Fluid Mechanics Calculator vs Fluid Pressure Drop Usage & Stats
Fluid Mechanics Calculator contains 97 Calculators, to calculate different Fluid Mechanics, & Civil Engineering parameters.
- Available in both USCS (Imperial Units) and SI (Metric Units)
Calculator List:
Absolute Pressure
Brake Horsepower
Bernoulli Theorem for Head Loss
Bulk Modulus
Buoyant Force
Chezy Coefficient
Chezy Velocity
Compressibility
External Hydrostatic Pressure
Flow Rate
Fluid Density with Pressure
Fluid Pressure
Hydraulic Radius
Kinematic Viscosity
Liquid Phase Diffusion Coefficient
Pump Efficiency
Manning Flow Velocity
Mean Depth
Minor Losses
Net Positive Suction Head and Cavitation
Specific Gas Constant
Specific Gravity with Water Weight
Specific Gravity with Water Weight Loss
Specific Volume
Thrust Block
Water Horsepower
Acoustic Flow Meter
Bazin's Weir Flow
Broad Crested Weir
Curb Capture Flow Rate
Curb Gutter Flow Rate
French Drain Seepage Rate
Gutter Capture Efficiency
Gutter Carryover
Gutter Interception Capacity
Rectangular Weir
Rectangular Weir Discharge - Francis Equation
Orifice Flow Rate
Parshall Flume Flow Rate
Permeameter Porous Medium Flow Rate
Unconfined Aquifer Well Flow Rate
V notch Weir
Venturi Meter for Flow Rate
Hazen Williams - Fluid Flow Rate
Hazen Williams - Mean Fluid Velocity
Aluminum Pipe - Pressure Rating
Buried Corrugated Metal Pipe Thrust - Cross Sectional Area
Buried Corrugated Metal Pipe Thrust - Pipe Wall
Buried Corrugated Metal Pipe Thrust - Pressure
Ductile Iron Pipe - Pressure
Ductile Iron Pipe - Wall Thickness
Pipe Vacuum Pressure Load
Pipe Water Buoyancy Factor
Plastic Pipe - AWWA C900 Pressure Class
Plastic Pipe - Inside Diameter Controlled
Plastic Pipe - Outside Diameter Controlled
Plastic Pipe - Outside Diameter Controlled Short Term Strength
Plastic Pipe - Short Term Pressure Rating
Slotted Pipe Gutter Interception
Smooth Wall Steel Pipe - Pressure Rating
Soil Load Per Linear Length of Pipe
Restrained Anchored Pipe Stress
Pipe Soil Weight Pressure
Unrestrained Pipe Length Change
Poiseuille's Law
Stokes Law
Cauchy Number
Cavitation Number
Eckert Number
Euler Number
Fourier Number
Froude Number
Knudsen Number
Lewis Number
Mach Number
Prandtl Number
Reynolds Number
Schmidt Number
Sherwood Number
Nusselt Number
Peclet Number
Strouhal Number
Threshold Odor Number
Weber Number
Darcy Weisbach - Head Loss
Darcy's Law - Flow Rate
Darcy's Law - Flux
Darcy's Law - Hydraulic Gradient
Darcy's Law - Porosity
Darcy's Law - Saturated Soil
Darcy's Law - Seepage Velocity
Darcy's Law - Seepage Velocity and Porosity
Darcy's Law - Void Ratio
Water Hammer - Maximum Surge Pressure for a Fluid
Water Hammer - Maximum Surge Pressure for Water
Water Hammer - Maximum Surge Pressure Head
Water Hammer - Pressure Increase
Automatic & Accurate Calculations and Conversions with every Unit and Value Changes.
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This app computes energy loss involved in transmission of fluids for industrial applications. Users can pick from a list of fifteen most common fluids, pipe schedules and sizes with different material of construction to determine overall pressure loss. A judicious selection of pipe size is often a trade off between initial cost and subsequent energy cost involved in transmission of fluid from one point to another. Therefore, the app can be a helpful tool for practicing engineers and designers in analyzing different matrix.
In addition, fluids that are not in the list, users can create a custom fluid with property data that can be saved and compute the pressure loss using the model provided in this app. Pressure loss is computed using Darcy’s equation, which gives a good estimate for both liquid and gases. For gases, the method is valid if the fluid velocity is within 40% of its sonic velocity. Also this app provides result of different flow parameters used in the computation of pressure loss.
Section has been added for computation of pressure losses in valves and fittings. Users can choose any generic valve or fitting from the list provided in this app that are commonly used in industries.
List of fluids:
Air, Steam, Water, Nitrogen, Oxygen, Hydrogen, Helium, CO2, Methane, Ethane, Chlorine, Ammonia, Argon, Hydraulic oil, HFC (R410A), Custom (user's choice gas or liquid).
Pipe Schedules:
10, 20, 30, 40, 60, 80, 100, 120, 140, 160.
Users can pick applicable sizes under nominal diameter for which app provides the corresponding inside and outside diameter.
Material of construction:
Steel, SS, GI, CI, Concrete, Copper, Aluminum, PVC, Glass, Wood, FRP, Rubber.
Based on the size, length and material of construction, the app gives the total weight of the pipe for trade-off analysis.
Valves and Fittings:
Globe valve, Gate valve, Ball valve, Butterfly valve, Angle valve, Check-valve, Check-angle, Check-lift.
Elbow, Reducer, Diffuser, T-couple, Bend-U, Bend-45, Bend-90.
Flow Parameters:
Fluid velocity, Reynolds number and pipe friction coefficient are computed as a function of pipe size, fluid density and viscosity. App has its own algorithm to compute the coefficient of pipe friction based on roughness factor for the given material and Reynolds number under turbulent conditions. For laminar flow, it is a function of Reynolds number and irrespective of pipe roughness. For more accuracy users can edit the pipe roughness factor. For gases, additional data on sonic velocity is provided for a quick reference and validity.
Unit of Measurement:
Users can choose different unit of measurement for both flow as well as pressure drop under given unit standard (SI or USCS). This can be conveniently selected while choosing the fluid from the picker list as shown in the screen shots.
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Fluid Mechanics Calculator VS.
Fluid Pressure Drop
December 14, 2024