Please use this identifier to cite or link to this item: http://elar.urfu.ru/handle/10995/90774
Title: Heat transfer intensity of pulsating gas flows in the exhaust system elements of a piston engine
Authors: Plotnikov, L. V.
Brodov, Y. M.
Misnik, M. O.
Issue Date: 2019
Publisher: EDP Sciences
Citation: Plotnikov, L. V. Heat transfer intensity of pulsating gas flows in the exhaust system elements of a piston engine / L. V. Plotnikov, Y. M. Brodov, M. O. Misnik. — DOI 10.1051/e3sconf/201912401015 // E3S Web of Conferences. — 2019. — Iss. 124. — 1015.
Abstract: Internal combustion engines are the most common sources of energy among heat engines. Therefore, the improvement of their design and workflow is an urgent task in the development of world energy. Thermal-mechanical perfection of the exhaust system has a significant impact on the technical and economic performance of piston engines. The article presents the results of experimental studies of gas-dynamics and heat exchange of pulsating gas flows in the exhaust system of a piston engine. Studies were carried out on a full-scale model of a single-cylinder engine. The article describes the instrument-measuring base and methods of experiments. The heat transfer intensity was estimated in different elements of the exhaust system: the exhaust pipe, the channel in the cylinder head, the valve assembly. Heat transfer studies were carried out taking into account the gas-dynamic nonstationarity characteristic of gas exchange processes in engines. The article presents data on the influence of gas-dynamic and regime factors on the heat transfer intensity. It is shown that the restructuring of the gas flow structure in the exhaust system occurs depending on the engine crankshaft speed, this has a significant impact on the local heat transfer coefficient. It has been established that the heat transfer intensity in the valve assembly is 2-3 times lower than in other elements of the exhaust system. © The Authors, published by EDP Sciences.
Keywords: CRANKSHAFTS
CYLINDER HEADS
FLOW OF GASES
GAS DYNAMICS
GASES
HEAT TRANSFER
PISTONS
ECONOMIC PERFORMANCE
ENGINE CRANKSHAFTS
FULL-SCALE MODELING
GAS EXCHANGE PROCESS
LOCAL HEAT TRANSFER COEFFICIENT
NON-STATIONARITIES
SINGLE CYLINDER ENGINE
SYSTEM ELEMENTS
EXHAUST SYSTEMS (ENGINE)
URI: http://elar.urfu.ru/handle/10995/90774
Access: info:eu-repo/semantics/openAccess
cc-by
SCOPUS ID: 85074969683
PURE ID: 11333893
ISSN: 2555-0403
DOI: 10.1051/e3sconf/201912401015
Sponsorship: Russian Science Foundation, RSF: 18-79-10003
The work has been supported by the Russian Science Foundation (grant No. 18-79-10003).
RSCF project card: 18-79-10003
Appears in Collections:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

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