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Unit Conversions Kinematic & Dynamic Viscosity Conversion Pipe Friction Loss Calculator Line Shaft Bearing Loss Calculator Horizontal Tank Volume Calculator Vertical Tank Volume Calculator Spherical Tank Volume Calculator Atmospheric Pressure Calculator
Beta  |  01.13.2026 |  beta-2026:9327380
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  • Definitions & Resources
    • A) Welcome & Introduction
    • B) Acronyms & Definitions
    • C) Pump Types
    • D) References
    • E) Additional Resources
  • Pump Fundamentals
    • A) System Curves
    • B) Pump Curves
    • C) Combined Pump & System Curves
    • D) Pump Principles
    • E) Submergence
  • Fluid Properties
    • A) Water
    • B) Solids and Slurries
    • C) Viscosity
    • D) Other Fluids
  • Fluid Flow
    • A) Pipe Frictional Losses
    • B) Losses in Valves, Fittings, and Bends
    • C) Losses With Other Fluids
    • D) Losses in Nozzles
    • E) Losses With Paper Stock
  • Pipe, Flange & Motor dimensions
    • A) Steel Pipe
    • B) Stainless Steel Pipe
    • C) Ductile Iron Pipe
    • D) Non-Ferrous Pipe and Tube
    • E) Plastic PVC Pipe
    • F) Flange Dimensions
    • G) Motor Dimensions
  • Calculators
    • A) Unit Conversions
    • B) Kinematic & Dynamic Viscosity Conversion
    • C) Pipe Friction Loss Calculator
    • D) Line Shaft Bearing Loss Calculator
    • E) Horizontal Tank Volume Calculator
    • F) Vertical Tank Volume Calculator
    • G) Spherical Tank Volume Calculator
    • H) Atmospheric Pressure Calculator
  • About the HI DATA TOOL
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  • No matches found
  • ${search_results.length} topic matches
  • ${res.section}
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  • A) Welcome & Introduction
  • B) Acronyms & Definitions
  • C) Pump Types
  • D) References
  • E) Additional Resources
  • A) System Curves
  • B) Pump Curves
  • C) Combined Pump & System Curves
  • D) Pump Principles
  • E) Submergence
  • A) Water
  • B) Solids and Slurries
  • C) Viscosity
  • D) Other Fluids
  • A) Pipe Frictional Losses
  • B) Losses in Valves, Fittings, and Bends
  • C) Losses With Other Fluids
  • D) Losses in Nozzles
  • E) Losses With Paper Stock
  • A) Steel Pipe
  • B) Stainless Steel Pipe
  • C) Ductile Iron Pipe
  • D) Non-Ferrous Pipe and Tube
  • E) Plastic PVC Pipe
  • F) Flange Dimensions
  • G) Motor Dimensions
  • A) Unit Conversions
  • B) Kinematic & Dynamic Viscosity Conversion
  • C) Pipe Friction Loss Calculator
  • D) Line Shaft Bearing Loss Calculator
  • E) Horizontal Tank Volume Calculator
  • F) Vertical Tank Volume Calculator
  • G) Spherical Tank Volume Calculator
  • H) Atmospheric Pressure Calculator
  • Releases
  • Members and Contributors

Unit Conversions

Select a dimension or measure, then input a value to convert to the desired unit.

Note: Units included are used in practice. Some metric units are not approved SI units.

Source

Ambler Thompson and Barry N. Taylor. “Guide for the Use of the International System of Units (SI)," Special Publication (NIST SP), National Institute of Standards and Technology, Gaithersburg MD, 20899.

Effective Pump Intake Design and Troubleshooting Problem Intakes - 4 Part Webinar Series

This webinar series is based on the Hydraulic Institute’s Intake Design for Rotodynamic Pumps (ANSI/HI 9.8–2018) Standard. The standard enables designers, owners, and users to configure functional pumping facility designs and provides remedial measures for problem intakes. This webinar series visually aids the standard’s overview of design objectives, required inlet bell design diameter, submergence requirements, using the standard for proper instructions on intake structures for clear liquids and solids-handling pumps, highlights of key technologies used when designing the pump intake including physical and computation fluid dynamics (CFD).

Learn more

Last updated on July 19th, 2024


Related topics

B) Kinematic & Dynamic Viscosity Conversion
C) Pipe Friction Loss Calculator
D) Line Shaft Bearing Loss Calculator
E) Horizontal Tank Volume Calculator
F) Vertical Tank Volume Calculator
G) Spherical Tank Volume Calculator
H) Atmospheric Pressure Calculator