The third edition presents new developments, including losses in tank walls and a simpler method to calculate temperatures and flows in directed flow windings, and a chapter on optimization to achieve a low cost transformer design. The book includes a section on correcting the linear impedance boundary method for non-linear materials.
The third edition presents new developments, including losses in tank walls and a simpler method to calculate temperatures and flows in directed flow windings, and a chapter on optimization to achieve a low cost transformer design. The book includes a section on correcting the linear impedance boundary method for non-linear materials.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Robert M. Del Vecchio, Bertrand Poulin, Pierre T. Feghali, Dilipkumar Shah, Rajendra Ahuja
Inhaltsangabe
INTRODUCTION. MAGNETISM AND RELATED CORE ISSUES. CIRCUIT MODEL OF A TWO WINDING TRANSFORMER WITH CORE. REACTANCE AND LEAKAGE REACTANCE CALCULATIONS. PHASORS, THREE PHASE CONNECTIONS, AND SYMMETRICAL COMPONENTS. FAULT CURRENT ANALYSIS. PHASE SHIFTING AND ZIG-ZAG TRANSFORMERS. MULTI-TERMINAL THREE PHASE TRANSFORMER MODEL. RABINS' METHOD FOR CALCULATING LEAKAGE FIELDS, INDUCTANCES, AND FORCES IN IRON CORE TRANSFORMERS, INCLUDING AIR CORE METHODS. MECHANICAL DESIGN. ELECTRIC FIELD CALCULATIONS. CAPACITANCE CALCULATIONS. VOLTAGE BREAKDOWN THEORY AND PRACTICE. HIGH VOLTAGE IMPULSE ANALYSIS AND TESTING. NO-LOAD AND LOAD LOSSES. STRAY LOSSES FROM 3D FINITE ELEMENT ANALYSIS. THERMAL DESIGN. CONSTRAINED NONLINEAR OPTIIZATION WITH APPLICATION TO TRANSFORMER DESIGN. REFERENCES. INDEX.
INTRODUCTION. MAGNETISM AND RELATED CORE ISSUES. CIRCUIT MODEL OF A TWO WINDING TRANSFORMER WITH CORE. REACTANCE AND LEAKAGE REACTANCE CALCULATIONS. PHASORS, THREE PHASE CONNECTIONS, AND SYMMETRICAL COMPONENTS. FAULT CURRENT ANALYSIS. PHASE SHIFTING AND ZIG-ZAG TRANSFORMERS. MULTI-TERMINAL THREE PHASE TRANSFORMER MODEL. RABINS' METHOD FOR CALCULATING LEAKAGE FIELDS, INDUCTANCES, AND FORCES IN IRON CORE TRANSFORMERS, INCLUDING AIR CORE METHODS. MECHANICAL DESIGN. ELECTRIC FIELD CALCULATIONS. CAPACITANCE CALCULATIONS. VOLTAGE BREAKDOWN THEORY AND PRACTICE. HIGH VOLTAGE IMPULSE ANALYSIS AND TESTING. NO-LOAD AND LOAD LOSSES. STRAY LOSSES FROM 3D FINITE ELEMENT ANALYSIS. THERMAL DESIGN. CONSTRAINED NONLINEAR OPTIIZATION WITH APPLICATION TO TRANSFORMER DESIGN. REFERENCES. INDEX.
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