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Coabsorbent and Thermal Recovery Compression Heat Pumping Technologies  Mihail-Dan Staicovici  Buch  Heat and Mass Transfer  HC runder Rücken kaschiert  Englisch  2014  Springer-Verlag GmbH - Staicovici, Mihail-Dan
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Staicovici, Mihail-Dan:

Coabsorbent and Thermal Recovery Compression Heat Pumping Technologies Mihail-Dan Staicovici Buch Heat and Mass Transfer HC runder Rücken kaschiert Englisch 2014 Springer-Verlag GmbH - encuadernado, tapa blanda

2014, ISBN: 9783642546839

[ED: Gebunden], [PU: Springer-Verlag GmbH], This book introduces two of the most exciting heat pumping technologies, the coabsorbent and the thermal recovery (mechanical vapor) compressio… Más…

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Mihail-Dan Staicovici:

Coabsorbent and Thermal Recovery Compression Heat Pumping Technologies - encuadernado, tapa blanda

2014, ISBN: 9783642546839

This book introduces two of the most exciting heat pumping technologies, the coabsorbent and the thermal recovery (mechanical vapor) compression, characterized by a high potential in prim… Más…

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Mihail-Dan Staicovici:
Coabsorbent and Thermal Recovery Compression Heat Pumping Technologies - encuadernado, tapa blanda

ISBN: 9783642546839

This book introduces two of the most exciting heat pumping technologies, the coabsorbent and the thermal recovery (mechanical vapor) compression, characterized by a high potential in prim… Más…

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2014, ISBN: 9783642546839

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Mihail-Dan Staicovici:
Coabsorbent and Thermal Recovery Compression Heat Pumping Technologies - encuadernado, tapa blanda

2014, ISBN: 9783642546839

Buch, Hardcover, 2014, [PU: Springer Berlin], Springer Berlin, 2014

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Detalles del libro
Coabsorbent and Thermal Recovery Compression Heat Pumping Technologies

This book introduces two of the most exciting heat pumping technologies, the coabsorbent and the thermal recovery (mechanical vapor) compression, characterized by a high potential in primary energy savings and environmental protection. New cycles with potential applications of nontruncated, truncated, hybrid truncated, and multi-effect coabsorbent types are introduced in this work.  

Thermal-to-work recovery compression (TWRC) is the first of two particular methods explored here, including how superheat is converted into work, which diminishes the compressor work input. In the second method, thermal-to-thermal recovery compression (TTRC), the superheat is converted into useful cooling and/or heating, and added to the cycle output effect via the coabsorbent technology. These and other methods of discharge gas superheat recovery are analyzed for single-, two-, three-, and multi-stage compression cooling and heating, ammonia and ammonia-water cycles, and the effectiveness results are given.

 The author presents absorption-related topics, including the divided-device method for mass and heat transfer analysis, and truncation as a unique method for a better source-task match. Along with advanced gax recovery, the first and second principles of COP and exergy calculation, the ideal point approaching (i.p.a.) effect and the two-point theory of mass and heat transfer, the book also addresses the new wording of the Laplace equation, the Marangoni effect true explanation, and the new mass and heat exchangers based on this effect.  

The work goes on to explore coabsorbent separate and combined cooling, heating, and power (CHP) production and advanced water-lithium bromide cycle air-conditioning, as well as analyzing high-efficiency ammonia-water heat-driven heating and industrial low-temperature cooling, in detail. 

Readers will learn how coabsorbent technology is based on classic absorption, but is more general. It is capable of offering effective solutions for all cooling and heating applications (industry, agriculture, district, household, etc.), provided that two supplying heat-sink sources with temperatures outdistanced by a minimum of 12-15ºC are available. This book has clear and concise presentation and illustrates the theory and applications with diagrams, tables, and flowcharts.

