The authors' innovative research ideas in power plant control are presented in this book. This book focuses on 1) cognition and reconstruction of the temperature field; 2) intelligent setting and learning of power plants; 3) energy efficiency optimization and intelligent control for power plants, and so on, using historical power plant operation data and creative methods such as reconstruction of the combustion field, deep reinforcement learning, and networked collaborative control. It could help researchers, industrial engineers, and graduate students in the areas of signal detection, image processing, and control engineering.
This book introduces the basic theoretical knowledge of rock mechanics and its application in petroleum engineering. It covers the gamut of the formulas and calculations for petroleum engineers that have been compiled over decades, while others are meant to help guide the engineer through some of the more recent breakthroughs in the industry’s technology. The topics are introduced at a level that should give a good basic understanding of the subject: • Basic concepts of stress and strain • Experimental method of rock mechanics • Rock deformation and strength characteristics • Rock strength failure criterion • In situ stress state • Application method of rock mechanics theory in the field of wellbore stability • Application method of rock mechanics theory in the field of sand production • Application method of rock mechanics theory in the field of hydraulic fracturing. This textbook contains abundant figures, illustrations, and tables, providing valuable examples and exercises. Key Features and Benefits for the Reader: • Helps in understanding the basic concepts of rock mechanics • Applies rock mechanics theory and method to various fields of petroleum engineering • Includes a large number of calculations, tables, and equations that are very useful for petroleum engineers • Presents new and updated sections in rock mechanics of petroleum engineering.
This book introduces readers to interfacial reactions in confinement on stimuli-responsive homopolymer and diblock copolymer films. It also includes investigations concerning the immobilization of (bio)molecules and the fabrication of biomolecular patterns by reactive microcontact printing on these reactive polymer films. In turn, the book takes advantage of the microphase separation of diblock copolymer films to study the fabrication of nanopatterns, which could contribute to the future development of a model system that allows us to area-selectively deposit and address (bio)molecules. Given its scope, the book broadens readers’ perspective on the microfabrication of stimuli-responsive polymers.
The authors' innovative research ideas in power plant control are presented in this book. This book focuses on 1) cognition and reconstruction of the temperature field; 2) intelligent setting and learning of power plants; 3) energy efficiency optimization and intelligent control for power plants, and so on, using historical power plant operation data and creative methods such as reconstruction of the combustion field, deep reinforcement learning, and networked collaborative control. It could help researchers, industrial engineers, and graduate students in the areas of signal detection, image processing, and control engineering.
This book introduces the basic theoretical knowledge of rock mechanics and its application in petroleum engineering. It covers the gamut of the formulas and calculations for petroleum engineers that have been compiled over decades, while others are meant to help guide the engineer through some of the more recent breakthroughs in the industry’s technology. The topics are introduced at a level that should give a good basic understanding of the subject: • Basic concepts of stress and strain • Experimental method of rock mechanics • Rock deformation and strength characteristics • Rock strength failure criterion • In situ stress state • Application method of rock mechanics theory in the field of wellbore stability • Application method of rock mechanics theory in the field of sand production • Application method of rock mechanics theory in the field of hydraulic fracturing. This textbook contains abundant figures, illustrations, and tables, providing valuable examples and exercises. Key Features and Benefits for the Reader: • Helps in understanding the basic concepts of rock mechanics • Applies rock mechanics theory and method to various fields of petroleum engineering • Includes a large number of calculations, tables, and equations that are very useful for petroleum engineers • Presents new and updated sections in rock mechanics of petroleum engineering.
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