Restriction Orifice (RO) | Basics of Restriction Orifice | Working of Restriction Orifice

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  • เผยแพร่เมื่อ 25 ธ.ค. 2024

ความคิดเห็น • 12

  • @Coreengineers
    @Coreengineers  ปีที่แล้ว +2

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  • @Saggysag866
    @Saggysag866 6 หลายเดือนก่อน +1

    Thank you
    This is clear

  • @juliopm8745
    @juliopm8745 10 หลายเดือนก่อน +1

    gracias, Maestro!

  • @MDBIRDHAUSKHANA
    @MDBIRDHAUSKHANA 8 หลายเดือนก่อน +1

    المحتوى الخاص بك رائع

  • @danielodeliro2412
    @danielodeliro2412 ปีที่แล้ว +1

    Thanks

  • @jolee9416
    @jolee9416 7 หลายเดือนก่อน +1

    Thank you so much for the video! I have a question, from what I understand the RO is supposed to slow down the flow and create a pressure drop in the system, but based on the video, since you're passing it through a small hole, A2V1, so doesn't the velocity increase instead? How does it slow down the flow then?

    • @Coreengineers
      @Coreengineers  7 หลายเดือนก่อน +1

      It's use to kill the pressure

  • @YaseenMethar
    @YaseenMethar 9 หลายเดือนก่อน +1

    Why diameter of orifice plate is smaller in the upstream and larger in the downstream side of the multistage oriface?
    My concern is that when is reduce the pressure with smaller diia oriface plate then pressure drop is higher and high chance of cavitation? Please clarify my doubt.

    • @Coreengineers
      @Coreengineers  9 หลายเดือนก่อน +1

      In a multistage orifice system, the diameter of the orifice plate is smaller in the upstream stages and larger in the downstream stages for several reasons:
      Pressure Reduction: As fluid passes through each stage, pressure decreases. Smaller orifice diameters in the upstream stages help achieve the desired pressure reduction gradually, preventing sudden pressure drops and potential cavitation.
      Velocity Control: Smaller orifices in the upstream stages control the velocity of the fluid, allowing for better flow regulation and reducing the risk of turbulence or cavitation.
      Differential Pressure Distribution: Gradually increasing the orifice diameter in the downstream stages helps distribute the pressure drop more evenly across the system, ensuring smoother flow transitions and minimizing the likelihood of cavitation.
      By carefully designing the orifice sizes in each stage, engineers can optimize the performance of the multistage orifice system while minimizing the risk of cavitation.

    • @mysterion5312
      @mysterion5312 8 หลายเดือนก่อน

      @@Coreengineers will that be the same in single stage ?

    • @rubixcubesolve
      @rubixcubesolve 7 หลายเดือนก่อน

      @@mysterion5312single means one, so what are you asking?