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A booster pump is a machine which will increase the pressure of a fluid. Construction and function : Booster pumps are usually piston or plunger type compressors. A single-acting, single-stage booster is the simplest configuration, and comprises a cylinder, designed to withstand the operating pressures, with a piston which is driven back and forth inside the cylinder. The cylinder head is fitted with supply and discharge ports, to which the supply and discharge hoses or pipes are connected, with a non-return valve on each, constraining flow in one direction from supply to discharge. When the booster is inactive, and the piston is stationary, gas will flow from the inlet hose, through the inlet valve into the space between the cylinder head and the piston. If the pressure in the outlet hose is lower, it will then flow out and to whatever the outlet hose is connected to. This flow will stop when the pressure is equalized, taking valve opening pressures into account Once the flow has stopped, the booster is started, and as the piston withdraws along the cylinder, increasing the volume between the cylinder head and the piston crown, the pressure in the cylinder will drop, and gas will flow in from the inlet port. On the return cycle, the piston moves toward the cylinder head, decreasing the volume of the space and compressing the gas until the pressure is sufficient to overcome the pressure in the outlet line and the opening pressure of the outlet valve. At that point, the gas will flow out of the cylinder via the outlet valve and port. There will always be some compressed gas remaining in the cylinder and cylinder head spaces at the top of the stroke. The gas in this "dead space" will expand during the next induction stroke, and only after it has dropped below the supply gas pressure, more supply gas will flow into the cylinder. The ratio of the volume of the cylinder space with the piston fully withdrawn, to the dead space, is the "compression ratio" of the booster, also termed "boost ratio" in this context. Efficiency of the booster is related to the compression ratio, and gas will only be transferred while the pressure ratio between supply and discharge gas is less than the boost ratio, and delivery rate will drop as the inlet to delivery pressure ratio increases. Delivery rate starts at very close to swept volume when there is no pressure difference, and drops steadily until there is no effective transfer when the pressure ratio reaches the maximum boost
A booster pump is a machine which will increase the pressure of a fluid. Construction and function : Booster pumps are usually piston or plunger type compressors. A single-acting, single-stage booster is the simplest configuration, and comprises a cylinder, designed to withstand the operating pressures, with a piston which is driven back and forth inside the cylinder. The cylinder head is fitted with supply and discharge ports, to which the supply and discharge hoses or pipes are connected, with a non-return valve on each, constraining flow in one direction from supply to discharge. When the booster is inactive, and the piston is stationary, gas will flow from the inlet hose, through the inlet valve into the space between the cylinder head and the piston. If the pressure in the outlet hose is lower, it will then flow out and to whatever the outlet hose is connected to. This flow will stop when the pressure is equalized, taking valve opening pressures into account Once the flow has stopped, the booster is started, and as the piston withdraws along the cylinder, increasing the volume between the cylinder head and the piston crown, the pressure in the cylinder will drop, and gas will flow in from the inlet port. On the return cycle, the piston moves toward the cylinder head, decreasing the volume of the space and compressing the gas until the pressure is sufficient to overcome the pressure in the outlet line and the opening pressure of the outlet valve. At that point, the gas will flow out of the cylinder via the outlet valve and port. There will always be some compressed gas remaining in the cylinder and cylinder head spaces at the top of the stroke. The gas in this "dead space" will expand during the next induction stroke, and only after it has dropped below the supply gas pressure, more supply gas will flow into the cylinder. The ratio of the volume of the cylinder space with the piston fully withdrawn, to the dead space, is the "compression ratio" of the booster, also termed "boost ratio" in this context. Efficiency of the booster is related to the compression ratio, and gas will only be transferred while the pressure ratio between supply and discharge gas is less than the boost ratio, and delivery rate will drop as the inlet to delivery pressure ratio increases. Delivery rate starts at very close to swept volume when there is no pressure difference, and drops steadily until there is no effective transfer when the pressure ratio reaches the maximum boost
Three Phase Vertical Openwell Mahendra TCM series Openwells are manufactured as per Indian Standard IS 14220 Designed for wide voltage fluctuation Stainless Steel/Cast Iron Motor body and Stainless Steel Shaft Foundation is not required at different levels since the pumpset rests at the bottom of the well Highly durable water cooled rewindable motor Copper rotors for smooth starting Dynamically balanced rotating parts like rotor and impeller Can be easily dismantled and repaired Improved efficiency with all the advantages of mounting the prime mover and pump integrally on the same shaft We have Radial flow & Mixed flow models for various field condition Applications Agriculture And Industrial Application Sprinklers & Water Fountains Public Water Supply Drip Irrigation
V6 Mixed Flow: Motor Outer diameter are according to NEMA standard Water lubricated bearings Copper rotors for smooth starting Smooth and noiseless operation Non-magnetic, corrosion-resistant high-grade stainless steel stator body Can be easily dismantled & repaired Dynamically balanced rotating part like rotor and impeller ensures long life Motors are CE marked High quality water resistant polymer insulated wires for longer life even under adverse voltage conditions Low frictions Carbon Thrust Bearings Individually and accurately balanced impeller gives better performance for lower power consumption Applications Agriculture And Industrial Application Sprinkler and drip irrigation Nurseries and gardens Public Water Supply
Megaflow open well submersible pumpset is also of excellent quality and price is competitive towards other brands. It also has 1 year replacement guarantee. Pic shows happy customer who bought a megaflow pumpset
Mega flow open well pump sets are now coming with 1 year replacement guarantee and at a reasonable cost Pic shows a happy customer who Bought a mega flow open well submersible pumpset
V6 Radial Flow: Motor Outer diameter are according to NEMA standard Water lubricated bearings Copper rotors for smooth starting Smooth and noiseless operation Non-magnetic, corrosion-resistant high-grade stainless steel stator body Can be easily dismantled & repaired Dynamically balanced rotating part like rotor and impeller ensures long life Motors are CE marked High quality water resistant polymer insulated wires for longer life even under adverse voltage conditions Low frictions Carbon Thrust Bearings Individually and accurately balanced impeller gives better performance for lower power consumption Agriculture And Industrial Application Sprinkler and drip irrigation Nurseries and gardens Public Water Supply
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