Analysis of the LOFT Modular Drag Disc Turbine Transducer (MDTT) spring for compressive buckling (open access)

Analysis of the LOFT Modular Drag Disc Turbine Transducer (MDTT) spring for compressive buckling

The LOFT Modular Drag Disc Turbine Transducer (MDTT) springs (for range 2, rhoV/sup 2/ = 4900 lbm/ft-sec/sup 2/) were analyzed to determine the static rhoV/sup 2/ load needed to cause a buckling failure. The static load needed to cause elastic buckling was found to be equivalent to a rhoV/sup 2/ value of 431,000 lbm/ft-sec/sup 2/ according to classical buckling theory, but could be as low as rhoV/sup 2/ = 100,000 lbm/ft-sec/sup 2/ due to uncertain end fixity and other spring imperfections.
Date: August 4, 1978
Creator: Mosby, W.R.
System: The UNT Digital Library
Magnetic fusion energy. Annual report, October 1976 through September 1977 (open access)

Magnetic fusion energy. Annual report, October 1976 through September 1977

Separate abstracts were prepared for each of the 3 included sections. (MOW)
Date: January 4, 1978
Creator: Harrison, M.A. & Gottlieb, L. (eds.)
System: The UNT Digital Library
Ocean Thermal Energy Conversion power system development. Phase I. Final report (open access)

Ocean Thermal Energy Conversion power system development. Phase I. Final report

This report covers the conceptual and preliminary design of closed-cycle, ammonia, ocean thermal energy conversion power plants by Westinghouse Electric Corporation. Preliminary designs for evaporator and condenser test articles (0.13 MWe size) and a 10 MWe modular experiment power system are described. Conceptual designs for 50 MWe power systems, and 100 MWe power plants are also descirbed. Design and cost algorithms were developed, and an optimized power system design at the 50 MWe size was completed. This design was modeled very closely in the test articles and in the 10 MWe Modular Application. Major component and auxiliary system design, materials, biofouling, control response, availability, safety and cost aspects are developed with the greatest emphasis on the 10 MWe Modular Application Power System. It is concluded that all power plant subsystems are state-of-practice and require design verification only, rather than continued research. A complete test program, which verifies the mechanical reliability as well as thermal performance, is recommended and described.
Date: December 4, 1978
Creator: unknown
System: The UNT Digital Library
Ocean Thermal Energy Conversion power system development. Phase I: preliminary design. Final report (open access)

Ocean Thermal Energy Conversion power system development. Phase I: preliminary design. Final report

Westinghouse has completed the Preliminary Desigh Phase for the Power System Development of the Ocean Thermal Energy Conversion (OTEC) Demonstration Plant project. This study included the development of a preliminary design for a Modular Application scaled power system (10MWe) and Heat Exchanger Test Articles, both based on the concept developed in the Conceptual Design Phase. The results of this study were used to improve the baseline design of the 50MWe module for the Commercial Size Power System, which was recommended for the demonstration plant by the conceptual design study. The 50MWe module was selected since it has the lowest cost, and since its size convincingly demonstrates that future economically viable commercial plants, having reliable operation with credible anticipated costs, are possible. Additional optimization studies on the size of the power system plus hull continue to identify 50MWe as the preferred minimum cost configuration. This study was limited to a closed cycle ammonia power system module, using a seawater temperature difference of 40/sup 0/F, and a surface platform/ship reference hull. This volume presents the preliminary design configuration and system optimization. (WHK)
Date: December 4, 1978
Creator: unknown
System: The UNT Digital Library