Download - Thermalhydraulics Flows with TransAT - Thermal Stripping- Sep. 2014 ASCOMP [email protected]
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LES of Thermal stipping in a T-junction
Flow visualization test in the Vattenfall T-junction test facility (Courtesy from Älvkarleby Laboratory, Vattenfall R&D). • LDV meas. (Westin et al.)• Re = 1.9E5• DT= 15 Deg.
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BFC grid (1.600.000 nodes)
LES of Thermal stipping in a T-junction
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LES of Thermal stipping in a T-junction
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Time signals results
LES of Thermal stipping in a T-junction
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• Time-averaged velocities: LES versus experiment
Horizontal profile, L/D=1.6 Horizontal profile, L/D=3.6
Vertical profile, L/D=1.6 Vertical profile, L/D=3.6
LES of Thermal stipping in a T-junction
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• Reynolds stresses: LES versus experiment
Horizontal profile, L/D=1.6 Horizontal profile, L/D=3.6
Vertical profile, L/D=1.6 Vertical profile, L/D=3.6
LES of Thermal stipping in a T-junction
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• Mean temperatures and RMS temperatures
Angle of 0° (Top of the pipe) Angle of 180° (Bottom of the pipe)
Angle of 90° Angle of 270°
LES of Thermal stipping in a T-junction
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LES of Thermal stipping in a channel junction
Schematic diagram of the test channel Hirota et al. (2010)
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LES of Thermal stipping in a channel junction
Time average velocity profiles at various locations of the horizontal channel (X/B=0, 1 and 2)
R.M.S. profiles at various locations of the channel (X/B=0, 1 and 2)
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Time average and R.M.S. temperature profiles at various locations of the channel (X/B=0, 1 and 2)
LES of Thermal stipping in a channel junction