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dc.contributor.authorLai, A.en_US
dc.contributor.authorLin, Y. C.en_US
dc.contributor.authorWei, S. S.en_US
dc.contributor.authorChou, T. H.en_US
dc.contributor.authorLin, J. W.en_US
dc.contributor.authorWu, J. S.en_US
dc.contributor.authorChen, Y. S.en_US
dc.date.accessioned2018-08-21T05:53:01Z-
dc.date.available2018-08-21T05:53:01Z-
dc.date.issued2017-12-01en_US
dc.identifier.issn1727-7191en_US
dc.identifier.urihttp://dx.doi.org/10.1017/jmech.2017.3en_US
dc.identifier.urihttp://hdl.handle.net/11536/144173-
dc.description.abstractA compact hybrid rocket motor design that incorporates a dual-vortical-flow (DVF) concept is proposed. The oxidizer (nitrous oxide, N2O) is injected circumferentially into various sections of the rocket motor, which are sectored by several solid fuel "rings" (made of hydroxyl-terminated polybutadiene, HTPB) that are installed along the central axis of the motor. The proposed configuration not only increases the residence time of the oxidizer flow, it also implies an inherent "roll control" capability of the motor. Based on a DVF motor geometry with a designed thrust level of 11.6 kN, the characteristics of the turbulent reacting flow within the motor and its rocket performance were analyzed with a comprehensive numerical model that implements both real-fluid properties and finite-rate chemistry. Data indicate that the vacuum specific impulse (Isp) of the DVF motor could reach 278 s. The result from a preliminary ground test of a lab-scale DVF hybrid rocket motor (with a designed thrust level of 3,000 N) also shows promising performance. The proposed DVF concept is expected to partly resolve the issue of scalability, which remains challenging for hybrid rocket motors development.en_US
dc.language.isoen_USen_US
dc.subjectHybrid rocket motoren_US
dc.subjectComputational fluid dynamicsen_US
dc.subjectDual-vortical-flow designen_US
dc.subjectN2O/HTPBen_US
dc.titleNUMERICAL INVESTIGATION OF A N2O/HTPB HYBRID ROCKET MOTOR WITH A DUAL-VORTICAL-FLOW (DVF) DESIGNen_US
dc.typeArticleen_US
dc.identifier.doi10.1017/jmech.2017.3en_US
dc.identifier.journalJOURNAL OF MECHANICSen_US
dc.citation.volume33en_US
dc.citation.spage853en_US
dc.citation.epage862en_US
dc.contributor.department機械工程學系zh_TW
dc.contributor.departmentDepartment of Mechanical Engineeringen_US
dc.identifier.wosnumberWOS:000416951500011en_US
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