The constant rpm (revolutions per minute) of electric motors prevents adjusting pump performance to match variable operating conditions, and therefore the pump output is usually reduced or throttled. Variable-frequency drives of electric motors have the potential to adjust pump performance to match operating conditions by reducing motor and pump rpm. Field tests at five sites showed that pump performance at the reduced rpm could reasonably match that under the throttled conditions, but at a much lower horsepower demand. However, for economic reasons, pumping plants using a variable-frequency drive should be operated at least 1,000 hours per year
Energy savings and greenhouse gas emission reductions are increasingly becoming important design tar...
The article provides a methodology for a feas...
Generally, water pumps work at a fixed speed. Structural resonance in fixed speed can cause vibratio...
Abstract: This paper details a study performed by the Irrigation Training and Research Center to det...
This paper details a study performed by the Irrigation Training and Research Center to determine mot...
The article substantiates the possibility of using frequency drives in agricultural production, show...
Pumping systems account for nearly 20% of the world's energy used by electric motors and 25% to 50% ...
Many irrigation systems have variable flow and pressure needs. Variable frequency drives (VFDs) are ...
Abstract- Pumping systems account for nearly 20 % of the world’s electrical energy demand and range ...
This paper investigates the energy savings available by utilizing variable speed motors on pump and ...
Speed variations of pumps have become increasingly popular as the technology to produce variable fre...
This article provides information on regulating the flow and pressure of water by a pump through a f...
The working state of freguency-operated asinchronous motor of irrigation pump in the closed system w...
Many irrigation districts are installing Variable Frequency Drives (VFDs) to increase their level of...
Generally, water pumps work at a fixed speed. Structural resonance in fixed speed can cause vibratio...
Energy savings and greenhouse gas emission reductions are increasingly becoming important design tar...
The article provides a methodology for a feas...
Generally, water pumps work at a fixed speed. Structural resonance in fixed speed can cause vibratio...
Abstract: This paper details a study performed by the Irrigation Training and Research Center to det...
This paper details a study performed by the Irrigation Training and Research Center to determine mot...
The article substantiates the possibility of using frequency drives in agricultural production, show...
Pumping systems account for nearly 20% of the world's energy used by electric motors and 25% to 50% ...
Many irrigation systems have variable flow and pressure needs. Variable frequency drives (VFDs) are ...
Abstract- Pumping systems account for nearly 20 % of the world’s electrical energy demand and range ...
This paper investigates the energy savings available by utilizing variable speed motors on pump and ...
Speed variations of pumps have become increasingly popular as the technology to produce variable fre...
This article provides information on regulating the flow and pressure of water by a pump through a f...
The working state of freguency-operated asinchronous motor of irrigation pump in the closed system w...
Many irrigation districts are installing Variable Frequency Drives (VFDs) to increase their level of...
Generally, water pumps work at a fixed speed. Structural resonance in fixed speed can cause vibratio...
Energy savings and greenhouse gas emission reductions are increasingly becoming important design tar...
The article provides a methodology for a feas...
Generally, water pumps work at a fixed speed. Structural resonance in fixed speed can cause vibratio...