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Title: :  Simulation of Multi Component Distillation Column Using Open-Source Simulator
PaperId: :  17040
Published in:   International Journal Of Advance Research And Innovative Ideas In Education
Publisher:   IJARIIE
e-ISSN:   2395-4396
Volume/Issue:    Volume 8 Issue 3 2022
DUI:    16.0415/IJARIIE-17040
Licence: :   IJARIIE is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.

Author NameAuthor Institute
Aaditya Patil Department of Chemical Engineering Pravara Rural Engineering College, Loni, Dist.: Ahmednagar- 413736.
Nikhil Patil Department of Chemical Engineering Pravara Rural Engineering College, Loni, Dist.: Ahmednagar- 413736.
Saurabh Wadekar Department of Chemical Engineering Pravara Rural Engineering College, Loni, Dist.: Ahmednagar- 413736.
Dr. B. L. PangarkarDepartment of Chemical Engineering Pravara Rural Engineering College, Loni, Dist.: Ahmednagar- 413736.

Abstract

Chemical Engineering
Multi Component Distillation, Process Simulation, Modeling and Simulation, Rig. Distillation Column, DW SIM, Open Source Media.
Process simulation is a successful tool for design, optimization and control of chemical processes. Chemical industry process simulations support the entire life cycle of a chemical process from development, design and construction to optimization of operation. Distillation is the most commonly used separation process in the chemistry and petrochemical industry, mostly employed in continuous processes but also used in discontinuous processes. Multicomponent distillation use for separation of more than two components. For such operation needs two columns for separation of components. Most of the distillation processes involve with more than two components. The multicomponent separations are carried out by using the same type of distillation columns, reboilers, condensers, heat exchangers. In multicomponent systems same degree of freedom is not achieved because of the presence of other components. We simulating Rig-Distillation column which giving results as Condenser Duty and Reboiler Duty 27773.3 KW and -28958 KW resp. Also have Min. R. R. equal to 0.57136*1.5 = 0.85704. Simulated Rig-Distillation column also Flow Stream Data and Temperature Data At Various Stages. Min. number of feed stages are 12 excluding Reboiler. As per results simulation gives quick results for multicomponent distillation column that also getting from practically from piolet plants. Practical methods is time consuming and has costly. We simulating Rig-Distillation column which giving results as Condenser Duty and Reboiler Duty 25838 KW and -31215.4 KW resp. Also have Min. R. R. equal to 0.57136*1.1 = 0.6284. Simulated Rig-Distillation column also Flow Stream Data and Temperature Data At Various Stages. Min. number of feed stages are 20 excluding Reboiler. Optimal feed condition is 9. We simulating Rig-Distillation column which giving results as Condenser Duty and Reboiler Duty 26744.7 KW and -32121.5 KW resp. Also have Min. R. R. equal to 0.57136*1.2 = 0.6856. Simulated Rig-Distillation column also Flow Stream Data and Temperature Data At Various Stages. Min. number of feed stages are 17 excluding Reboiler. Optimal feed condition is 7. We simulating Rig-Distillation column which giving results as Condenser Duty and Reboiler Duty 27651 KW and -33028.5 KW resp. Also have Min. R. R. equal to 0.57136*1.3 = 0.7427. Simulated Rig-Distillation column also Flow Stream Data and Temperature Data At Various Stages. Min. number of feed stages are 16 excluding Reboiler. Optimal feed condition is 7 We simulating Rig-Distillation column which giving results as Condenser Duty and Reboiler Duty 27651 KW and -33934.8 KW resp. Also have Min. R. R. equal to 0.57136*1.4 = 0.7999. Simulated Rig-Distillation column also Flow Stream Data and Temperature Data At Various Stages. Min. number of feed stages are 14 excluding Reboiler. Optimal feed condition is 7. As per simulation date we simulating the rig. Column for different R. R. ration as taken Min. R. R. *1.1, Min. R. R. *1.2, Min. R. R. *1.3, Min. R. R. *1.4 and Min. R. R. *1.5. By simulation study value of min. reflux ration increase the decrease in the number of stages and but increase the reboiler duty and coolant load also increase for condenser. For R.R. 1.5*Min, R.R. is optimum value where optimum number of stages are requires and also min. heat load on reboiler and min. coolant supply to condenser. Hence, according to results, the best suitable value while selecting R. R. will be 1.5 times of Min. R. R.

