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EMPIRICAL MODELING OF A LYSHOLM HELICAL SCREW EXPANDER

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EMPIRICAL MODELING OF A LYSHOLM HELICAL SCREW EXPANDER ( empirical-modeling-lysholm-helical-screw-expander )

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REFERENCES R. McKay and R. Sprankle, mHelical Rotary SCrew Expan- der Power System", in Proc. Conf. Res. Devel. Geother- mal Resources, Pasadena, 1974 (Jet Propulsion Laboratory, Pasadena, 1974)p. 301. A. Lysholm, Rotary Compressor, U.S. Patent Number 2,243,874 , June 3, 1941. Swedish Patent Number' October 16, 1934. 3) 4) 5) Patent Number 3,751,673 , R. Steidel, H. Weiss and J . Flower, Performance Char- 13) 14) January, 1962,pp.83-114. J . Lipka, Graphical and Mechanical Computationr - Part B. Sprankle, Electrical Power Generating System, U.S. August 7, 1973. acteristics of the Lysholm Engine As Tested For Geother- mal Power Applications in the Imperial Valley, Lawrence Livermore Laboratory Report UCE-80151, 1977. B. Steidel, D. Pankow and B. Bergcr, "Performance Characteristius of the Lyaholm Engine 8 6 Tested for Geothermal Power Applications", ProceedinRs of the 16th Intersociety EnerRg Conversion Engineering Conference, ASME Paper Number 819594, 1981,~.1334-1340 A. Lyeholm,TheFundamentalsofaNewScrewEnRlne, ASME Paper Number 66-CT-86, 1966 C. Meyer, et.al., Thermodynamic and Transport Properties of Steam(ASME Steam Tables), The American Society of Mechanical Engineers, New York, 1967 ., W. Reynolds and H. Perkins, EnRineerinR Thermodynamics, 1977 McGraw-Hill, Inc S. Edstrom(Gardner-Denver co.), letter to H. Welss (Lawrence Livermore Laboratory), dated March 21, 1977. B. Daugherty and J . Frantinl, Fluid Meohanics With EnRlneerinR Applications, McGraw-Hill, Inu., 1977. 8 . Diron, Fluid Mechanics, Thermodynamics of Turbo- machinerx, 3rd Ed.(SI Units), Pergamon Press, Oxford, England, 1938 0. BalJe', "A Study on Design Criteria and Matching of Turbomachlnes', Journal of Enkineerlnq for Power - Trans. of the ASP??,Series A, Vol. 84, XI, Experimental Data, WlleY %t ons, Inc., 1921. s 101

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