quantities. Quantitative analysis of the balance equation for the liquid phase turbulence kinetic energy shows the importance of the interfacial term which is the only source term. The DNS results are further used to validate closure assumptions employed in modelling of the liquid phase turbulence kinetic energy transport in gas–liquid bubbly flows. In this context, the performance of respective closure relations in the transport equation for liquid turbulence kinetic energy within the two-phase k–ε and the two-phase k–l model is evaluated.
- 2004-03-25
著者
-
Worner Martin
Forschungszentrum Karlsruhe Institut Fur Reaktorsicherheit
-
Cacuci Dan
Forschungszentrum Karlsruhe Institut Fur Reaktorsicherheit
-
ILIC Milica
Forschungszentrum Karlsruhe,Institut fur Reaktorsicherheit
-
Ilic Milica
Forschungszentrum Karlsruhe Institut Fur Reaktorsicherheit
関連論文
- Balance of Liquid-phase Turbulence Kinetic Energy Equation for Bubble-train Flow
- ICONE11-36418 QUANTITATIVE ANALYSIS OF LIQUID PHASE TURBULENCE KINETIC ENERGY EQUATION USING DNS DATA OF BUBBLE-TRAIN FLOW