Simulation modeling and analysis of a complex system of a thermal power plant
The present paper deals with the opportunities for the modeling of flue gas and air system of a thermal power plant by making the performance evaluation using probabilistic approach. The present system of thermal plant under study consists of four subsystems with three possible states: full working,...
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doaj-b8c6bcd02bcc423fb4d6d314010010d32020-11-24T23:48:17ZengOmniaScienceJournal of Industrial Engineering and Management2013-84232013-09532009-09-012238740610.3926/jiem..v2n2.p387-40634Simulation modeling and analysis of a complex system of a thermal power plantSorabh Gupta0Puran C. Tewari1Haryana College of Technology & ManagementNational Institute of TechnologyThe present paper deals with the opportunities for the modeling of flue gas and air system of a thermal power plant by making the performance evaluation using probabilistic approach. The present system of thermal plant under study consists of four subsystems with three possible states: full working, reduced capacity working and failed. Failure and repair rates for all the subsystems are assumed to be constant. Formulation of the problem is carried out using Markov Birth-Death process using probabilistic approach and a transition diagram represents the operational behavior of the system. Interrelationship among the full working and reduced working has been developed. A probabilistic model has been developed, considering some assumptions. Data in feasible range are selected from a survey of thermal plant and the effect of each subsystem on the system availability is tabulated in the form of availability matrices, which provides various performance/availability levels for different combinations of failure and repair rates of all subsystems. Based upon various availability values obtained in availability matrices and graphs of failure/repair rates of different subsystems, performance and optimum values of failure/repair rates for maximum availability, of each subsystem is analyzed and then maintenance priorities are decided for all subsystems.http://www.jiem.org/index.php/jiem/article/view/63performance evaluation, probabilistic approach, transition diagram and availability matrices |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sorabh Gupta Puran C. Tewari |
spellingShingle |
Sorabh Gupta Puran C. Tewari Simulation modeling and analysis of a complex system of a thermal power plant Journal of Industrial Engineering and Management performance evaluation, probabilistic approach, transition diagram and availability matrices |
author_facet |
Sorabh Gupta Puran C. Tewari |
author_sort |
Sorabh Gupta |
title |
Simulation modeling and analysis of a complex system of a thermal power plant |
title_short |
Simulation modeling and analysis of a complex system of a thermal power plant |
title_full |
Simulation modeling and analysis of a complex system of a thermal power plant |
title_fullStr |
Simulation modeling and analysis of a complex system of a thermal power plant |
title_full_unstemmed |
Simulation modeling and analysis of a complex system of a thermal power plant |
title_sort |
simulation modeling and analysis of a complex system of a thermal power plant |
publisher |
OmniaScience |
series |
Journal of Industrial Engineering and Management |
issn |
2013-8423 2013-0953 |
publishDate |
2009-09-01 |
description |
The present paper deals with the opportunities for the modeling of flue gas and air system of a thermal power plant by making the performance evaluation using probabilistic approach. The present system of thermal plant under study consists of four subsystems with three possible states: full working, reduced capacity working and failed. Failure and repair rates for all the subsystems are assumed to be constant. Formulation of the problem is carried out using Markov Birth-Death process using probabilistic approach and a transition diagram represents the operational behavior of the system. Interrelationship among the full working and reduced working has been developed. A probabilistic model has been developed, considering some assumptions. Data in feasible range are selected from a survey of thermal plant and the effect of each subsystem on the system availability is tabulated in the form of availability matrices, which provides various performance/availability levels for different combinations of failure and repair rates of all subsystems. Based upon various availability values obtained in availability matrices and graphs of failure/repair rates of different subsystems, performance and optimum values of failure/repair rates for maximum availability, of each subsystem is analyzed and then maintenance priorities are decided for all subsystems. |
topic |
performance evaluation, probabilistic approach, transition diagram and availability matrices |
url |
http://www.jiem.org/index.php/jiem/article/view/63 |
work_keys_str_mv |
AT sorabhgupta simulationmodelingandanalysisofacomplexsystemofathermalpowerplant AT puranctewari simulationmodelingandanalysisofacomplexsystemofathermalpowerplant |
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