Recent content by gamecult

  1. gamecult

    Bernoulli equation for calculation of water flow

    This a more clear (I hope) Illustration
  2. gamecult

    Bernoulli equation for calculation of water flow

    Thank you so much it is more clear for me to understand about the energy loss. I will try to do the calculation including the energy loss
  3. gamecult

    Bernoulli equation for calculation of water flow

    I would like to have more informations and details about head loss and friction loss. I dont know how to do it trying to learn.
  4. gamecult

    Bernoulli equation for calculation of water flow

    You guessed very well, i use a French version of word. I usually write numbers like this : 1,152.0 m3/h
  5. gamecult

    Bernoulli equation for calculation of water flow

    Thanks for the question : The tube is 900m aways to unsure that the quality of Seawater is taken from a point and at a level protected from pollution. Also, the tube is laid at the bottom of the sea so as not to interfere with maritime traffic and for the water quality.
  6. gamecult

    Bernoulli equation for calculation of water flow

    Thanks for you reply. Sorry, when I copy-pasted from Word it changed the thousands separator (,) into a period (.) In addition, the water flows from the lower part to the upper part. I assumed that the speed at the top of sea level is 0 because the level will never drops
  7. gamecult

    Bernoulli equation for calculation of water flow

    Thanks for you reply. That's almost all inquiries I have I made the assumption that there is no head loss or friction inside the HDPE tube. I wanted to know the water flow at the outlet to see if it was enough or not. I also wanted to know if my calculation are correct or not.
  8. gamecult

    Bernoulli equation for calculation of water flow

    Hello everyone; Please need some help to check if my calculation are correct (and if possible some explantation) Bernoulli's equation between point 1 and 3 is given by: P_1+1/2 ρv_1^2 + ρgh_1 = P_3+1/2 ρv_3^2 + ρgh_3 P_1 = P_(atm ) v_1= 0 m/s h_1= 0.875 m P_3 = P_(atm ) v_3= ? m/s h_3= 0...
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