COMPARISON OF EXPERIMENTAL RESULTS TO CFD MODELS FOR BLENDING IN A TANK USING DUAL OPPOSING JETS (open access)

COMPARISON OF EXPERIMENTAL RESULTS TO CFD MODELS FOR BLENDING IN A TANK USING DUAL OPPOSING JETS

Research has been completed in a pilot scale, eight foot diameter tank to investigate blending, using a pump with dual opposing jets. The jets re-circulate fluids in the tank to promote blending when fluids are added to the tank. Different jet diameters and different horizontal and vertical orientations of the jets were investigated. In all, eighty five tests were performed both in a tank without internal obstructions and a tank with vertical obstructions similar to a tube bank in a heat exchanger. These obstructions provided scale models of several miles of two inch diameter, serpentine, vertical cooling coils below the liquid surface for a full scale, 1.3 million gallon, liquid radioactive waste storage tank. Two types of tests were performed. One type of test used a tracer fluid, which was homogeneously blended into solution. Data were statistically evaluated to determine blending times for solutions of different density and viscosity, and the blending times were successfully compared to computational fluid dynamics (CFD) models. The other type of test blended solutions of different viscosity. For example, in one test a half tank of water was added to a half tank of a more viscous, concentrated salt solution. In this case, the fluid …
Date: August 7, 2011
Creator: Leishear, R.
System: The UNT Digital Library
Bleeding time and velocity variations during blending in a tank using dual opposing jets (open access)

Bleeding time and velocity variations during blending in a tank using dual opposing jets

None
Date: August 7, 2011
Creator: Leishear, R.
System: The UNT Digital Library
Development of a 3D Surface Mapping System to Inspect Capsule Fill-Tube Assemblies used in Laser-Driven Fusion Targets (open access)

Development of a 3D Surface Mapping System to Inspect Capsule Fill-Tube Assemblies used in Laser-Driven Fusion Targets

None
Date: August 7, 2011
Creator: Buice, E. S.; Alger, E. T.; Antipa, N. A.; Bhandarkar, S. D.; Biesiada, T. A.; Conder, A. D. et al.
System: The UNT Digital Library