2009Unpublished venueRequires access

Energy and Momentum Principles

Stephen Dingman

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Abstract

Abstract The momentum and energy principles for a fluid element were introduced in sections 4.4 and 4.5, respectively. Here, we integrate those principles across a channel reach to apply to macroscopic one-dimensional steady flows. We conclude the chapter by comparing the theoretical and practical differences between the energy and momentum principles. We show in subsequent chapters how these energy and momentum relations can be applied to solve practical problems.

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Abstract The momentum and energy principles for a fluid element were introduced in sections 4.4 and 4.5, respectively. Here, we integrate those principles across a channel reach to apply to macroscopic one-dimensional steady flows. We conclude the chapter by comparing the theoretical and practical differences between the energy and momentum principles. We show in subsequent chapters how these energy and momentum relations can be applied to solve practical problems.

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Available abstract

Abstract The momentum and energy principles for a fluid element were introduced in sections 4.4 and 4.5, respectively. Here, we integrate those principles across a channel reach to apply to macroscopic one-dimensional steady flows. We conclude the chapter by comparing the theoretical and practical differences between the energy and momentum principles. We show in subsequent chapters how these energy and momentum relations can be applied to solve practical problems.

Key concepts: Momentum (technical analysis), Energy–momentum relation, Energy (signal processing), Physics, Classical mechanics, Theoretical physics, Statistical physics, Computer science

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