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dc.contributor.authorGalashov, Nikolay Nikitovichen
dc.contributor.authorTsibulskii (Tsibulskiy), Svyatoslav Anatolievichen
dc.contributor.authorSerova, Tatianaen
dc.date.accessioned2016-10-27T08:36:24Z-
dc.date.available2016-10-27T08:36:24Z-
dc.date.issued2016-
dc.identifier.citationGalashov N. N. Analysis of the Properties of Working Substances for the Organic Rankine Cycle based Database "REFPROP" / N. N. Galashov, S. A. Tsibulskii (Tsibulskiy), T. Serova // European Physical Journal Web of Conferences (EPJ Web of Conferences). — 2016. — Vol. 110 : Thermophysical Basis of Energy Technologies : Proceedings of the Conference, October 13-15, 2015, Tomsk, Russia. — [01068, 6 p.].ru
dc.identifier.urihttp://earchive.tpu.ru/handle/11683/33401-
dc.description.abstractThe object of the study are substances that are used as a working fluid in systems operating on the basis of an organic Rankine cycle. The purpose of research is to find substances with the best thermodynamic, thermal and environmental properties. Research conducted on the basis of the analysis of thermodynamic and thermal properties of substances from the base "REFPROP" and with the help of numerical simulation of combined-cycle plant utilization triple cycle, where the lower cycle is an organic Rankine cycle. Base "REFPROP" describes and allows to calculate the thermodynamic and thermophysical parameters of most of the main substances used in production processes. On the basis of scientific publications on the use of working fluids in an organic Rankine cycle analysis were selected ozone-friendly low-boiling substances: ammonia, butane, pentane and Freon: R134a, R152a, R236fa and R245fa. For these substances have been identified and tabulated molecular weight, temperature of the triple point, boiling point, at atmospheric pressure, the parameters of the critical point, the value of the derivative of the temperature on the entropy of the saturated vapor line and the potential ozone depletion and global warming. It was also identified and tabulated thermodynamic and thermophysical parameters of the steam and liquid substances in a state of saturation at a temperature of 15 °C. This temperature is adopted as the minimum temperature of heat removal in the Rankine cycle when working on the water. Studies have shown that the best thermodynamic, thermal and environmental properties of the considered substances are pentane, butane and R245fa. For a more thorough analysis based on a gas turbine plant NK-36ST it has developed a mathematical model of combined cycle gas turbine (CCGT) triple cycle, where the lower cycle is an organic Rankine cycle, and is used as the air cooler condenser. Air condenser allows stating material at a temperature below 0 °C. Calculation of the parameters of all substances in the model are based on a base "REFPROP". Numerical investigations on this model showed that the highest net efficiency will be at work on pentane. Butane and R245fa have the same net efficiency, for 0.8% lower than pentane. Ammonia has a net efficiency of 2.5% is lower than pentane. CCP net efficiency strongly depends on the condensation temperature of the substance, as for pentane at lower temperature of condensation at 10 °C it is increased by 1%.en
dc.language.isoenen
dc.publisherEDP Sciencesru
dc.relation.ispartofEuropean Physical Journal Web of Conferences (EPJ Web of Conferences). Vol. 110 : Thermophysical Basis of Energy Technologies. — Les Ulis, 2016.ru
dc.rightsinfo:eu-repo/semantics/openAccessen
dc.subjectчисленное моделированиеru
dc.subjectцикл Ренкинаru
dc.subjectнизкокипящие веществаru
dc.subjectгазовые турбиныru
dc.titleAnalysis of the Properties of Working Substances for the Organic Rankine Cycle based Database "REFPROP"en
dc.typeConference Paperen
dc.typeinfo:eu-repo/semantics/publishedVersionen
dc.typeinfo:eu-repo/semantics/conferencePaperen
dcterms.audienceResearchesen
local.departmentНациональный исследовательский Томский политехнический университет (ТПУ)::Энергетический институт (ЭНИН)::Кафедра атомных и тепловых электростанций (АТЭС)ru
local.description.firstpage1068-
local.filepathhttp://dx.doi.org/10.1051/epjconf/201611001068-
local.identifier.bibrecRU\TPU\network\12879-
local.identifier.colkeyRU\TPU\col\18683-
local.identifier.perskeyRU\TPU\pers\34296-
local.identifier.perskeyRU\TPU\pers\34297-
local.localtypeДокладru
local.volume110-
local.conference.nameThermophysical Basis of Energy Technologies-
local.conference.date2015-
dc.identifier.doi10.1051/epjconf/201611001068-
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