THERMOECONOMIC DIAGNOSIS OF VAPOR COMPRESSION REFRIGERATION MACHINE

Authors

  • Д. Х. Харлампиди The A.N. Podgorny Institute for Mechanical Engineering Problems of the National Academy of Sciences of Ukraine, 2/10 Dm. Pozharsky Str., Kharkiv, Ukraine, 61046, Ukraine
  • В. А. Тарасова The A.N. Podgorny Institute for Mechanical Engineering Problems of the National Academy of Sciences of Ukraine, 2/10 Dm. Pozharsky Str., Kharkiv, Ukraine, 61046, Ukraine

DOI:

https://doi.org/10.18198/j.ind.gases.2013.0655

Keywords:

Refrigerating machine, Thermodynamic analysis, Thermoekonomic diagnosis, Exergy, Exergy destruction, Negentropy

Abstract

Actual problem of refrigerating technics is the energy consumption and cost per unit of produced cold. For this purpose used a termoekonomic diagnosis — section exergy method of real systems analysis. A new method termoeconomic diagnosing of vapor compression refrigerating machine based on the concept of exergy cost of the product elements that will detect anomalies in its basic elements and determine the cost of exergy destruction in each of them was developed. In determining the cost of the target product exergetic introduce the concept of flow negentropy. The refrigerating machine elements separation  are carried to those that used in the form «fuel» not only exergy, but also negentropy, and those that are «delivered» negentropy. 

Author Biographies

Д. Х. Харлампиди, The A.N. Podgorny Institute for Mechanical Engineering Problems of the National Academy of Sciences of Ukraine, 2/10 Dm. Pozharsky Str., Kharkiv, Ukraine, 61046

D.Kh. Kharlampidi

В. А. Тарасова, The A.N. Podgorny Institute for Mechanical Engineering Problems of the National Academy of Sciences of Ukraine, 2/10 Dm. Pozharsky Str., Kharkiv, Ukraine, 61046

V.A. Tarasova

References

Torres C., Valero A., Serra L. et al. (2002). Structural theory and thermoeconomic diagnosis. Part 1. On malfunction and dysfunction analysis// Energy Conversion and Management. — V. 43. — No. 9. — P. 1503-1518.

Valero A., Correas L., Zaleta A. et al. (2004).On the thermoeconomic approach to the diagnosis of energy system malfunctions. Part 2. Malfunction definitions and assessment// Energy Int. J. — V. 29. — P. 1889-1907.

Shargut Ya., Petela P. (1968). Exergy. –– Moscow: Energy. –– 278 p. (Rus.).

Tsatsaronis J. (2002). Interaction of thermodynamics and economics for minimization of system for energy transformation cost. — Odessa: «Merchant». — 152 p. (Rus.).

Kharlampidi D. Kh., Tarasova V. A. (2012). Structural thermodynamic analysis of vapor compression refrigeration machine// Tekhnicheskie Gazy./Industrial Gases. — No. 5. — P. 57-66. (Rus.).

Martynovsky V.S. (1979). Cycles, schemes and characteristics of thermotransformers. –– Moscow: Energy. — 288 p. (Rus.).

Morozyuk T.V., Tsatsaronis J. (2005). Deep exergetic analysis –– contemporary necessity of optimisation of systems for energy transformation// Promyshlennaya teplotekhnika |Industrial heat engineering. — V. 27. — No. 2. — P. 88-92. (Rus.).

Hepbasli А. (2008). A key review on exergetic analysis and assessment of renewable energy resources for a sustainable future// Renewable and Sustainable Energy Reviews. —No. 12. — Р. 593-661.

Kharlampidi D. Kh. (2001). Determination of characteristics of heat pump installation working at noncalculated conditions// Scientific herald of building. — Kharkov: KhSTUBA. — Issue 14. — P. 193-197. (Rus.).

Morozyuk T.V. (2006). Theory of refrigerating machines and heat pumps. –– Odessa: «Merchant», — 721 p. (Rus.).

Chedzhie F., Flores V.F.,Ordones J.K. et al. (2001). Exergetic and economic analysis of systems// Teplornergetica |Thermoenergetics. –- No. 1. — P. 74-79. (Rus.).

Lazzareto A., Tsatsaronis G. Speco: (2006). A systematic and general methodology for calculating off efficiencies and costs in thermal systems// Energy. — No. 31. — P. 1257-1289.

Piacentino A., Cardona F. (2010). Scope-oriented Thermoeconomic analysis a non-postulated cost accounting for the dissipative devices of a vapor compression chiller. Is it feasible?// Applied Energy. — No. 87. — P. 943-956.

D’Accadia M.D., de Rossi F. (1998). Thermoeconomic analysis and diagnosis of a refrigeration plant// Energy Conversion and Management. — No. 39. — P. 1223-1232.

D’Accadia M.D., de Rossi F. (1998). Thermoeconomic optimization of refrigeration plant//Int. Journal of Refrigeration. — V. 21. — P. 42-54.

D’Accadia M. D., Vanoli L. (2004). Thermoeconomic optimization of the condenser in vapor compression heat pump // Int. Journal of Refrigeration. — V. 27. — P. 433-441.

ElSaid, Aplenk (1970). Application of thermoeconomic approach for analysis and optimization of evaporating-compression system of distil water// Papers of American society of mechanical engineers. Energetic machines. — No. 1. — P. 32-42.

Issue

Section

PROCESSES, CYCLES, SCHEMES AND THE EQUIPMENT OF REFRIGERATION AND CRYOGENIC SYSTEMS