Citations

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IJARIIE Aaditya Patil , Nikhil Patil , Saurabh Wadekar , and Dr. B. L. Pangarkar. "Simulation of Multi Component Distillation Column Using Open-Source Simulator" International Journal Of Advance Research And Innovative Ideas In Education Volume 8 Issue 3 2022 Page 2514-2523
MLA Aaditya Patil , Nikhil Patil , Saurabh Wadekar , and Dr. B. L. Pangarkar. "Simulation of Multi Component Distillation Column Using Open-Source Simulator." International Journal Of Advance Research And Innovative Ideas In Education 8.3(2022) : 2514-2523.
APA Aaditya Patil , Nikhil Patil , Saurabh Wadekar , & Dr. B. L. Pangarkar. (2022). Simulation of Multi Component Distillation Column Using Open-Source Simulator. International Journal Of Advance Research And Innovative Ideas In Education, 8(3), 2514-2523.
Chicago Aaditya Patil , Nikhil Patil , Saurabh Wadekar , and Dr. B. L. Pangarkar. "Simulation of Multi Component Distillation Column Using Open-Source Simulator." International Journal Of Advance Research And Innovative Ideas In Education 8, no. 3 (2022) : 2514-2523.
Oxford Aaditya Patil , Nikhil Patil , Saurabh Wadekar , and Dr. B. L. Pangarkar. 'Simulation of Multi Component Distillation Column Using Open-Source Simulator', International Journal Of Advance Research And Innovative Ideas In Education, vol. 8, no. 3, 2022, p. 2514-2523. Available from IJARIIE, https://ijariie.com/AdminUploadPdf/Simulation_of_Multi_Component_Distillation_Column_Using_Open_Source_Simulator_ijariie17040.pdf (Accessed : 28 July 2024).
Harvard Aaditya Patil , Nikhil Patil , Saurabh Wadekar , and Dr. B. L. Pangarkar. (2022) 'Simulation of Multi Component Distillation Column Using Open-Source Simulator', International Journal Of Advance Research And Innovative Ideas In Education, 8(3), pp. 2514-2523IJARIIE [Online]. Available at: https://ijariie.com/AdminUploadPdf/Simulation_of_Multi_Component_Distillation_Column_Using_Open_Source_Simulator_ijariie17040.pdf (Accessed : 28 July 2024)
IEEE Aaditya Patil , Nikhil Patil , Saurabh Wadekar , and Dr. B. L. Pangarkar, "Simulation of Multi Component Distillation Column Using Open-Source Simulator," International Journal Of Advance Research And Innovative Ideas In Education, vol. 8, no. 3, pp. 2514-2523, May-Jun 2022. [Online]. Available: https://ijariie.com/AdminUploadPdf/Simulation_of_Multi_Component_Distillation_Column_Using_Open_Source_Simulator_ijariie17040.pdf [Accessed : 28 July 2024].
Turabian Aaditya Patil , Nikhil Patil , Saurabh Wadekar , and Dr. B. L. Pangarkar. "Simulation of Multi Component Distillation Column Using Open-Source Simulator." International Journal Of Advance Research And Innovative Ideas In Education [Online]. volume 8 number 3 (28 July 2024).
Vancouver Aaditya Patil , Nikhil Patil , Saurabh Wadekar , and Dr. B. L. Pangarkar. Simulation of Multi Component Distillation Column Using Open-Source Simulator. International Journal Of Advance Research And Innovative Ideas In Education [Internet]. 2022 [Cited : 28 July 2024]; 8(3) : 2514-2523. Available from: https://ijariie.com/AdminUploadPdf/Simulation_of_Multi_Component_Distillation_Column_Using_Open_Source_Simulator_ijariie17040.pdf
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