Zobrazeno 1 - 10
of 63
pro vyhledávání: '"R.L. Creedon"'
Autor:
Robert A. Krakowski, Farrokh Najmabadi, C.P.C. Wong, P.I.H. Cooke, R.L. Creedon, S.P. Grotz, William P. Duggan
Publikováno v:
Fusion Engineering and Design. 23:219-232
The TITAN reactors are compact, high-neutron-wall-loading fusion power reactors based on the reversed-field-pinch confinement concept. The compact design of the TITAN fusion power core (FPC) reduces the system to a few small and relatively low-mass c
Autor:
G. Orient, Farrokh Najmabadi, Otto K. Kevton, Robert W. Conn, Don Steiner, Shahram Sharafat, Ken A. Werley, C. G. Hoot, C.P.C. Wong, James Blanchard, Nasr M. Ghoniem, R.C. Martin, S.P. Grotz, William P. Duggan, Robert A. Krakowski, Edward T. Cheng, M.Z. Hasan, Anil K. Prinja, Charles G. Bathke, Charles Kessel, Yuh-Yi Chu, P.I.H. Cooke, Ronald L. Miller, John R. Bartlit, P. Gierszewski, K.R. Schultz, Dai-Kai Sze, William P. Kelleher, R.L. Creedon, Erik Vold
Publikováno v:
Fusion Engineering and Design. 23:69-80
The TITAN reversed-field-pinch (RFP) fusion-reactor study has two objectives: to determine the technical feasibility and key developmental issues for an RFP fusion reactor operating at high power density: and to determine the potential economic (cost
Autor:
S.P. Grotz, P.I.H. Cooke, Dai-Kai Sze, R.C. Martin, James Blanchard, Don Steiner, Farrokh Najmabadi, Shahram Sharafat, Nasr M. Ghoniem, C.P.C. Wong, P. Gierszewski, R.L. Creedon, Edward T. Cheng, K.R. Schultz, M.Z. Hasan
Publikováno v:
Fusion Engineering and Design. 23:173-200
The TITAN reversed-field-pinch (RFP) fusion-reactor study has two objectives: to determine the technical feasibility and key developmental issues for an RFP fusion reactor operating at high power density; and to determine the potential economic opera
Autor:
James Blanchard, R.L. Creedon, K.R. Schultz, Farrokh Najmabadi, C. G. Hoot, Shahram Sharafat, C.P.C. Wong, Edward T. Cheng, S.P. Grotz, Robert W. Conn
Publikováno v:
Fusion Engineering and Design. 23:233-247
Strong emphasis was given to safety engineering in the TITAN study. Instead of an add-on safety design and analysis task, the safety activity was incorporated into the process of design selection and integration at the beginning of the study. Low aft
Autor:
R.C. Martin, S.P. Grotz, J. S. Herring, Y-K.M. Peng, Tomoaki Kunugi, John F. Santarius, Charles G. Bathke, Daniel R. Cohn, Shahram Sharafat, Marc Klasky, Dennis J Strickler, Ronald L. Miller, M.J. Schaffer, Justin Schwartz, S.A. Jardin, Nasr M. Ghoniem, C.E. Singer, P.I.H. Cooke, J.H. Schultz, J.T. Hogan, J. Mandrekas, J.A. Leuer, Farrokh Najmabadi, D.J. Ward, Edward T. Cheng, D.K. Sze, K.R. Schultz, K. Evans, A.W. Hyatt, T. K. Mau, L. Snead, Leslie Bromberg, Robert W. Conn, R.A. Krakowski, Layton J. Wittenberg, Don Steiner, R.L. Reid, J.E.C. Williams, E. Ibrahim, M. Valenti, C.P.C. Wong, Charles Kessel, R.L. Creedon, David A. Ehst, M.Z. Hasan
Publikováno v:
Fusion Technology. 19:783-790
The ARIES research program is a multi-institutional effort to develop several visions of tokamak reactors with enhanced economic, safety, and environmental features. Three ARIES visions are currently planned for the ARIES program. The ARIES-I design
Autor:
J.E.C. Williams, C.P.C. Wong, Leslie Bromberg, Daniel R. Cohn, S.P. Grotz, J. Schultz, Justin Schwartz, R.L. Creedon
Publikováno v:
IEEE Thirteenth Symposium on Fusion Engineering.
The requirements for developing large, very-high-field superconducting tokamaks are investigated, The superconducting material, the structure, and the integration issues are investigated for both the toroidal field coils and the poloidal field coils.
Autor:
E.T. Cheng, J.A. Leuer, J.T. Hogan, Farrokh Najmabadi, J.F. Santarius, J.S. Herring, S.P. Grotz, W. Kernbichler, G.A. Emmert, Shahram Sharafat, W.R. Beecraft, C.E. Singer, D.J. Ward, D.J. Stricker, Marc Klasky, L.J. Wittenberg, L. Snead, D.-K. Sze, S.A. Jardin, J. Brooks, T. K. Mau, I.N. Sviatoslavsky, M.Z. Hasan, J. Schwartz, J. Schultz, G.H. Miley, R.C. Martin, Y.-K.M. Peng, J.C. Whitson, J. Mandrekas, Robert W. Conn, L. Bromberg, R.A. Krakowski, E. Greenspan, P.I.H. Cooke, M.J. Schaffer, T. Kungi, D.A. Ehst, A.W. Hyatt, A.C. Klein, C.G. Bathke, R.L. Reid, J.R. Bartlit, James Blanchard, K. Evans, D.R. Cohn, K.R. Schultz, R.L. Creedon, D. Steiner, R.L. Miller, M. Valenti, C.P.C. Wong, Nasr M. Ghoniem, E. Ibrahim, J.E.C. Williams
Publikováno v:
IEEE Thirteenth Symposium on Fusion Engineering.
The Advanced Reactor Innovation and Evaluation Study (ARIES) is a community effort to develop several visions of the tokamak as a fusion power reactor. The aims are to determine its potential economics, safety, and environmental features and to ident
Autor:
Dai-Kai Sze, Ronald L. Miller, Leslie Bromberg, R.L. Creedon, C.P.C. Wong, Farrokh Najmabadi, Yueng Kay Martin Peng, S.P. Grotz
Publikováno v:
IEEE Thirteenth Symposium on Fusion Engineering.
The design integration of the fusion-power core (FPC) and the reactor subsystems of the ARIES-I (Advanced Reactor Innovation and Evaluation Study) are summarized. Details such as support of the toroidal-field coils, divertor module access, blanket ac
Publikováno v:
IEEE Thirteenth Symposium on Fusion Engineering.
Because neutron activation can serious impede access to the proposed laboratory microfusion facility (LMF), the authors examined several low-activation design concepts for the target chamber, shielding, and final optics protection. The reference base
Autor:
Tomoaki Kunugi, Ronald L. Miller, Farrokh Najmabadi, J.A. Leuer, R.L. Creedon, Nasr M. Ghoniem, C.P.C. Wong, K.R. Schultz, Shahram Sharafat, S.P. Grotz, Edward T. Cheng, R.C. Martin, D.K. Sze, J.S. Herring, M.Z. Hasan, E. Greenspan
Publikováno v:
IEEE Thirteenth Symposium on Fusion Engineering.
For the Advanced Reactor Innovation and Evaluation Study-I (ARIES-I) tokamak power reactor design, the authors evaluated two gas-cooled, low-activation ceramic blanket designs, a 5-MPa helium-cooled design, and a 0.5-MPa CO/sub 2/ gas-carried, Li/sub