W. Stine and R. B. Diver, A Compendium of Solar Dish/Stirling Technology , Sandia National Laboratories, pp.93-7026, 1994.

H. Lemrani, Modélisation énergétique des moteurs Stirling, 1995.

A. J. Organ, Thermodynamics ans Gas Dynamics of the Stirling Cycle Machine, 1992.

. Torstr, D-30169 Hannover

D. A. Renfroe and M. Counts, Model of TPTC Stirling Engine With Adiabatic Working Spaces, Journal of Engineering for Gas Turbines and Power, vol.110, issue.4, p.658663, 1988.
DOI : 10.1115/1.3240187

Z. Gu, H. Sato, and X. Feng, Using supercritical heat recovery process in Stirling engines for high thermal eciency, Applied Thermal Engineering, vol.21, p.16211630, 2001.

C. Cinar and H. Karabulut, Manufacturing and testing of a gamma type Stirling Engine, Renewable Energy, vol.30, p.5766, 2005.

H. Kühl, T. Pfeer, S. Schulz, and C. Walther, High Speed Gas Temperature Measurements in a Vuilleumier Heat Pump and their Reproduction by Dierential Computer Simulation, Proc. 8th ISEC, p.257266, 1997.

M. Tazerout, O. Le-corre, and P. Stous, Compression Ratio and TDC Calibrations Using Temperature - Entropy Diagram, SAE Technical Paper Series, 1999.
DOI : 10.4271/1999-01-3509

URL : https://hal.archives-ouvertes.fr/hal-00485601

T. W. Simon and J. R. Seume, A survey of oscillating ow in Stirling engine heat exchangers, 1988.

P. Bouvier, Transferts thermiques en écoulement oscillant dans une conduite cylindrique : Application au moteur Stirling, 2000.

D. Gedeon, Glimps Version 3.0, user's manual, 1990.

P. Bouvier, P. Stous, and J. Bardon, Transition laminaire-turbulent en écoulement oscillant en conduite cylindrique : approche expérimentale par anémométrie laser et mesures thermiques, Congrès SFT 2001, p.5762, 2001.

M. Iguchi, M. Ohmi, and K. Maegawa, Analysis of free oscillating ow in a ushaped tube, Bulletin of the JSME, vol.25, p.13981405, 1982.

S. Sergeev, Fluid oscillations at moderate Reynolds number (cité dans "A survey of oscillating ow in Stirling engine Heat Exchanger". Fluid dynamics, p.121122, 1966.

P. Grassman and M. Tuma, Critical reynolds numbers for oscillating and pulsating tube flow, W???rme- und Stoff???bertragung, vol.62, issue.3-4, p.203, 1979.
DOI : 10.1007/BF00997312

M. Ohmi, Flow patterns and frictional losses in an oscillating pipe ow, Nihon Kikaigakkai (Bulletin of the JSME), vol.25, p.536543, 1982.

J. Park and M. Baird, Transition phenomena in an oscillating manometer, The Canadian Journal of Chemical Engineering, vol.24, issue.5, p.491495, 1990.
DOI : 10.1002/cjce.5450480503

C. , V. Kerczek, and S. H. Davis, The stability of Oscillatory Stokes Layers, Studies in Applied Mathematics, 1972.

J. R. Seume, G. Friedman, and T. W. Simon, Fluid mechanics experiments in oscillatory ow. 1 : NASA contractor report, 1992.

S. Qiu and T. W. Simon, Measurements of heat transfer and uid mechanics within an oscillatory ow in pipe. Fundamentals of Heat Transfer in Forced Convection, ASME-HTD, vol.285, p.18, 1994.

S. Uchida, The pulsating viscous ow superposed on the steady laminar motion of incompressible uid in a circular pipe, Zeitschrift für Angewandte Mathematik und Physik, p.403422, 1956.

G. Schmidt, Theorie der Lehmann'schen calorischen Maschine, Z. des Ver. deutsher Ingenieue, XV, issue.2, pp.98-112, 1871.

T. Finkelstein, Gas particle trajectories in Stirling machines

. Conf, on Stirling Cycle Machines, ICSC'95, paper ICSC -95008, p.7176, 1995.

T. Colmant and V. Deledicque, Modélisation thermodynamique des moteurs Stirling Mémoire présenté en vue de l'obtention du grade d'Ingénieur Civil Electromécanicien, 2002.

I. Urieli and &. D. Berchowitz, Stirling Cycle Engine Analysis, 1982.

S. Bonnet, M. Alaphilippe, and P. Stous, Instantaneous temperature eld in a small Stirling engine : a comparison between experiments and modeling results, Proceedings of ECOS 2003, pp.1185-1191, 2003.

