Risk of Overwarming for Flow Variation Into an Absorption Heat Transformer for Waste Heat Recovery Process

For waste heat recovery process there are some thermodynamic options with efficiencies depending on some equilibrium parameters. The global warming is a permanent concern in the industries with thermal process at any temperature level. One of the promiser systems for recover waste energy from relati...

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Main Authors: Suset Vazquez - Aveledo, Lorena Diaz-Gonzalez, Moises Montiel-Gonzalez, Rosenberg J Romero
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2022-06-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/12325
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author Suset Vazquez - Aveledo
Lorena Diaz-Gonzalez
Moises Montiel-Gonzalez
Rosenberg J Romero
author_facet Suset Vazquez - Aveledo
Lorena Diaz-Gonzalez
Moises Montiel-Gonzalez
Rosenberg J Romero
author_sort Suset Vazquez - Aveledo
collection DOAJ
description For waste heat recovery process there are some thermodynamic options with efficiencies depending on some equilibrium parameters. The global warming is a permanent concern in the industries with thermal process at any temperature level. One of the promiser systems for recover waste energy from relative medium temperature level (70°C – 100 °C) is the absorption heat transformers. These thermodynamic devices are under research for several technical aspects: efficiency, corrosion, economic benefit and social impacts. These devices are a kind of heat pump: inverse absorption heat pump. The main advantage of these devices is the increment of the temperature using half part of the heat load to increase a third part of that heat at a higher temperature level (i.e., 140°C). The use of additives to achieve this process is mainly part of the success of the process. However, the control of the device is under research and development to get the higher heat recovery at the higher hemodynamic equilibrium temperature. The flow increment leads to variation of the Absorption Heat Transformer’s Coefficient of performance (COP). This variation may cause an undesirable overwarming into the absorption cycle that cause diminish of the COP and it is a risk for the thermodynamic cycle for increase of the highest-pressure zone in the process. This paper shows the thermodynamic operating conditions based on Flow Ratio calculation with the lower risk for operation based on the flow control of the refrigerant for a Carrol – Water absorption heat transformer.
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spelling doaj.art-cc5fab03600d4bd997a83268e8d2c22b2022-12-22T02:37:58ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162022-06-019110.3303/CET2291063Risk of Overwarming for Flow Variation Into an Absorption Heat Transformer for Waste Heat Recovery ProcessSuset Vazquez - AveledoLorena Diaz-GonzalezMoises Montiel-GonzalezRosenberg J RomeroFor waste heat recovery process there are some thermodynamic options with efficiencies depending on some equilibrium parameters. The global warming is a permanent concern in the industries with thermal process at any temperature level. One of the promiser systems for recover waste energy from relative medium temperature level (70°C – 100 °C) is the absorption heat transformers. These thermodynamic devices are under research for several technical aspects: efficiency, corrosion, economic benefit and social impacts. These devices are a kind of heat pump: inverse absorption heat pump. The main advantage of these devices is the increment of the temperature using half part of the heat load to increase a third part of that heat at a higher temperature level (i.e., 140°C). The use of additives to achieve this process is mainly part of the success of the process. However, the control of the device is under research and development to get the higher heat recovery at the higher hemodynamic equilibrium temperature. The flow increment leads to variation of the Absorption Heat Transformer’s Coefficient of performance (COP). This variation may cause an undesirable overwarming into the absorption cycle that cause diminish of the COP and it is a risk for the thermodynamic cycle for increase of the highest-pressure zone in the process. This paper shows the thermodynamic operating conditions based on Flow Ratio calculation with the lower risk for operation based on the flow control of the refrigerant for a Carrol – Water absorption heat transformer.https://www.cetjournal.it/index.php/cet/article/view/12325
spellingShingle Suset Vazquez - Aveledo
Lorena Diaz-Gonzalez
Moises Montiel-Gonzalez
Rosenberg J Romero
Risk of Overwarming for Flow Variation Into an Absorption Heat Transformer for Waste Heat Recovery Process
Chemical Engineering Transactions
title Risk of Overwarming for Flow Variation Into an Absorption Heat Transformer for Waste Heat Recovery Process
title_full Risk of Overwarming for Flow Variation Into an Absorption Heat Transformer for Waste Heat Recovery Process
title_fullStr Risk of Overwarming for Flow Variation Into an Absorption Heat Transformer for Waste Heat Recovery Process
title_full_unstemmed Risk of Overwarming for Flow Variation Into an Absorption Heat Transformer for Waste Heat Recovery Process
title_short Risk of Overwarming for Flow Variation Into an Absorption Heat Transformer for Waste Heat Recovery Process
title_sort risk of overwarming for flow variation into an absorption heat transformer for waste heat recovery process
url https://www.cetjournal.it/index.php/cet/article/view/12325
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