Detail publikace
Modelování průtoku chladiva pístovým kompresorem
TUHOVČÁK, J. HEJČÍK, J. JÍCHA, M.
Český název
Modelování průtoku chladiva pístovým kompresorem
Anglický název
Modelling fluid flow in a reciprocating compressor
Typ
článek ve sborníku ve WoS nebo Scopus
Jazyk
en
Originální abstrakt
Efficiency of reciprocating compressor is strongly dependent on the valves characteristics, which affects the flow through the suction and discharge line. Understanding the phenomenon inside the compressor is necessary step in development process. Commercial CFD tools offer wide capabilities to simulate the flow inside the reciprocating compressor, however they are too complicated in terms of computational time and mesh creation. Several parameters describing compressor could be therefore examined without the CFD analysis, such is valve characteristic, flow through the cycle and heat transfer. The aim of this paper is to show a numerical tool for reciprocating compressor based on the energy balance through the cycle, which provides valve characteristics, flow through the cycle and heat losses from the cylinder. Spring-damping-mass model was used for the valve description. Boundary conditions were extracted from the performance test of 4-cylinder semihermetic compressor and numerical tool validation was performed with indicated p-V diagram comparison.
Český abstrakt
Efficiency of reciprocating compressor is strongly dependent on the valves characteristics, which affects the flow through the suction and discharge line. Understanding the phenomenon inside the compressor is necessary step in development process. Commercial CFD tools offer wide capabilities to simulate the flow inside the reciprocating compressor, however they are too complicated in terms of computational time and mesh creation. Several parameters describing compressor could be therefore examined without the CFD analysis, such is valve characteristic, flow through the cycle and heat transfer. The aim of this paper is to show a numerical tool for reciprocating compressor based on the energy balance through the cycle, which provides valve characteristics, flow through the cycle and heat losses from the cylinder. Spring-damping-mass model was used for the valve description. Boundary conditions were extracted from the performance test of 4-cylinder semihermetic compressor and numerical tool validation was performed with indicated p-V diagram comparison.
Anglický abstrakt
Efficiency of reciprocating compressor is strongly dependent on the valves characteristics, which affects the flow through the suction and discharge line. Understanding the phenomenon inside the compressor is necessary step in development process. Commercial CFD tools offer wide capabilities to simulate the flow inside the reciprocating compressor, however they are too complicated in terms of computational time and mesh creation. Several parameters describing compressor could be therefore examined without the CFD analysis, such is valve characteristic, flow through the cycle and heat transfer. The aim of this paper is to show a numerical tool for reciprocating compressor based on the energy balance through the cycle, which provides valve characteristics, flow through the cycle and heat losses from the cylinder. Spring-damping-mass model was used for the valve description. Boundary conditions were extracted from the performance test of 4-cylinder semihermetic compressor and numerical tool validation was performed with indicated p-V diagram comparison.
Klíčová slova česky
kompresor, simulace, CFD, ventil, přestup tepla
Klíčová slova anglicky
compressor, simulation, CFD, valve, heat transfer
Rok RIV
2015
Vydáno
06.05.2015
Nakladatel
EDP Sciences
Místo
France
ISSN
2100-014X
Kniha
EPJ Web of Conferences
Ročník
92
Číslo
2015
Strany od–do
1–5
Počet stran
5
BIBTEX
@inproceedings{BUT111219,
author="Ján {Tuhovčák} and Jiří {Hejčík} and Miroslav {Jícha},
title="Modelling fluid flow in a reciprocating compressor",
booktitle="EPJ Web of Conferences",
year="2015",
volume="92",
number="2015",
month="May",
pages="1--5",
publisher="EDP Sciences",
address="France",
issn="2100-014X"
}