Download Adsorption Refrigeration Technology: Theory and Application by Ruzhu Wang PDF

By Ruzhu Wang

Gives readers an in depth knowing of adsorption refrigeration know-how, with a spotlight on functional functions and environmental concerns

Systematically protecting the expertise of adsorption refrigeration, this e-book offers readers with a technical realizing of the subject in addition to certain details at the state of the art from prime researchers within the box. Introducing readers to historical past at the improvement of adsorption refrigeration, the authors additionally hide the improvement of adsorbents, quite a few thermodynamic theories, the layout of adsorption structures and adsorption refrigeration cycles. The ebook publications readers throughout the learn technique, masking key points equivalent to: the primary of adsorption refrigeration; opting for adsorbents in keeping with varied features; thermodynamic equations; tools for the layout of warmth exchangers for adsorbers; and the complex adsorption cycles wanted. it's also worthy as a reference for pros operating in those areas.

  • Covers state-of-the paintings of adsorption learn and applied sciences for suitable purposes, operating from adsorption operating pairs via to the appliance of adsorption refrigeration expertise for low grade warmth recovery
  • Assesses sustainable choices to standard refrigeration tools, resembling the appliance of adsorption refrigeration structures for solar power and waste heat
  • Includes a key bankruptcy at the layout of adsorption refrigeration structures as an educational for readers new to the subject; the calculation types for various elements and dealing methods also are included
  • Takes real-world examples giving an perception into latest items and installations and allowing readers to use the information to their very own work

Academics getting to know low grade strength usage and refrigeration; Graduate scholars of refrigeration and coffee grade strength usage; skilled engineers eager to renew wisdom of adsorption technology,Engineers operating at businesses constructing adsorption chillers; Graduate scholars engaged on thermally pushed platforms; complicated undergraduates for the Refrigeration precept as part of thermal pushed refrigeration technology.

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Extra resources for Adsorption Refrigeration Technology: Theory and Application

Sample text

For example, the silica gel–water working pair can be utilized as a heat source with a low temperature, whereas the zeolite–water system is applicable for a high temperature heat source. Compared with the liquid absorption refrigeration system, the solid adsorption refrigeration system has the advantage of simple structure and low cost. Moreover, it is believed that adsorption technology is more suitable for the vibratory occasions than absorption technology because the adsorbent is solid. Therefore, the application research of solid adsorption refrigeration has been carried out extensively for low grade heat utilization in recent years.

Solar Energy, 42(2), 103–111. , Cacciola, G. and Rothmeyer, M. (1988) Zeolite heat pump for domestic heating. Energy, 13, 333–342. [14] Cacciola, G. and Restuccia, G. (1994) Progress on adsorption heat pumps. Heat Recovery Systems and CHP, 14(4), 409–420. E. (1988) Performance limitations of adsorption cycles for solar cooling. Solar Energy, 41(1), 21–31. E. (1994) Forced convection enhancement of adsorption cycles. Heat Recovery Systems and CHP, 14(4), 343–350. [17] Tamainot-Telto, Z. E. (1997) Adsorption refrigerator using monolithic carbon-ammonia pair.

Chemical Engineering Science, 44(2), 225–235. F. and Meunier, F. (1989) Simulation of an intermittent adsorptive solar cooling system. Solar Energy, 42(2), 103–111. , Cacciola, G. and Rothmeyer, M. (1988) Zeolite heat pump for domestic heating. Energy, 13, 333–342. [14] Cacciola, G. and Restuccia, G. (1994) Progress on adsorption heat pumps. Heat Recovery Systems and CHP, 14(4), 409–420. E. (1988) Performance limitations of adsorption cycles for solar cooling. Solar Energy, 41(1), 21–31. E. (1994) Forced convection enhancement of adsorption cycles.

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