scholarly journals Monitoring the Best Operating Point of Centrifugal Pumps Using Blade Passing Vibration Signals

Author(s):  
Andrew Eaton ◽  
Wael Ahmed ◽  
Marwan Hassan
Solar Energy ◽  
2021 ◽  
Vol 221 ◽  
pp. 46-59
Author(s):  
Wanderley Sena dos Santos ◽  
Pedro Ferreira Torres ◽  
Alaan Ubaiara Brito ◽  
Alex Renan Arrifano Manito ◽  
Gilberto Figueiredo Pinto Filho ◽  
...  

2021 ◽  
Vol 182 ◽  
pp. 108289
Author(s):  
G. Mousmoulis ◽  
C. Yiakopoulos ◽  
G. Aggidis ◽  
I. Antoniadis ◽  
I. Anagnostopoulos

Author(s):  
Cristian F. Jaimes Saavedra ◽  
Sebastian Roa Prada ◽  
Jessica G. Maradey Lázaro

Pumping processes often require different operating conditions for the same pipeline. The conditions downstream in the pipeline can change in such a way that the pressure at the discharge of the pump may vary, which automatically introduces changes in the flow supplied by the pump into the pipeline due to the head vs flow characteristic curve of the pump. Even under varying pipeline pressure conditions, it may be necessary to keep the flow discharge of the pump constant. The two most commonly used control strategies for flow control with centrifugal pumps are by means of a fixed-speed pump and a control valve at the outlet of the pump, or by means of a variable frequency drive which avoids the need for the control valve. It has been demonstrated that the approach with the fixed-speed pump and the control valve provides poor power efficiency results, so a variable frequency drive is normally the solution of choice in industry applications. The use of a variable frequency drive allows reaching the flow required by the system without changing the physical characteristic of the pump or pipeline, i.e., it is not necessary to shut the system down to replace the impeller of the pump. However, affinity laws of centrifugal pumps dictate that a change in the rotational speed of the impeller shifts the characteristic curves of the pump, not only the flow vs head curve, but also the efficiency curves, among others. Besides, searching for a different operating point by changing the speed of the pump does not necessarily guarantees optimal operating power efficiency. This paper proposes an optimization approach where a compromise is made between flow control and power efficiency by minimizing the error in the flow rate while at the same time maximizing the power efficiency. To accomplish this goal, this paper presents the modeling of the pump and pipeline, and the design of a linear quadratic regulator control for the fluid flow passing through a given pipeline. The fluid under consideration is water. The mathematical model of the overall system is derived by considering the model of an AC motor, the pump and the hydraulic circuit. Then, with the help of the software MATLAB, the controller was designed and implemented with the linearized mathematical model. The actuator of the control system is the variable frequency drive that changes the speed of the impeller to adjust the flow rate to the required operating point under different loading conditions. The results show the behavior of the compensated system with the optimal controller. In practice, the control system must take into account the constraints of the control effort, which means, the frequency of the pump must be kept within safe values to achieve proper functioning of the pumping system.


Sensors ◽  
2020 ◽  
Vol 20 (11) ◽  
pp. 3283
Author(s):  
Yin Luo ◽  
Yuejiang Han ◽  
Shouqi Yuan ◽  
Jianping Yuan

Off-design operation conditions might not only seriously affect the internal flow status of a centrifugal pump, but also result in additional energy loss and potential mechanical damage. Therefore, early-stage monitoring and predication on off-design operation conditions for centrifugal pumps have become essential. Single-value indicators have favorable factors such as a smaller amount of calculation and easier identification. As a result, industries prefer the more straightforward approach: obtaining single-value indicators directly from the signals which could be easier compared with accepted standards. The possibility of applying the single-value indicators of vibration into operation condition monitoring for a centrifugal pump is studied theoretically and experimentally, which shows that the statistical features of vibration might be suitable for hydraulic instability detection for a centrifugal pump.


Author(s):  
Tobias Anderson Guimarães ◽  
Paulo Balduino Flabes Neto ◽  
jose coelho ◽  
Matheus Fraga Teixeira Lara ◽  
Túlio Benez Ornellas Graciano

2019 ◽  
Vol 114 ◽  
pp. 275-289 ◽  
Author(s):  
Shiyang Li ◽  
Ning Chu ◽  
Peng Yan ◽  
Dazhuan Wu ◽  
Jérôme Antoni

Author(s):  
M. Strojnik

Magnetic lenses operating in partial saturation offer two advantages in HVEM: they exhibit small cs and cc and their power depends little on the excitation IN. Curve H, Fig. 1, shows that the maximal axial flux density Bz max of one of the lenses investigated changes between points (3) and (4) by 5% as the excitation varies by 40%. Consequently, the designer can relax the requirements concerning the stability of the lens current supplies. Saturated lenses, however, can only be used if (i) unwanted fields along the optical axis can be controlled, (ii) 'wobbling' of the optical axis due to inhomogeneous saturation around the pole piece faces is prevented, (iii) ample ampere-turns can be squeezed into the space available, and (iv) the lens operating point covers a sufficient range of accelerating voltages.


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