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Elementary solutions of coupled model equations in the kinetic theory of gasesThe method of elementary solutions is employed to solve two coupled integrodifferential equations sufficient for determining temperature-density effects in a linearized BGK model in the kinetic theory of gases. Full-range completeness and orthogonality theorems are proved for the developed normal modes and the infinite-medium Green's function is constructed as an illustration of the full-range formalism. The appropriate homogeneous matrix Riemann problem is discussed, and half-range completeness and orthogonality theorems are proved for a certain subset of the normal modes. The required existence and uniqueness theorems relevant to the H matrix, basic to the half-range analysis, are proved, and an accurate and efficient computational method is discussed. The half-space temperature-slip problem is solved analytically, and a highly accurate value of the temperature-slip coefficient is reported.
Document ID
19740048921
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Kriese, J. T.
Siewert, C. E.
(North Carolina State University Raleigh, N.C., United States)
Chang, T. S.
(MIT, Cambridge, Mass.; North Carolina State University Raleigh, N.C., United States)
Date Acquired
August 7, 2013
Publication Date
June 1, 1974
Publication Information
Publication: International Journal of Engineering Science
Volume: 12
Subject Category
Thermodynamics And Combustion
Accession Number
74A31671
Funding Number(s)
CONTRACT_GRANT: NGL-34-002-084
CONTRACT_GRANT: NSF GU-1590
CONTRACT_GRANT: NSF GK-11935
Distribution Limits
Public
Copyright
Other

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