On the Impact of the Dynamics of Heat Transfer of the Thermal Machine Working Fluid and Heat Sources on the Shape of the Boundary of the Set of Realizable Regimes

From the point of view of finite time thermodynamics, the performance boundaries of thermal machines are considered, taking into account the irreversibility of the heat exchange processes of the working fluid with hot and cold sources. We show how the dynamics of heat exchange affects the shape of t...

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Main Authors: Margarita A. Zaeva, Anatoly M. Tsirlin, Olga V. Didina
Format: Article
Language:English
Published: MDPI AG 2019-04-01
Series:ChemEngineering
Subjects:
Online Access:https://www.mdpi.com/2305-7084/3/2/36
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spelling doaj-1546c10fa9a64e9db791c30eb79742522020-11-24T21:44:27ZengMDPI AGChemEngineering2305-70842019-04-01323610.3390/chemengineering3020036chemengineering3020036On the Impact of the Dynamics of Heat Transfer of the Thermal Machine Working Fluid and Heat Sources on the Shape of the Boundary of the Set of Realizable RegimesMargarita A. Zaeva0Anatoly M. Tsirlin1Olga V. Didina2Institute of Cyber Intelligence Systems, National Research Nuclear University MEPhI (Moscow Engineering Physics Institute), Kashirskoe shosse, 31, 115409 Moscow, RussiaA. Aylamazyan Program Systems Institute of Russian Academy of Sciences, Petra Pervogo str., 4A, Pereslavl-Zalessky Yaroslavl Region, Veskovo village, 152020 Moscow, RussiaA. Aylamazyan Program Systems Institute of Russian Academy of Sciences, Petra Pervogo str., 4A, Pereslavl-Zalessky Yaroslavl Region, Veskovo village, 152020 Moscow, RussiaFrom the point of view of finite time thermodynamics, the performance boundaries of thermal machines are considered, taking into account the irreversibility of the heat exchange processes of the working fluid with hot and cold sources. We show how the dynamics of heat exchange affects the shape of the optimal cycle of a heat engine and its performance, in particular, energy conversion efficiency in the maximum power mode. This energy conversion efficiency can depend only on the ratio of the heat transfer coefficients to the sources, or not depend on them at all. A class of dynamic functions corresponding to “natural„ requirements is introduced and it is shown that, for any dynamics from this class, the optimal cycle consists of two isotherms and two adiabats, not only for the maximum power problem, but also for the problem of maximum energy conversion efficiency at a given power. Examples are given for calculating the parameters of the optimal cycle for the cases when the heat transfer coefficient to the cold source is arbitrarily large, and for dynamics in the form of a linear phenomenological (Fourier heat transfer) law.https://www.mdpi.com/2305-7084/3/2/36finite time thermodynamicsdynamics of heat exchangeoptimal cycle
collection DOAJ
language English
format Article
sources DOAJ
author Margarita A. Zaeva
Anatoly M. Tsirlin
Olga V. Didina
spellingShingle Margarita A. Zaeva
Anatoly M. Tsirlin
Olga V. Didina
On the Impact of the Dynamics of Heat Transfer of the Thermal Machine Working Fluid and Heat Sources on the Shape of the Boundary of the Set of Realizable Regimes
ChemEngineering
finite time thermodynamics
dynamics of heat exchange
optimal cycle
author_facet Margarita A. Zaeva
Anatoly M. Tsirlin
Olga V. Didina
author_sort Margarita A. Zaeva
title On the Impact of the Dynamics of Heat Transfer of the Thermal Machine Working Fluid and Heat Sources on the Shape of the Boundary of the Set of Realizable Regimes
title_short On the Impact of the Dynamics of Heat Transfer of the Thermal Machine Working Fluid and Heat Sources on the Shape of the Boundary of the Set of Realizable Regimes
title_full On the Impact of the Dynamics of Heat Transfer of the Thermal Machine Working Fluid and Heat Sources on the Shape of the Boundary of the Set of Realizable Regimes
title_fullStr On the Impact of the Dynamics of Heat Transfer of the Thermal Machine Working Fluid and Heat Sources on the Shape of the Boundary of the Set of Realizable Regimes
title_full_unstemmed On the Impact of the Dynamics of Heat Transfer of the Thermal Machine Working Fluid and Heat Sources on the Shape of the Boundary of the Set of Realizable Regimes
title_sort on the impact of the dynamics of heat transfer of the thermal machine working fluid and heat sources on the shape of the boundary of the set of realizable regimes
publisher MDPI AG
series ChemEngineering
issn 2305-7084
publishDate 2019-04-01
description From the point of view of finite time thermodynamics, the performance boundaries of thermal machines are considered, taking into account the irreversibility of the heat exchange processes of the working fluid with hot and cold sources. We show how the dynamics of heat exchange affects the shape of the optimal cycle of a heat engine and its performance, in particular, energy conversion efficiency in the maximum power mode. This energy conversion efficiency can depend only on the ratio of the heat transfer coefficients to the sources, or not depend on them at all. A class of dynamic functions corresponding to “natural„ requirements is introduced and it is shown that, for any dynamics from this class, the optimal cycle consists of two isotherms and two adiabats, not only for the maximum power problem, but also for the problem of maximum energy conversion efficiency at a given power. Examples are given for calculating the parameters of the optimal cycle for the cases when the heat transfer coefficient to the cold source is arbitrarily large, and for dynamics in the form of a linear phenomenological (Fourier heat transfer) law.
topic finite time thermodynamics
dynamics of heat exchange
optimal cycle
url https://www.mdpi.com/2305-7084/3/2/36
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