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Centrifugal Pumps Design and Application 2nd ed - Val S. Lobanoff, Robert R. Ross (Butterworth-Heinemann, 1992)

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NPSH 103<br />

Step 3: Determine KI*<br />

From Figure 8-9:<br />

From Figure 8-19, as 1,800 GPM is less than BEP:<br />

Step 4: Calculate NPSHRfrom Equation 8-2.<br />

From Figure 8-20,<br />

Figures 8-21, 8-22, <strong>and</strong> 8-23 show examples of calculating NPSH A,<br />

Suction Piping<br />

As describ<strong>ed</strong> earlier, NPSHR is influenc<strong>ed</strong> by suction nozzle design.<br />

Similarly, poor suction piping can adversely affect NPSHR <strong>and</strong> pump<br />

performance. Double-suction first-stage impellers are particularly vulnerable<br />

to a nonuniform approach of the liquid. If elbows are locat<strong>ed</strong><br />

close to the pump, they should be orient<strong>ed</strong> to provide equal distribution<br />

of flow into both eyes of the impeller. An elbow parallel to the pump<br />

shaft directly before the pump is conducive to spiral flow <strong>and</strong> unbalanc<strong>ed</strong><br />

flow distribution into the two eyes. Unequal flow distribution can result<br />

in excessive vibration, high axial thrust loads, noise, <strong>and</strong> cavitation.<br />

Effect of Viscosity<br />

Although the influence of viscosity is pr<strong>ed</strong>ictable on other hydraulic<br />

characteristics, particularly head, capacity, <strong>and</strong> efficiency, little general<br />

information is available to indicate the effect on NPSHR. From experience<br />

we know that up to 2,000 SSU we are safe in using water NPSHR

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