РАСЧЕТНАЯ ОЦЕНКА ТЕПЛОФИЗИЧЕСКИХ СВОЙСТВ АЗОТА, КАК РАБОЧЕГО ТЕЛА ПОРШНЕВОГО КРИОДВИГАТЕЛЯ. ЧАСТЬ III. ВЫЧИСЛЕНИЕ ЭНТАЛЬПИИ И ЭНТРОПИИ
Keywords:
reciprocating cryogenic engine, nitrogen, thermal characteristics, working body, enthalpy, entropy, mathematical model
Abstract
In article the original method and results of calculation thermo physical properties of the nitrogen used as a working body for transport piston installations is resulted.
References
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Bondarenko S.I. New a kind of a fireproof and non-polluting vehicle for the airports / S.I. Bondarenko, I.N. Kudryavtsev, A.I. Pjatak, I.I. Timchenko, A.P. Kudrjash // Problem mashinostroeniya. 2002. V. 5. № 7. P 92-95. (Rus.).
Marinin VS. Thermal physics of alternative energy sources. Kharkov: Fort. 1999. 212 p. (Rus.).
Levterov A.M. Calculation assessment of thermal properties of nitrogen as the body work piston cryogenic engine. Part I. Mathematical model of phase equilibrium / A.M. Levterov, K.R. Umerenkova // Promyshlennaya teplotekhnika. 2013. -V. 35, № 4. P 90-95. (Rus.).
Levterov A.M. Astimation of thermophysical properties of nitrogen as the working body for piston cryo-engine. Part II. The calculation of heat capacity / A.M. Levterov, K.R. Umerenkova // Prom. teplotekhnika. 2014. -V. 36, № 2. P 93-100. (Rus.).
Thermodynamic Properties of Nitrogen / V.V. Sychev, A.A. Wasserman, A.D. Kozlov etc. M: Izdatelstvo Standartov. 1977. 350 p. (Rus.)
Williams J. Frost-Free Cryogenic Heat Exchanger for Automotive Propulsion / J. Williams, C. Knovlen, A.T Mattick, A. Hertzberg // Proc. of 33rd AIAA/ASEE Joint Propulsion Conf. @ Exhibit, July 6-9, 1997, Seattle, USA. P.18.
Turenko A.N. Eco-friendly cryogenic transport: the current state of the problem / A.N. Turenko, A.I. Pjatak, I.N. Kudryavtsev // Vestnik Kharkov Avtomobilno-doroznogo tekhnicheskogo universiteta 2000. Issue. 12-13. P 42-47. (Rus.).
Suhov A.P. Vyhlop is cleaner than air // Za rulom. 2001. № 2. P 40-42. (Rus.).
Bondarenko S.I. Krioavtomobil: we shall go by nitrogen? / S.I. Bondarenko, I.N. Kudryavtsev // Avto centr. 2000. № 40. P 32-33. (Rus.).
Bondarenko S.I. New a kind of a fireproof and non-polluting vehicle for the airports / S.I. Bondarenko, I.N. Kudryavtsev, A.I. Pjatak, I.I. Timchenko, A.P. Kudrjash // Problem mashinostroeniya. 2002. V. 5. № 7. P 92-95. (Rus.).
Marinin VS. Thermal physics of alternative energy sources. Kharkov: Fort. 1999. 212 p. (Rus.).
Levterov A.M. Calculation assessment of thermal properties of nitrogen as the body work piston cryogenic engine. Part I. Mathematical model of phase equilibrium / A.M. Levterov, K.R. Umerenkova // Promyshlennaya teplotekhnika. 2013. -V. 35, № 4. P 90-95. (Rus.).
Levterov A.M. Astimation of thermophysical properties of nitrogen as the working body for piston cryo-engine. Part II. The calculation of heat capacity / A.M. Levterov, K.R. Umerenkova // Prom. teplotekhnika. 2014. -V. 36, № 2. P 93-100. (Rus.).
Thermodynamic Properties of Nitrogen / V.V. Sychev, A.A. Wasserman, A.D. Kozlov etc. M: Izdatelstvo Standartov. 1977. 350 p. (Rus.)
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Published
2014-12-22
How to Cite
Levterov, A., & Umerenkova, K. (2014). РАСЧЕТНАЯ ОЦЕНКА ТЕПЛОФИЗИЧЕСКИХ СВОЙСТВ АЗОТА, КАК РАБОЧЕГО ТЕЛА ПОРШНЕВОГО КРИОДВИГАТЕЛЯ. ЧАСТЬ III. ВЫЧИСЛЕНИЕ ЭНТАЛЬПИИ И ЭНТРОПИИ. Thermophysics and Thermal Power Engineering, 37(2), 32-38. https://doi.org/https://doi.org/10.31472/ihe.2.2015.04
Section
Heat and Mass Exchange Apparatus
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