P5.4 A process contains a storage vat, v1, which is fed by the outflow of a vat, v2, of similar dimensions. The cross-sectional area of both vats is constant at 15 m². The output flow from v, is measured by a flow transducer which provides an output of 1.2 V for a change of 1 m/s in flow. The input to vat v, is controlled by a pump which produces a flow of 2 m3/s for every 1 A. The gravity outflow from the first tank is controlled by a variable restriction, K, on the outlet pipe.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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P5.4 A process contains a storage vat, vị, which is fed by the outflow of a vat, v2, of similar dimensions.
The cross-sectional area of both vats is constant at 15 m2. The output flow from v, is measured by a
flow transducer which provides an output of 1.2 V for a change of 1 m3/s in flow. The input to vat vą is
controlled by a pump which produces a flow of 2 m/s for every 1 A. The gravity outflow from the first
tank is controlled by a variable restriction, K, on the outlet pipe.
(a) Produce a schematic diagram for the system.
(b) Develop the modelling equations for the process.
(c) Write down the block diagram using Laplace transform notation for the mathematics.
Transcribed Image Text:P5.4 A process contains a storage vat, vị, which is fed by the outflow of a vat, v2, of similar dimensions. The cross-sectional area of both vats is constant at 15 m2. The output flow from v, is measured by a flow transducer which provides an output of 1.2 V for a change of 1 m3/s in flow. The input to vat vą is controlled by a pump which produces a flow of 2 m/s for every 1 A. The gravity outflow from the first tank is controlled by a variable restriction, K, on the outlet pipe. (a) Produce a schematic diagram for the system. (b) Develop the modelling equations for the process. (c) Write down the block diagram using Laplace transform notation for the mathematics.
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