Arată înregistrarea sumară a articolului

dc.contributor.authorCazacu, Nelu
dc.contributor.authorBadea, Nicolae
dc.contributor.authorDobrovici, Sorin
dc.date.accessioned2018-11-14T11:46:49Z
dc.date.available2018-11-14T11:46:49Z
dc.date.issued2009
dc.identifier.issn1453 – 083X
dc.identifier.urihttp://10.11.10.50/xmlui/handle/123456789/5660
dc.descriptionTHE ANNALS OF “DUNAREA DE JOS” UNIVERSITY OF GALATI. FASCICLE IX. METALLURGY AND MATERIALS SCIENCE N0. 1 – 2009, ISSN 1453 – 083Xro_RO
dc.description.abstractMicrotrigeneration systems are characterized by simultaneous generation of power, heat and cold for small applications (<50kW) and are designed for reducing GHG and other emission degreases. The cooling generation by absorption or adsorptions of heat is the most sensible stage of mCCHP systems.The paper si based on the global mathematical model for a mCCHP system with thermal prime mover. The conceptual design of an mCCHP and was estabilished the influenece factors over the global efficiency of the system. The weight of influence factors was made using a Quality Engineering procedure (typised orthogonal array. An adequate mathematic model (ANOVA) was used for weight of factor influence prediction, with a view to global efficiency maximization. The simulation results showing signal and noise factors and these results are important for system design, selection of subsystem, selection of materials and optimal regime settings.ro_RO
dc.language.isoenro_RO
dc.publisherUniversitatea "Dunărea de Jos" din Galațiro_RO
dc.subjectmicrotrigenerationsro_RO
dc.subjectquality engineeringro_RO
dc.titleQuality Engineering Procedures Applied to Determine the Weight of Influence of Factors on Microtrigeneration Systems (mCCHP)ro_RO
dc.typeArticlero_RO


Fișiere la acest articol

Thumbnail

Acest articol apare în următoarele colecții(s)

Arată înregistrarea sumară a articolului