必一运动(B-sports)

    400-700-9998
    Enquiry:hkmarketing@epc.com.hk Whatsapp Enquiry: +85261990717
    Buy
    EPC Products Teaching and Research Laboratory Equipment Fluid Science FS-1.3 Energy Losses in Bends
    产品中心
    BBS|Hot Topic
    FS-1.3 Energy Losses in Bends

    Model:FS-1.3

    Use:To measures the pressure drop across, a smooth bend, a tight bend, a Mitre bend. All the pipe test section are of the same cross section, enabling meaningful comparisons to be made.

    Standard:

    Related Products

    Description

    The Fluid Science FS-1.3 Energy Losses in Bends Systems Tray provides hands on experimentation designed to demonstrate energy losses due to the geometry of the flow path at different flow rates.

    Utilising the FS-SU service unit the experiments rapidly mount onto the multifunctional work panel and is connected to the built-in water supply via quick connect couplings.

    The differential pressure reading is taken using a digital manometer against varying flow rates.

    The tray includes the following Hydraulic Circuits:

    Energy losses in Bends

    • Shallow bend Radii 42mm, 6mm diameter
    • Tight Bend Radii 9mm, 6mm diameter


    • Mitre Bend, 6mm diameter



    Features

    • Shallow bend Radii 42mm, 6mm diameter
    • Tight Bend Radii 9mm, 6mm diameter
    • Mitre Bend, 6mm diameter
    • Differential pressure reading obtained using digital manometer
    • Highly visual design

    Benefits

    • Applied student learning via experimentation
    • Common service unit can be used for either hot or cold-water supply
    • Tool-less assembly
    • Designed to be highly visual and simple to use
    • Quick setup
    • Suitable for both classroom and laboratory environment


    Demonstration Capabilities


    • Explanation of basic principles such as conservation of mass
    • Conservation of energy
    • Explain energy loss and frictional loss
    • Types of flow steady and unsteady flow, uniform and non-uniformflow etc
    • Types of fluid flow regime i.e. laminar, turbulent and transitional flow
    • Compare measured pressure drop from 3 different pipe forms, explaining the effect of geometry on pressure drop
    • Using Bernoulli’s equation, calculate the pressures and compare results with experimental values
    • Calculate the frictional head loss and pressure drop using Darcy’s equation





    Project Case
    Solution
    Download
    相关标签