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Coabsorbent and thermal recovery compression heat pumping technologies / Mihail-Dan Staicovici.

Por: Colaborador(es): Tipo de material: TextoTextoSeries Heat and Mass TransferEditor: Berlin, Heidelberg : Springer Berlin Heidelberg : Springer, 2014Descripción: xxvi, 501 páginas : 268 ilustraciones, 84 ilustraciones en colorTipo de contenido:
  • texto
Tipo de medio:
  • computadora
Tipo de portador:
  • recurso en línea
ISBN:
  • 9783642546846
Formatos físicos adicionales: Edición impresa:: Sin títuloClasificación LoC:
  • TJ265
Recursos en línea:
Contenidos:
Introduction -- Mass and Heat Exchange Analysis of the Absorption Processes-The Divided Device Method -- Coabsorbent Cycles -- A Few New Coabsorbent Cycle Configurations -- The Effectiveness of the Coabsorbent Cycles According to the First And Second Principles of Thermodynamics -- External Coabsorbent Cycle Composition -- Coabsorbent Cycles Exergy Evaluation -- A Thermodynamic Approach Of Mechanical Vapor Compression Refrigeration And Heating COP Increase -- A Non-Equilibrium Phenomenological Two-Point Theory Of Mass And Heat Transfer In Physical And Chemical Interactions -- A New Wording Of The Laplace Equation -- Marangoni Convection Basic Mechanism Explanation, Pseudo-Marangoni Cells Model And Absorption-Desorption Mass And Heat Exchangers Model Application.
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Introduction -- Mass and Heat Exchange Analysis of the Absorption Processes-The Divided Device Method -- Coabsorbent Cycles -- A Few New Coabsorbent Cycle Configurations -- The Effectiveness of the Coabsorbent Cycles According to the First And Second Principles of Thermodynamics -- External Coabsorbent Cycle Composition -- Coabsorbent Cycles Exergy Evaluation -- A Thermodynamic Approach Of Mechanical Vapor Compression Refrigeration And Heating COP Increase -- A Non-Equilibrium Phenomenological Two-Point Theory Of Mass And Heat Transfer In Physical And Chemical Interactions -- A New Wording Of The Laplace Equation -- Marangoni Convection Basic Mechanism Explanation, Pseudo-Marangoni Cells Model And Absorption-Desorption Mass And Heat Exchangers Model Application.

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