RefineryRR
Mechanical
- Feb 7, 2016
- 26
I have a few questions regarding impeller trimming:
1. Many end-users attempt to use trimming of impellers as a strategy to reduce throttling the pump due to the pump being oversized. By reducing the impeller diameter, the efficiency of the pump is also reduced. Can this strategy of trimming the impeller also generate more heat in the volute casing due to increased fluid circulation? If so, is there any way of quantifying this increase in temperature?
2. Trimming the impeller also changes the impeller blade angle (usually increasing it). The affinity laws do not take this into consideration. How would one determine the new pump curve following an impeller reduction if the blade angle has changed, and the affinity laws aren't valid (as the original & final impellers are not geometrically similar).
3. In a shrouded (and semi-shrouded) impeller, what would be the impact of trimming the vanes of the impeller ONLY, leaving the shrouds in tact? That is, what would be the impact on Head, Flow Rate, Vibration, Internal Recirculation, Heat Generation, etc?
1. Many end-users attempt to use trimming of impellers as a strategy to reduce throttling the pump due to the pump being oversized. By reducing the impeller diameter, the efficiency of the pump is also reduced. Can this strategy of trimming the impeller also generate more heat in the volute casing due to increased fluid circulation? If so, is there any way of quantifying this increase in temperature?
2. Trimming the impeller also changes the impeller blade angle (usually increasing it). The affinity laws do not take this into consideration. How would one determine the new pump curve following an impeller reduction if the blade angle has changed, and the affinity laws aren't valid (as the original & final impellers are not geometrically similar).
3. In a shrouded (and semi-shrouded) impeller, what would be the impact of trimming the vanes of the impeller ONLY, leaving the shrouds in tact? That is, what would be the impact on Head, Flow Rate, Vibration, Internal Recirculation, Heat Generation, etc?