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High Flow Foot Valves
The High Flow System is designed to be used in 2 inch wells or larger where a high pumping rate is desired or where very deep wells are encountered. This system is also an excellent well development tool in 2 inch piezometers.
The High Flow System can provide lift of up to 250-300 feet in 2 inch monitoring wells and flow rates of up to 4 gallons per minute. This system consists of a High Flow Valve, either the 1.25" OD, acetal plastic D-32 or the stainless steel SS-32 and a length of 1" OD high density polyethylene (HDPE) tubing.
Recommended Devices
The High Flow System is considerably heavier than the Standard Flow System and consequently is not nearly as suitable for manual operation. The High Flow System can be manually operated in monitoring wells up to a maximum depth of about 60 feet depending on the operators strength and endurance.
It is recommended to use an automated actuator with the High Flow System. The Hydrolift-2, PowerPack-PP1 or PowerPump-2 are all recommended for use with the High Flow System.
Well Development
The Inertial Pump has a substantial capacity for developing monitoring wells because of the cyclical action of the valve in the well screen area. This characteristic can be utilized to remove silt and sediment that has accumulated in the foot of the monitoring well and can also be used to remove fines from the sand pack and well screen.
The well development capacity of the High Flow D-32 foot valve can be enhanced by installing a SBD-32 Surge Block to the D-32 foot valve. The Surge Block is an excellent well development tool. It simply press fits over the body of the Standard Flow Foot Valve or High Flow Foot Valve (D-25 or D-32).
The Surge Block effectively increases the outside diameter of the D-25 or D-32 foot valve to 1-7/8” In 2” wells and 3-7/8” OD in 4” wells, reducing the annular gap between the valve and the inside of the well screen to approximately 1/16”. This results in a significant increase in the surging action of the valve.
The use of the Inertial Pump and Surge Block together is one of the most effective methods for developing monitoring wells because it simultaneously surges and pumps the well. This frees up silt and sediment in the sand pack and screen and breaks down bridging, drawing these particles it into the well and then removes this material from the well.
The recommended method for developing a monitoring well with the Inertial Pump and Surge Block is to begin the development process with the Surge Block near the top of the well screen. Operate the pump with the Surge Block in this position until the turbidity level of the water being delivered from the pump decreases to an acceptable level. Once this level is reached then the Surge Block is lowered in the well screen one to two feet and the process is repeated. Developing wells in this manner is one of the best methods, often resulting in turbidity levels below 10 NTUs.
The development capacity of the High Flow System is greater than that of the Standard Flow System because the pump generates a higher flow rate and the larger diameter tubing is stiffer and flexes less in 2” monitoring wells.
Performance Chart
Factors that affect flow rate include such parameters as the depth of submergence of the foot valve, tubing diameter, well casing diameter, the length of pump stroke and the speed of oscillation of the pump.
Obviously, the speed of oscillation is the primary factor in imparting momentum to the water column in the pumps tubing. Generally a pumping rate of 100 to 180 strokes per minute is recommended. The recommended stroke length is 4 to 6 inches with a longer stroke performing better in deeper piezometers.
Greater submergence of the foot valve increases the pressure differential, (the pressure difference between the water within the tubing and the head pressure outside the valve) that is created at the end of the upward pump stroke. Increasing the pressure differential increase the rate of water inflow through the valve at the end of the upward stroke thereby increasing the flow rate.
Another factor affecting the flow rate with the inertial pump is the size of the annular gap between the Inertial Pump tubing and the ID of the well casing. When the Inertial Pump is operating the flexible tubing will tend to wobble from side to side within the well casing. This wobble results in some of the up and down movement applied at surface to the tubing not reaching the depth where the valve is located. For this reason the stiffer High Density Polyethylene tubing is usually preferred in deeper monitoring wells (depth in excess of 60 – 70 feet). The Inertial Pump performs best in smaller diameter piezometers (4” or less).
As a general guide, in most 2” monitoring wells, the High Flow System D-32 will usually produce a flow rate of about 1 to 3 gallon per minute given 20 to 30 feet of valve submergence. The High Flow System has a substantial lift capacity in 2” diameter piezometers. Some customers have reported lifts approaching 300 feet.