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Transformer Design Principles, Third Edition (Paperback, 3rd edition): Robert M. Del Vecchio, Bertrand Poulin, Rajendra Ahuja,... Transformer Design Principles, Third Edition (Paperback, 3rd edition)
Robert M. Del Vecchio, Bertrand Poulin, Rajendra Ahuja, Robert Del Vecchio, Pierre Feghali, …
R2,138 Discovery Miles 21 380 Ships in 10 - 15 working days

In the newest edition, the reader will learn the basics of transformer design, starting from fundamental principles and ending with advanced model simulations. The electrical, mechanical, and thermal considerations that go into the design of a transformer are discussed with useful design formulas, which are used to ensure that the transformer will operate without overheating and survive various stressful events, such as a lightning strike or a short circuit event. This new edition includes a section on how to correct the linear impedance boundary method for non-linear materials and a simpler method to calculate temperatures and flows in windings with directed flow cooling, using graph theory. It also includes a chapter on optimization with practical suggestions on achieving the lowest cost design with constraints.

Transformer Design Principles, Third Edition (Hardcover, 3rd edition): Robert M. Del Vecchio, Bertrand Poulin, Rajendra Ahuja,... Transformer Design Principles, Third Edition (Hardcover, 3rd edition)
Robert M. Del Vecchio, Bertrand Poulin, Rajendra Ahuja, Robert Del Vecchio, Pierre Feghali, …
R5,139 Discovery Miles 51 390 Ships in 10 - 15 working days

In the newest edition, the reader will learn the basics of transformer design, starting from fundamental principles and ending with advanced model simulations. The electrical, mechanical, and thermal considerations that go into the design of a transformer are discussed with useful design formulas, which are used to ensure that the transformer will operate without overheating and survive various stressful events, such as a lightning strike or a short circuit event. This new edition includes a section on how to correct the linear impedance boundary method for non-linear materials and a simpler method to calculate temperatures and flows in windings with directed flow cooling, using graph theory. It also includes a chapter on optimization with practical suggestions on achieving the lowest cost design with constraints.

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