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  1. Feb 10, 2023 · Home. The System Is the Boss (Part 1 of 2 …. The Easy Part) Jim Elsey discusses two main factors that make up a system curve for a single centrifugal pump in an open system with a flooded suction. by Jim Elsey. Summit Pump. 02/10/2023. The piping system tells the pump where to operate on its performance curve.

  2. Aug 22, 2023 · A “boss” in engineering refers to a protruding or raised feature on the surface of a component. It is essentially a cylindrical or conical projection that is added to a design for specific purposes. These purposes can range from providing structural support to facilitating connections, all the way to enabling ease of assembly and ...

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  4. The answer: it depends. Read this article to understand how to size an electric motor for a centrifugal pump. 9. Variable Speed Operation. Many pumps today are designed to operate at a range of speeds. While this is great news for pump system designers and end-users, it adds a layer of complexity for pump suppliers and manufacturers.

  5. Jun 7, 2019 · The centrifugal pump has two ports, an inlet, and also an outlet. The inlet is always through the centre, usually on a horizontal axis, as is refereed to as the suction line. Whereas the exit is on the vertical axis and this is known as the discharge line. The impeller should always be submerged in water, otherwise it will not be able to draw ...

  6. 36 - Basic Principles and Pump Types. Need to refresh your basic knowledge of how pumps work and are categorised? This course tells you what you need to know. Although the examples presented refer to water systems, the course is relevant for other applications. Start course.

  7. Mar 3, 2020 · Centrifugal Pump. The pumps consist of two main parts, the pump and the motor. The motor is an electrical induction motor which allows us to convert electrical energy into mechanical energy. This mechanical energy is used to drive the pump and move the water. The pump pulls water in through the inlet and pushes it out through the outlet.

  8. The most common water pumps are powered by electrical motors that rotate an impeller. This impeller pushes and swirls the water inside the pump casing, speeding it up. From there, the water is slowed down thanks to the shape of the casing to turn its energy into pressure before being discharged through a pipe or hose.

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