FEA workflow for pump casings and impellers under fluid loads
This skill provides a systematic approach to performing Finite Element Analysis (FEA) on pump components, specifically casings and impellers under fluid loads.
Geometry Preparation:
Material Definition:
Critical Parameters:
Pressure Loads:
Centrifugal Forces (Impellers):
Hydraulic Forces:
Thermal Loads:
Casing Constraints:
Impeller Constraints:
Connection Types:
Element Types:
Mesh Quality Criteria:
Mesh Refinement:
Recommended Element Sizes:
Linear Static Analysis:
Nonlinear Analysis:
Modal Analysis:
Harmonic/Transient Analysis:
Fatigue Analysis:
Solver Settings:
Primary Results:
Von Mises Stress (σ_vm):
Principal Stresses (σ₁, σ₂, σ₃):
Deformation:
Safety Factor:
Secondary Results:
Shear Stress:
Strain:
Contact Pressure:
Critical Review Checklist:
Design Codes and Standards:
Required Safety Factors:
Static Loads:
Fatigue Loads:
Safety Factor Calculation:
For ductile materials:
FOS_yield = σ_y / σ_vm
FOS_ultimate = σ_u / σ_vm
Design FOS = min(FOS_yield, FOS_ultimate)
For brittle materials:
FOS = σ_u / σ₁ (based on maximum principal stress)
Material-Specific Adjustments:
Analysis Objectives:
Critical Regions:
Load Cases:
Acceptance Criteria:
Common Failure Modes:
Analysis Objectives:
Critical Regions:
Load Cases:
Stress Components:
Centrifugal Stress (Hoop Stress):
σ_hoop = ρω²r² (for thin disk)