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Industrial Building
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    Pumps & Fans Control (Buildings)

    Pains & drivers

    • 70% of electrical consumption in Industry is used to turn motors. 33% of them control Pump or Fan Applications.
    • Most of Pump and Fan applications are driven by a DOL solution of SoftStarter. This means that the motor runs at full speed and the flow variation is obtained. The energy consumption falls very little when the flow decreases. At 80% of the nominal flow, the energy consumption remains at 95%. The potential for savings on the installed base is huge.
    • CEMEP association has made a simulation for the European market. The use of Drive in such applications could save 900 M Euro/year and 4 Million tonnes of CO2/year.
     

    How can a customer manage energy more efficiently?

    • To save energy we have to:
      - drive the motor with a frequency inverter instead of a contactor or Soft Start
      - remove the restriction device (valve or damper)
    • The AC Inverter allows to adjust the speed of the Pump or the Fan, therefor the Flow
    • The result is huge saving compared to conventional solutions:
      - up to 50% for Fan, Pay back of the drive within one Year
      - up to 30 % for a Pump , Payback within 2 years
     

    Solutions or architectures used in the application

     
    Solutions or architectures used in the application

    A) Solution without drive
    The motor turns at fixed speed according to the frequency network and the number of poles.
    Example : 3600 Rpm for 60 Hz
    Motor 2 poles
    The only way to adjust the Flow is a restriction device (damper) generating losses









    B) Energy Saving Solution with drive
    The Drive (named also frequency inverter) allow to varies the frequency therefor the motor speed.
    The Flow is directly proportional to the speed.
    Damper or valve are not any more needed









    C) Energy Consumption with and without drive
    Example for Fan Application

    Outlet damper
    Variable speed drive
    50% of Energy saving at 80% of the nominal flow

    Example for Pump Application

    Control valve
    Drive
    30% of Energy saving at 80% of the nominal flow

     
     
     
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    Altivar 61

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    Altivar 61

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    W@de W320i, Magelis XBT-N, TeSys U, Altistart 48, Multi 9

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    W@de 320e, Magelis XBT-G, Vijeo Citect, Altivar 61

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    W@de RTU, Magelis XBT-N, Altivar 61, Multi 9

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    PowerLogic, Compact NS, Altivar 61

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    Modicon Premium, Advantys STB, Magelis XBT, Vijeo, Altivar 61, TeSys U

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