Method and An Arrangement for Starting Pumping with A Submersible Centrifugal Pump for Pumping Fluid
20240003350 ยท 2024-01-04
Inventors
Cpc classification
F04D15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H02P1/04
ELECTRICITY
International classification
F04D15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D13/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H02P1/04
ELECTRICITY
Abstract
A field of controlling pumps and pumping plants and installations, such as electrical devices and installations used for controlling pumps and pumping plants and installations, and more particularly to a method and an arrangement for starting pumping with a submersible centrifugal pump for pumping fluid. In the arrangement for starting pumping with a submersible centrifugal pump for pumping fluid, the arrangement including a submersible centrifugal pump and an electric drive apparatus arranged for controlling the motor of the submersible centrifugal pump, the electric drive apparatus is arranged: for starting an accelerating ramp for ramping up the speed of the motor of the submersible centrifugal pump; for monitoring the torque of the motor of the submersible centrifugal pump versus pump motor speed; and upon detecting a significant increase in the derivate of monitored torque versus pump motor speed, for starting an operational pumping ramp for the motor of the submersible centrifugal pump.
Claims
1. A method for starting pumping with a submersible centrifugal pump for pumping fluid, in which the method comprises: an accelerating ramp for ramping up the speed of the motor of said submersible centrifugal pump is started by an electric drive apparatus controlling said motor, the torque of the motor of said submersible centrifugal pump versus pump motor speed is monitored in said electric drive apparatus, and upon detecting a significant increase in the derivate of monitored torque versus pump motor speed, an operational pumping ramp for the motor of said submersible centrifugal pump is started by said electric drive apparatus.
2. The method according to claim 1, in which the method includes when detecting said significant increase in the derivate of monitored torque versus pump motor speed, said significant increase is determined to indicate an operational pumping condition.
3. The method according to claim 1, wherein before said accelerating ramp, a starting ramp for starting the motor of said submersible centrifugal pump is carried out.
4. The method according to claim 1, in which the method includes said pumped fluid is water.
5. An arrangement for starting pumping with a submersible centrifugal pump for pumping fluid, said arrangement comprising a submersible centrifugal pump and an electric drive apparatus arranged for controlling the motor of said submersible centrifugal pump, wherein said electric drive apparatus is arranged: for starting an accelerating ramp for ramping up the speed of the motor of said submersible centrifugal pump; for monitoring the torque of the motor of said submersible centrifugal pump versus pump motor speed; and upon detecting a significant increase in the derivate of monitored torque versus pump motor speed, for starting an operational pumping ramp for the motor of said submersible centrifugal pump.
6. The arrangement according to claim 5, wherein said electric drive apparatus is arranged to determine when said detected significant increase in the derivate of monitored torque versus pump motor speed indicates the flow of fluid through said submersible centrifugal pump.
7. The arrangement according to claim 5, wherein said electric drive apparatus is arranged to carry out before said accelerating ramp a starting ramp for starting the motor of said submersible centrifugal pump.
8. The arrangement according to claim 5, wherein said motor providing power to said submersible centrifugal pump is arranged as a separate unit from said submersible centrifugal pump.
9. The arrangement according to claim 8, wherein said motor providing power to the submersible centrifugal pump is arranged above the ground.
10. The arrangement according to claim 5, wherein said pumped fluid is water.
11. The arrangement according to claim 5, wherein said electric drive apparatus is a frequency converter.
12. The method according to claim 2, wherein before said accelerating ramp, a starting ramp for starting the motor of said submersible centrifugal pump is carried out.
13. The method according to claim 2, in which the method includes said pumped fluid is water.
14. The arrangement according to claim 6, wherein said electric drive apparatus is arranged to carry out before said accelerating ramp a starting ramp for starting the motor of said submersible centrifugal pump.
15. The arrangement according to claim 6, wherein said motor providing power to said submersible centrifugal pump is arranged as a separate unit from said submersible centrifugal pump.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0025] In the following, the present invention will be described in more detail by way of example and with reference to the attached drawings, in which:
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032] The foregoing aspects, features and advantages of the invention will be apparent from the drawings and the detailed description related thereto.
[0033] Prior art drawings of
DETAILED DESCRIPTION
[0034] The arrangement for starting pumping with a submersible centrifugal pump for pumping fluid according to one embodiment of the present invention comprises a submersible centrifugal pump and an electric drive apparatus arranged for controlling the motor of said submersible centrifugal pump, wherein said electric drive apparatus is arranged: for starting an accelerating ramp for ramping up the speed of the motor of said submersible centrifugal pump; for monitoring the torque of the motor of said submersible centrifugal pump versus pump motor speed; and upon detecting a significant increase in the derivate of monitored torque versus pump motor speed, for starting an operational pumping speed ramp for the motor of said submersible centrifugal pump.
[0035]
[0036] In the presented embodiment, said fluid outlet 27 of the arrangement according to the present invention is arranged to provide fluid to a fluid storage 28. The pumped fluid may be water i.e., said fluid outlet 27 may be a water outlet 27 arranged to provide water to a fluid storage 28, said fluid storage 28 being a water storage 28. In other possible embodiments of the arrangement according to the present invention said fluid outlet 27 may be arranged to provide the water or another type of fluid directly into a specific use, such as into irrigation, into a specific process use or into other use.
