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Engineering - Laminar Flow Theory

Description

Book Synopsis: Fluid mechanics is one of the greatest accomplishments of classical physics. The Navier-Stokes equations, first derived in the eighteenth century, serve as an accurate mathematical model with which to describe the flow of a broad class of real fluids. Not only is the subject of interest to mathematicians and physicists, but it is also indispensable to mechanical, aeronautical, and chemical engineers, who have to apply the equations to real-world examples, such as the flow of air around an aircraft wing or the motion of liquid droplets in a suspension. In this book, which first appeared in a comprehensive collection of essays entitled The Theory of Laminar Flows (Princeton, 1964), P. A. Lagerstrom imparts the essential theoretical framework of laminar flows to the reader. A concise and elegant description, Lagerstrom's work remains a model piece of writing and has much to offer today's reader seeking an introduction to the flow of nonturbulent fluids. Beginning with the conservation laws that result in the equation of continuity, the Navier-Stokes equation, and the energy transport equation, Lagerstrom moves on to consider viscous waves, low Reynolds-number approximations such as Stokes flow and the Oseen equations, and then high Reynolds-number approximations that are used to describe boundary layers, jets, and wakes. Finally, he examines some compressibility effects, such as those that occur in the laminar boundary layer around a flat plate, both with and without a pressure gradient.

Details

Discover the groundbreaking principles of fluid mechanics with our Laminar Flow Theory Book. Delve into the fascinating world of classical physics and witness the magic behind the flow of real fluids. Whether you're a mathematician, physicist, or engineer, this book is an absolute must-have in your collection. With the Navier-Stokes equations as the cornerstone, you will learn how to apply mathematical models to real-world examples, such as determining the air flow around an aircraft wing or understanding the movement of liquid droplets in suspensions.

Authored by P. A. Lagerstrom, a renowned authority in the field, this book offers a concise and elegant description of the essential theoretical framework of laminar flows. Lagerstrom's work, which initially gained acclaim in the influential collection of essays, The Theory of Laminar Flows (Princeton, 1964), remains a timeless masterpiece. Its relevance and value endure, making it a perfect choice for those seeking an introduction to the mesmerizing world of nonturbulent fluid flow.

Get ready to explore the conservation laws underlying the equation of continuity, the remarkable Navier-Stokes equation, and the energy transport equation. Lagerstrom expertly guides you through the intricacies of viscous waves, low Reynolds-number approximations such as Stokes flow and the Oseen equations, and the complexities of high Reynolds-number approximations that define boundary layers, jets, and wakes. To top it off, Lagerstrom also sheds light on compressibility effects, providing you with invaluable insights into the laminar boundary layer around flat plates, both with and without pressure gradients.

Don't miss out on this extraordinary opportunity to enhance your knowledge of fluid mechanics. Let Laminar Flow Theory Book empower you with the skills and theoretical foundation necessary to excel in your chosen field. Embrace the intellectual challenge it presents and embark on a journey of discovery unlike any other.

Ready to take your understanding of fluid mechanics to new heights? Click here to claim your copy now!

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