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The study indicates conclusively that the evaporation process has a significant impact on the intensity and nonlinear behavior of the system of interest, vis-\u00e0-vis a model accounting for only the gaseous combustion process. Moreover, a minimum entropy control method is employed to control the chaotic behavior inherent to the system of interest. This algorithm is intended to be implemented for control of combustion instability numerically and experimentally to provide a basis for some of the control methodologies employed in the literature. <\/jats:p>","DOI":"10.1142\/s0218127410026447","type":"journal-article","created":{"date-parts":[[2010,4,23]],"date-time":"2010-04-23T04:22:11Z","timestamp":1271996531000},"page":"1245-1254","source":"Crossref","is-referenced-by-count":6,"title":["NONLINEAR\/CHAOTIC MODELING AND CONTROL OF COMBUSTION INSTABILITIES"],"prefix":"10.1142","volume":"20","author":[{"given":"S.","family":"LEI","sequence":"first","affiliation":[{"name":"School of Mechanical, Aerospace and Civil Engineering, The University of Manchester, P.O. Box 88, Manchester M60 1QD, UK"}],"role":[{"role":"author","vocabulary":"crossref"}]},{"given":"A.","family":"TURAN","sequence":"additional","affiliation":[{"name":"School of Mechanical, Aerospace and Civil Engineering, The University of Manchester, P.O. 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