![]() ![]() If the set of conditions entered in the model generate negative answers, then clearly it is necessary to adjust the variables as appropriate until a realistic result is obtained. With this being the case, they will be accurate to within 10% of the actual results obtained. The graphs above are generated from calculations assuming the hose to be in good condition and laid in a straight line. ![]() ![]() If the head is given in metres of water, each 1-metre head (3.28 ft) induces 0.1 bar (1.47 psi.) pressure.Īll formulae for finding the amount of fluid that will flow through a hose at a given time, are approximate. The pressure is sometimes stated as ‘head of water’. You can also convert psi to pascal, exapascal, petapascal, terapascal, gigapascal, megapascal, kilopascal, abbot pennings. The surface character of the bore, the number, and shape of bends incorporated in the run of the hose also influence the flow rate. The quantity of fluid that will be discharged through a hose depends on the pressure applied at the feed end, the hose length and bore diameter. Kindly refrain from reaching out to us with any inquiries related to the utilization of these charts. ![]() These charts are intended for guidance purposes only. The gauges can operate at temperatures between -20☌ to + 60☌.Ī calibration certificate is not available.Quantity Fluid Flow vs Bore Diameter Data Please make sure that your media is compatible with brass. The gauges are made of stainless steel, the window material is made of polycarbonat, the connection is made of brass and the thread size is G 1/4 inch. The measurement range for the gauges of this series is from -1 to 1000 bar with a scale division from 0.02 to 50 bar. The glycerine filling allows it to be used in vibrating environments. The gauge diameter is 63 mm and it has an accuracy class of 1.6. The ML Series glycerine pressure gauges are available with a vertical or horizontal threaded connection.
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