186,99 €
inkl. MwSt.
Versandkostenfrei*
Erscheint vorauss. 1. September 2026
Melden Sie sich für den Produktalarm an, um über die Verfügbarkeit des Produkts informiert zu werden.

payback
93 °P sammeln
  • Broschiertes Buch

Applied Thermodynamics: Low-Temperature and Renewable Energy Systems pairs key fundamentals with practical applications that support sustainability. After outlining basic concepts and positions of thermodynamics, the book breaks down theory, the classic governing laws of thermodynamics, and overviews thermodynamic processes. The text then shifts to practical application examples, examining open systems, heat power plants, HVAC and power supply systems from renewable sources, methods and the efficiency of thermal systems, and machines and equipment. Geared to students and researchers, the book…mehr

Produktbeschreibung
Applied Thermodynamics: Low-Temperature and Renewable Energy Systems pairs key fundamentals with practical applications that support sustainability. After outlining basic concepts and positions of thermodynamics, the book breaks down theory, the classic governing laws of thermodynamics, and overviews thermodynamic processes. The text then shifts to practical application examples, examining open systems, heat power plants, HVAC and power supply systems from renewable sources, methods and the efficiency of thermal systems, and machines and equipment. Geared to students and researchers, the book is packed with solved problems and self-control tests to facilitate understanding. The text fosters practical innovation in a well-established field by offering readers a contemporary examination of a topic as essential to energy as heat itself. Grounded in classical principles, this contemporary reference considers throughout the context of our current energy mix, applying the critical lens of sustainability and sustainable options for energy conversion.
Autorenporträt
Redko Andriy is a Doctor of technical sciences at Kharkiv National University of Construction and Architecture, and Professor in the department of Heat, gas supply, ventilation and using WHR. He defended his PhD dissertation on the problem of gypsum dehydration in a boiling bed under pressure and he is currently researching processes of heat treatment and combustion of various fuels in a boiling bed.