Detalles del libro - Coabsorbent and Thermal Recovery Compression Heat Pumping Technologies


EAN (ISBN-13): 9783642546839
ISBN (ISBN-10): 3642546838
Tapa dura
Tapa blanda
Año de publicación: 2014
Editorial: Springer Berlin Heidelberg

Libro en la base de datos desde 2014-05-08T02:20:20-05:00 (Mexico City)
Página de detalles modificada por última vez el 2023-01-16T13:05:48-06:00 (Mexico City)
ISBN/EAN: 9783642546839

ISBN - escritura alterna:
3-642-54683-8, 978-3-642-54683-9
Mode alterno de escritura y términos de búsqueda relacionados:
Autor del libro: mihail, staicovici
Título del libro: technologie, pümpin, recovery


Datos del la editorial

Autor: Mihail-Dan Staicovici
Título: Heat and Mass Transfer; Coabsorbent and Thermal Recovery Compression Heat Pumping Technologies
Editorial: Springer; Springer Berlin
501 Páginas
Año de publicación: 2014-05-06
Berlin; Heidelberg; DE
Impreso en
Idioma: Inglés
106,99 € (DE)
109,99 € (AT)
118,00 CHF (CH)
POD
XXVI, 501 p. 268 illus., 84 illus. in color.

BB; Hardcover, Softcover / Technik/Wärmetechnik, Energietechnik, Kraftwerktechnik; Technische Thermodynamik; Verstehen; Mathematik; Cooling and Heating Fractals; Depleted Sources Thermal Recovery; Heating Heat Transformer Cycles; Multi-effect Coabsorbent Cycles; Nontruncated and Truncated Coabsorbent Cooling and; Separate or Combined Heat Pumping and Power Production; fluid- and aerodynamics; Engineering Thermodynamics, Heat and Mass Transfer; Industrial Chemistry; Continuum Mechanics; Engineering Fluid Dynamics; Industrielle Chemie und Chemietechnologie; Klassische Mechanik; Maschinenbau: Strömungsmechanik; EA; BC

This book introduces two of the most exciting heat pumping technologies, the coabsorbent and the thermal recovery (mechanical vapor) compression, characterized by a high potential in primary energy savings and environmental protection. New cycles with potential applications of nontruncated, truncated, hybrid truncated, and multi-effect coabsorbent types are introduced in this work.  Thermal-to-work recovery compression (TWRC) is the first of two particular methods explored here, including how superheat is converted into work, which diminishes the compressor work input. In the second method, thermal-to-thermal recovery compression (TTRC), the superheat is converted into useful cooling and/or heating, and added to the cycle output effect via the coabsorbent technology. These and other methods of discharge gas superheat recovery are analyzed for single-, two-, three-, and multi-stage compression cooling and heating, ammonia and ammonia-water cycles, and the effectiveness results are given. The author presents absorption-related topics, including the divided-device method for mass and heat transfer analysis, and truncation as a unique method for a better source-task match. Along with advanced gax recovery, the first and second principles of COP and exergy calculation, the ideal point approaching (i.p.a.) effect and the two-point theory of mass and heat transfer, the book also addresses the new wording of the Laplace equation, the Marangoni effect true explanation, and the new mass and heat exchangers based on this effect.  The work goes on to explore coabsorbent separate and combined cooling, heating, and power (CHP) production and advanced water-lithium bromide cycle air-conditioning, as well as analyzing high-efficiency ammonia-water heat-driven heating and industrial low-temperature cooling, in detail.Readers will learn how coabsorbent technology is based on classic absorption, but is more general. It is capable ofoffering effective solutions for all cooling and heating applications (industry, agriculture, district, household, etc.), provided that two supplying heat-sink sources with temperatures outdistanced by a minimum of 12-15ºC are available.This book has clear and concise presentation and illustrates the theory and applications with diagrams, tables, and flowcharts.
Presents theory and practical aspects for applications Offers new opportunities for heat pumping and power production Includes many illustrations tables and diagrams supporting the understanding Includes supplementary material: sn.pub/extras

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