Parasitic phenomena in the dynamics of industrial devices

Parasitic phenomena in the dynamics of industrial devices

390 Pages · · 8.74 MB · 586 Downloads· language English
Published By publisher of ebook CRC Press
File Name: Parasitic-phenomena-in-the-dynamics.pdf
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Introduction to Parasitic phenomena in the dynamics of industrial devices

“Parasitic Phenomena in the Dynamics of Industrial Devices” is a book that discusses the various parasitic effects that can impact the performance of machines. The authors have provided a comprehensive overview of the different types of parasitic effects, with an emphasis on the practical aspects of their application to real-world scenarios. In this review, we will examine the main highlights of the book.

Key Concepts of Parasitic phenomena in the dynamics of industrial devices

The book covers a range of parasitic effects that can impact machine performance, including parasitic capacitance, inductance, and resistance. The authors also delve into the concept of skin effect, proximity effect, and eddy currents, which are important to understand when dealing with electrical machines. Mechanical losses, thermal losses, and magnetic saturation are also discuss in detail, with a focus on their impact on machine performance.

Application to Actual Cases

One of the strengths of this book is its emphasis on the practical application of parasitic effects to actual cases. The authors provide numerous examples of how parasitic effects can impact the performance of machines in various industries. They also provide practical guidance on how to analyze and mitigate the impact of parasitic effects on machine performance. This makes the book an excellent resource for engineers and technicians who work with industrial machines.

Clear and Concise Explanations

The authors have done an excellent job of explaining complex concepts in a clear and concise manner. The book is well-organize, with each chapter covering a specific parasitic effect. The authors provide a definition of each parasitic effect, along with its main formulas and equations. They also provide practical examples to illustrate the impact of each parasitic effect on machine performance. This makes the book accessible to readers with different levels of technical expertise.

Comprehensive Coverage

Another strength of this book is its comprehensive coverage of different parasitic effects. The authors cover a range of parasitic effects that are relevant to different types of machines and industries. This makes the book a valuable resource for engineers and technicians who work with different types of machines. The book also covers some parasitic effects that are not typically consider in machine design, but which can still impact machine performance. This makes it a useful reference for identifying and analyzing unexpected issues that can arise during machine operation.

Conclusion

“Parasitic Phenomena in the Dynamics of Industrial Devices” is an excellent resource for engineers. Technicians who work with industrial machines. The book provides a comprehensive overview of different parasitic effects. That can impact machine performance, with an emphasis on their practical application to actual cases. The authors have done an excellent job of explaining complex concepts in a clear and concise manner. Making the book accessible to readers with different levels of technical expertise. The book is well-organize, with each chapter covering a specific parasitic effect. Making it easy to navigate and use as a reference. Overall, this book is a valuable resource for anyone who wants to better understand the impact of parasitic effects on machine performance.