[0037] In the presented embodiment, said electric drive apparatus 10 is arranged for starting an accelerating ramp for ramping up the speed of the motor 22 of said submersible centrifugal pump 2. Furthermore, said electric drive apparatus 10 is arranged for monitoring the torque of the motor 22 of said submersible centrifugal pump 2 versus pump motor speed, and upon detecting a significant increase in the derivate of monitored torque versus pump motor speed, said electric drive apparatus 10 is arranged for starting an operational pumping ramp for the motor 22 of said submersible centrifugal pump 2. When detecting said significant increase in the derivate of monitored torque versus pump motor speed, said significant increase is determined to indicate an operational pumping condition in which the fluid has been pumped above the ground level and there is an increased flow of fluid through said submersible centrifugal pump 2.
[0038] When referring to the term an operational pumping condition, in this application it is meant to refer to a condition in which the fluid has been pumped to the final level above the ground level and as there no further increase due to the lifting there now starts an increased proper flow of fluid through said submersible centrifugal pump to said fluid outlet.
[0039] In another embodiment of an arrangement according to the present invention for starting pumping with a submersible centrifugal pump for pumping fluid the motor providing power to the submersible centrifugal pump may be arranged as a separate unit from the submersible centrifugal pump. In yet another further embodiment of an arrangement according to the present invention for starting pumping with a submersible centrifugal pump for pumping fluid the motor providing power to the submersible centrifugal pump may be arranged to be above the ground.
[0040]
[0041] In the method according to the present one embodiment, upon detecting 33 a significant increase in the derivate of monitored torque versus pump motor speed, an operational pumping ramp for the motor 22 of said submersible centrifugal pump 2 is started 34 by said electric drive apparatus 10. When detecting 33 said significant increase in the derivate of monitored torque versus pump motor speed, said significant increase is determined to indicate an operational pumping condition in which the fluid has been pumped above the ground level and there is an increased flow of fluid through said submersible centrifugal pump 2. In the method for starting pumping said operational pumping ramp is the last step in which the operational pumping condition has been reached and the pumping is proceeded with as in regular pumping.
[0042] When referring to the term a significant increase in the derivate of monitored torque versus pump motor speed indicating the flow of fluid through said submersible centrifugal pump, in this application it is meant to refer to a substantial and permanent increase in the derivate of monitored torque versus pump motor speed.
[0043] When referring to the term an operational pumping condition, in this application it is meant to refer to a condition in which the fluid has been pumped to the final level above the ground level and as there no further increase due to the lifting there now starts an increased proper flow of fluid through said submersible centrifugal pump to said fluid outlet.
[0044]
[0045] After said starting ramp 41 has been carried out an accelerating ramp 42 for ramping up the speed of the motor 22 of said submersible pump 2 is started 31. Thereafter, in the solution according to the present embodiment, the torque of the motor 22 of said submersible centrifugal pump 2 versus pump motor speed is monitored 32 in said electric drive apparatus 10. During said accelerating ramp 42 between the time t.sub.1 and the time t.sub.2 the speed of the motor 22 of said submersible pump 2 rises from speed v.sub.1 to speed v.sub.2.
[0046] Thereafter, in the solution according to the present embodiment at time t.sub.2, upon detecting 33 a significant increase in the derivate of monitored torque versus pump motor speed, the accelerating ramp 42 is ended and an operational pumping ramp 43 is started 34 by said electric drive apparatus 10. Said operational pumping ramp 43 is a long ramp in which the required speed of the motor 22 of said submersible centrifugal pump 2 is limited and controlled as in normal pumping operation.
[0047] In the solution according to the present embodiment said operational pumping ramp 43 is the last step in which the operational pumping condition has been reached and the pumping is proceeded with as in regular pumping. The operational pumping ramp 43 is typically considerably longer in duration than the starting ramp 41 or the accelerating ramp 42. In
[0048]
[0049] As illustrated in
[0050] As illustrated in
[0051] When the fluid starts to flow, the derivative of torque curve changes. With the help of the solution according to the present invention, the starting moment of fluid flow can be detected by monitoring the torque during the accelerating ramp. This detected point in time is then as the end point for the accelerating ramp and starting point of the operational pumping ramp.
[0052] With the help of the method and an arrangement for starting pumping with a submersible centrifugal pump for pumping fluid according to the present invention reduced turbidity and reduced cloudiness in the pumped fluid can be provided. Furthermore, with the help of the solution according to the present invention a fast and secure starting towards operational pumping is provided.
[0053] The solution according to the present invention provides an effective and elegant solution for reducing turbidity and cloudiness in the pumped fluid. Furthermore, the method and an arrangement for starting pumping with a submersible centrifugal pump for pumping fluid according to the present invention provides a straightforward and inexpensive solution for a fast and secure starting of a submersible centrifugal pump towards operational pumping.
[0054] It is to be understood that the above description and the accompanying Figures are only intended to teach the best way known to the inventors to make and use the invention. It will be apparent to a person skilled in the art that the inventive concept can be implemented in various ways. The above-described embodiments of the invention may thus be modified or varied, without departing from the invention, as appreciated by those skilled in the art in light of the above teachings. It is therefore to be understood that the invention and its embodiments are not limited to the examples described above but may vary within the scope of the claims and their equivalents.