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THERMODYNAMICS, HEAT TRANSFER, AND FLUID FLOW, …

Department of EnergyFundamentals HandbookTHERMODYNAMICS, HEAT TRANSFER, AND FLUID FLOW, Module 3 FLUID FlowblankFluid FlowTABLE OF CONTENTSTABLE OF CONTENTSLIST OF ivLIST OF viiCONTINUITY 1 Properties of 3 Relationship Between Depth and 3 Pascal s 7 Control 8 Volumetric Flow 9 Mass Flow 9 Conservation of 10 Steady-State 10 Continuity 16 LAMINAR AND TURBULENT 17 Flow 17 Laminar 17 Turbulent 17 Flow velocity 18 Average (Bulk) 19 Ideal 19 Reynolds 20 Rev. 0 Page iHT-03 TABLE OF CONTENTSF luid FlowTABLE OF CONTENTS (Cont.)BERNOULLI S 21 General Energy 21 Simplified Bernoulli 23 Energy Conversions in FLUID 23 Restrictions on the Simplified Bernoulli 25 Extended 25 Application of Bernoulli s Equation to a 30 HEAD 31 Head 31 Friction 31 Darcy s 32 Minor 34 Equivalent Piping 36 NATURAL 37 Forced and Natural 37 Thermal Driving 37 Conditions Required for Natural 38 Example of Natural Circulation 39 Flow Rate and Temperature 40 TWO-PHASE FLUID 41 Two-Phase FLUID 41 Flow 42 Pipe 43 Water 43 Pressure 43 Steam 45 Operational 46HT-03 Page iiR

1.8 CALCULATE the fluid velocity or flow rate in a specified fluid system using the continuity equation. 1.9 DESCRIBE the characteristics and flow velocity profiles of laminar flow and turbulent flow. 1.10 DEFINE the property of viscosity. 1.11 DESCRIBE how the viscosity of a fluid varies with temperature.

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