1987Hydraulic EngineeringRequires access

Minimum Energy Loss and Velocity Profiles in Pipes

R. Li, Chin Y. Kuo

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Abstract

Minimum energy loss in a flow is discussed. The concept is applied to derive velocity distributions for laminar flow through a circular pipe and steady uniform turbulent flow through a rough pipe. These velocity distributions are compared with the classic velocity distribution equations. Also, the friction equation for fully developed turbulent rough pipe flow derived based on the concept is compared with the Nikurade equation.

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What this paper is about

Minimum energy loss in a flow is discussed. The concept is applied to derive velocity distributions for laminar flow through a circular pipe and steady uniform turbulent flow through a rough pipe. These velocity distributions are compared with the classic velocity distribution equations. Also, the friction equation for fully developed turbulent rough pipe flow derived based on the concept is compared with the Nikurade equation.

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Available abstract

Minimum energy loss in a flow is discussed. The concept is applied to derive velocity distributions for laminar flow through a circular pipe and steady uniform turbulent flow through a rough pipe. These velocity distributions are compared with the classic velocity distribution equations. Also, the friction equation for fully developed turbulent rough pipe flow derived based on the concept is compared with the Nikurade equation.

Key concepts: Chézy formula, Laminar flow, Turbulence, Mechanics, Pipe flow, Open-channel flow, Flow (mathematics), Flow velocity

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