Complex Engineering Problem: In chemical Industrial plants liquid tanks are used to keep liquid whose level...
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Complex Engineering Problem: In chemical Industrial plants liquid tanks are used to keep liquid whose level must be maintained up to a certain points. To accomplish this task Induction motors are widely used to control Inlet flow of liquid based on level signal, coming from level sensor? Speed of induction motor can be controlled by AC drive. Design a control mechanism which accurately control the speed of induction motor based on following requirements a) Changing of the tank level due to the variations of outlet liquid quantities brings to as quickly and accurately as the defined point. b) As the liquid level goes down for 500 millimeters from its upper threshold level it must be re maintained to original level within 5 Sec (keep the volume of tank=100000 cubic centimeter) c) The liquid level should never exceed the upper threshold level. Submit the solution in form of report (4-6 Pages) that must include, 1. Introduction 2. Literature Review 3. Methodology 4. Results 5. Conclusion 6. References Complex Engineering Problem: In chemical Industrial plants liquid tanks are used to keep liquid whose level must be maintained up to a certain points. To accomplish this task Induction motors are widely used to control Inlet flow of liquid based on level signal, coming from level sensor? Speed of induction motor can be controlled by AC drive. Design a control mechanism which accurately control the speed of induction motor based on following requirements a) Changing of the tank level due to the variations of outlet liquid quantities brings to as quickly and accurately as the defined point. b) As the liquid level goes down for 500 millimeters from its upper threshold level it must be re maintained to original level within 5 Sec (keep the volume of tank=100000 cubic centimeter) c) The liquid level should never exceed the upper threshold level. Submit the solution in form of report (4-6 Pages) that must include, 1. Introduction 2. Literature Review 3. Methodology 4. Results 5. Conclusion 6. References
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Related Book For
Process Dynamics And Control
ISBN: 978-0471000778
2nd Edition
Authors: Dale E. Seborg, Thomas F. Edgar, Duncan A. Mellich
Posted Date:
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