series and parallel pump lab report

These pumps impart momentum to a fluid which then causes the fluid to move into the delivery chamber or outlet. SCM-00969 DATE OF SUBMISSION.


Experiment 10 Pumps Applied Fluid Mechanics Lab Manual

The needed flow rate depends on the height to which the fluid is pumped.

. Characteristics of Two Pumps in Series. EXPERIMENT 10 Pumps Series and Parallel Tests Background. Connect the stop-cocks as shown in Figure 1 if the handle parallel to the pipe valve open if the handle perpendicular to the pipe valve closed.

In this lab you will learn how resistors in series and parallel add and how these configurations affect the current flowing in the circuit. To findoutperformance of pumpsinparallel Equipment Figure 1. More closely we can also see that efficiency of pumps in series is better in lower flow rate ie at higher head delivered and pumps in parallel is better for higher flow rates and low head delivered.

Serial Parallel Pump Test Rig is specially designed to demonstrate the operating characteristics of centrifugal pump in series parallel or single pump operation. Each configuration single pump two pumps in series and two pumps in parallel will be tested at pump speeds of 60 70 and 80 revsec. Two similar pumps may be connected in parallel so that half the flow passes through one of the pumps and the other half through the second pump.

1 f Fluid Mechanics CLB 11003 Experiment 5. This experiment is conducted in series and parallel. Series and Parallel Pump Semester January 2016 Experimental Procedure Experiment 1.

The pressure drop when the series pump is bigger than the pump in parallelsince the result showed that pump in series connection can increase. Series and Parallel Circuits Lab Report Physics 2240 10 17 In this lab the circuits contain resistors. To findoutperformance of pumpsinseries iii.

Pumps while operating in series would develop other properties irrespective of heads they will develop some excess flowrate when compared to them individually Each pump develops the same head H at the corresponding capacity. The characteristic curves of pumps in series or parallel should be. The apparatus comprises two identical centrifugal pumpstogether with two bearing-mounted motors driving each pump independently.

HYDRAULICS LAB PRACTICE 9. Centrifugal pumps take up little floor space and create a uniform and nonpulsating flow. For each speed the bench regulating valve will be set to fully closed 25 50 75 and 100 open.

Lab1 3 2 Introductions Pumps are machines that used to transfer liquid from a location of low elevation to a higher elevation. The training unit operates in close loop. Pumps are used to move fluids from one location to another by imparting pressure to the fluid.

B Start pumps 1 and 2 and increase the speed until the pumps are operating at 60 revsec. Pumps in Series Pumps in Parallel BACKGROUND Pumps are used to transfer fluid in a system either at the same elevation or to a new height. LAB REPORT OF SERIES AND PARALLEL PUMPS EXPERIMENT.

22 Pumps in Parallel. A compact bench-top and fully self-contained centrifugal pump test set that allows students to find the characteristics of centrifugal pumps working alone or in series or parallel. The imparted pressure should be adequate enough to overcome the hydrostatic and hydrodynamic pressure drops commonly expressed in terms of head of liquid column in the flow system.

Recall from the last lab that resistance is the impedance to current flow. This training unit operates in close loop. The hydraulic power produced by pumps against flow rate are drawn.

C Turn the bench regulating valve to the fully closed position. For similar pumps twice the head gain for a single pump. 28 JANUARY 2010 LECTURER NAME.

The Serial Parallel Pump apparatus is specially designed to demonstrate to students the operating characteristics of centrifugal pump in series parallel or single pump operation. Objective of the Experiment. Sukesh AL Soundara Pandian STUDENT ID NO.

Series and Parallel pumps Armfield FM51 2. Switch on the water pump PA. In this experiment centrifugal pumps have been used to determine the flow rates and the pressure head.

Two typical options include parallel and series configurations of pumps which require a specific performance criteria. Centrifugal pumps take up little floor space and create a uniform and non-pulsating flow. Pump report 1.

Series and Parallel Pump pressure head of a single pump and of two identical pumps. Series and Parallel Circuits Lab Report. In serial operation the heads of the pumps are added and in parallel operation the flow rates capacities of the pumps are added.

Pumps in Series and in Parallel PART A. In this experiment flow rates and pressure head of a single pump and two identical pump that are running in series and parallel are observed and recorded. To determine pumpperformance ii.

To understand how pump characteristic curves are derived. CourseLaboratory in Wave Motion Electricity Magnetism and Optics PHYS 2240 Physics 2240 10917. Two pumps connected through a pipe work that allows them to be operated individually either in series or in parallel.

Series and Parallel Pumps. When two pumps operate in parallel the total head increase remains unchanged but the flow rate is increased. Even efficiency of pumps in series is higher than that in parallel.

Pumps in series produce twice the head for a given flow rate whereas pumps in parallel are expected to have twice the flow rate of single pump for a given head. STUDY OF CENTRIFUGAL PUMPS Objectives. Turbines and centrifugal pumps are of a rotodynamic type.

A Set up the hydraulics bench valves as shown in Figure 109 to perform the two pumps in series test. They have a relatively low operating and maintenance costs. Lab Report physics 2240 experiment series and parallel circuits austin ciervo abstract in the experiment we performed resistor and ammeter calibration as well.

Thus the first pump at capacity Q 1 develops the same head H as the second pump at capacity Q 2This commonality of head across parallel. Jason Abstract Pump is a used to transfer mechanical energy from a prime mover into fluid energy to produce the flow of liquids.


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