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Complete simulation repository

Hydraulics Simulations

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14 simulations1 topic families

Showing 14 of 14 simulations.

Statics simulation family

Hydraulics

14 simulations
2D

Properties of Fluids - Theory & Concepts

Fundamental properties of fluids including density, specific weight, specific gravity, viscosity, surface tension, and compressibility.

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2D

Hydrostatics: Pressure & Manometry - Theory & Concepts - Manometer

Fluid pressure concepts, Pascal's Law, pressure variation with depth, and manometers.

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2D

Hydrostatics: Forces on Surfaces - Theory & Concepts - Hydrostatic Force

Calculating hydrostatic forces on plane and curved submerged surfaces, including magnitude and location (Center of Pressure).

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2D

Relative Equilibrium of Liquids - Theory & Concepts

Analysis of liquids subjected to uniform linear acceleration and rigid-body rotation.

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2D

Fluid Dynamics: Energy & Momentum - Theory & Concepts - Bernoulli

Euler and Navier-Stokes equations, Bernoulli and extended energy equations, hydraulic and energy grade lines, control-volume momentum, correction coefficients, jets, vanes, and cavitation limits.

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2D

Flow in Pipes: Fundamentals & Losses - Theory & Concepts - Reynolds Number

Laminar and turbulent flow, Reynolds number, friction factor, and calculation of head loss in pipes.

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2D

Flow in Pipes: Fundamentals & Losses - Theory & Concepts - Moody Chart

Laminar and turbulent flow, Reynolds number, friction factor, and calculation of head loss in pipes.

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2D

Flow in Pipes: Systems & Networks - Theory & Concepts - Pipe Network

Series, parallel and branching pipes, resistance formulations, equivalent systems, three-reservoir problems, Hardy Cross and nodal-head network methods, pumps, valves, demands, and hydraulic transients.

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2D

Flow in Pipes: Systems & Networks - Theory & Concepts - Water Hammer

Series, parallel and branching pipes, resistance formulations, equivalent systems, three-reservoir problems, Hardy Cross and nodal-head network methods, pumps, valves, demands, and hydraulic transients.

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2D

Flow Measurement - Theory & Concepts

Devices and methods for measuring flow rate, including orifices, venturi meters, and weirs.

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2D

Open Channel Flow: Uniform Flow - Theory & Concepts

Open-channel geometry, uniform-flow resistance, normal depth, and hydraulically efficient sections.

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2D

Open Channel Flow: Non-Uniform Flow - Theory & Concepts - Specific Energy

Specific energy, critical controls, momentum function, hydraulic jumps, gradually varied flow equations and profiles, and direct- and standard-step computations.

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2D

Open Channel Flow: Non-Uniform Flow - Theory & Concepts - Hydraulic Jump

Specific energy, critical controls, momentum function, hydraulic jumps, gradually varied flow equations and profiles, and direct- and standard-step computations.

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2D

Hydraulic Machinery - Theory & Concepts - Pump Characteristics

Pump and turbine energy transfer, system and machine curves, operating points, efficiencies, affinity laws, series and parallel operation, BEP, NPSH, cavitation, specific speed, and selection.

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