S. Bonnet, M. Alaphilippe, and P. Stous, Experimental study of the thermodynamic processes and the instantaneous temperature eld in a small Stirling engine, Proceedings of European Stirling Forum, 2002.

I. Kolin, Stirling motor : history, theory, practice, 1991.

. Rankine, A manual of the steam engine and other prime movers, 1908.

P. Stous, Does the Ericsson engine deserve more consideration than the Stirling engine ?, Proc. European Stirling Forum, 2002.

L. Borel, Thermodynamique et Energétique, Presses Polytech. Romandes, vol.1, 1991.

A. J. Organ, The regenerator and the Stirling engine, 1997.

S. Bonnet, M. Alaphilippe, and P. Stous, Etude expérimentale des transferts thermiques et des transformations thermodynamiques dans un petit %$ BIBLIOGRAPHIE moteur Stirling, Actes du Congrès SFT 2002, p.763768, 2002.

P. Stous and S. Harvey, Thermodynamique appliquée, Cycles thermodynamiques moteurs. Cours à l'école polytechnique de l'université de, Nantes

M. W. Coney, C. Linnemann, and H. Abdallah, A thermodynamic analysis of a novel high eciency reciprocating internal combustion enginethe isoengine, Energy, vol.29, p.25852600, 2004.

R. Moss, A. P. Roskilly, and S. K. Nanda, Reciprocating Joulecycle engine for domestic CHP systems, Applied Energy, vol.80, issue.2, p.169185, 2005.

H. Abdallah and S. Harvey, Thermodynamic analysis of chemically recuperated gas turbines, International Journal of Thermal Sciences, vol.40, issue.4, p.372384, 2001.
DOI : 10.1016/S1290-0729(01)01225-X

R. Bini, M. Gaia, P. Bertuzzi, and W. Righini, Operational results of the rst biomass CHP plant in Italy based on an organic Rankine cycle turbogenerator and overview of a number of plants in operation in Europe since, 1998.

Y. Ust, A. Safa, and B. Sahin, Ecological performance analysis of an endoreversible regenerative brayton heatengine, Applied Energy, vol.80, 2005.

G. A. Tsongas and T. J. White, A Parametric Analysis Microcomputer Model for Evaluating the Thermodynamic Performance of a Reciprocating Brayton Cycle Engine, Journal of Engineering for Gas Turbines and Power, vol.111, issue.4, p.587594, 1989.
DOI : 10.1115/1.3240294

Y. Zhou, S. K. Tyagi, and J. Chen, Performance analysis and optimum criteria of an irreversible Braysson heat engine, International Journal of Thermal Sciences, vol.43, issue.11, 2004.
DOI : 10.1016/j.ijthermalsci.2004.02.008

S. I. Sandler, Chemical and Engineering thermodynamics, 1989.

S. Bonnet, M. Alaphilippe, and P. Stous, Study of a small Ericsson engine for household microcogeneration

P. Stous, M. Tazerout, and P. Wauters, Thermodynamic analysis of reciprocating compressors, Int. J. Therm. Sci, vol.40, p.5266, 2001.

S. Sun and T. Ren, New method of thermodynamic computation for a reciprocating compressor: Computer simulation of working process, International Journal of Mechanical Sciences, vol.37, issue.4
DOI : 10.1016/0020-7403(94)00085-X

J. A. Mccovern and S. Harte, An exergy method for compressor performance analysis, International Journal of Refrigeration, vol.18, issue.6, p.421433, 1995.
DOI : 10.1016/0140-7007(95)98165-H

W. Warren, M. Rohsenow, and J. P. Hartnett, Handbook of heat transfer applications, 1985.

G. F. Hewitt, Heat exchanger design handbook, 2002.

S. Bonnet, M. Alaphilippe, and P. Stous, Distribution of the heat transfert areas in a microcogeneration system based on an Ericsson engine : a case study, Proceedings of the Heat Transfer in Components and Systems for Sustainable Energy Technologies Conference (Heat SET 2005), p.639644, 2005.

A. Aboularab, Rapport interne de la société Maillot, Vernouillet, 2004.

H. Abdallah, Analyse énergétique, exergétique et économique des cycles de turbines à combustion, 1998.

A. Bejan, G. Tsatsaronis, and M. Moran, Thermal, design and optimization, 1996.

A. Bejan, Entropy Generation Minimization, 1995.
DOI : 10.1002/9781119245964.ch11

P. Neveu and J. Et-castaing-lasvignotte, Second law analysis of advanced solidgas chemical refrigerators, HPC'97, p.113128, 1517.