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Thermal research

JANAF Thermochemical Data" The Dow Chemical Company, Thermal Research Laboratory, Midland, Michigan. [Pg.130]

At present, there are about 30 thermal research reactors with power levels of 10 megawatts-thermal or higher, which are subject to IAEA safeguards. About 10 of these operate at power levels exceeding 25 megawatts-thermal and are subject to additional safeguards measures with respect to the clandestine production scenarios (Zuccaro-Labellarte and Fagerholm, 1996). [Pg.568]

J. R. Downey, Dow Chemical Company, Thermal Research, AFOSR-TR-78-0960, Contract No. F 44620-75-0-0048, 1978. [Pg.991]

JANAF Thermochemical Tables, Thermal Research Laboratory, The Dow... [Pg.79]

The results of an experimental research activity aimed at the system setup of the Stress Pattern Analysis by Measuring Thermal Emission used to measure the sum of the principal stresses of the free surface are presented. [Pg.408]

The research activity here presented has been carried out at the N.D.T. laboratory of l.S.P.E.S.L. (National Institute for Occupational Safety and Prevention) and it is aimed at the set up of the Stress Pattern Analysis by Measuring Thermal Emission technique [I] applied to pressure vessels. Basically, the SPATE system detects the infrared flux emitted from points resulting from the minute temperature changes in a cyclically stressed structure or component. [Pg.408]

Thermal Reycling of Plastics, Final Report to the American Plastics Council, Energy Environmental Research Center, Grand Eorks, N.D., March 1994. [Pg.234]

Many challenging industrial and military applications utilize polychlorotriduoroethylene [9002-83-9] (PCTFE) where, ia addition to thermal and chemical resistance, other unique properties are requited ia a thermoplastic polymer. Such has been the destiny of the polymer siace PCTFE was initially synthesized and disclosed ia 1937 (1). The synthesis and characterization of this high molecular weight thermoplastic were researched and utilized duting the Manhattan Project (2). The unique comhination of chemical iaertness, radiation resistance, low vapor permeabiUty, electrical iasulation properties, and thermal stabiUty of this polymer filled an urgent need for a thermoplastic material for use ia the gaseous UF diffusion process for the separation of uranium isotopes (see Diffusion separation methods). [Pg.393]

Research Needsfor Thermal Gasification of Biomass, Compiled by StudsvikAB Thermal Processes, for International Energy Agency, IGT, Chicago, Mar. 1992,... [Pg.51]

D. L. Klass, ed., A. Directory of U.S. Renewable Energy Technology Vendors, Biomass, Photovoltaics, Solar Thermal, Wind, Biomass Energy Research Association, Washington, D.C., 1990, for U.S. Agency for International Development, 74 pp. [Pg.51]

There has been increased interest in firing wood waste as a supplement to coal in either pulverized coal (PC) or cyclone boilers at 1—5% of heat input. This appHcation has been demonstrated by such electric utilities as Santee-Cooper, Tennessee Valley Authority, Georgia Power, Dehnarva, and Northern States Power. Cofiring wood waste with coal in higher percentages, eg, 10—15% of heat input, in PC and cyclone boilers is being carefully considered by the Electric Power Research Institute (EPRI) and Tennessee Valley Authority (TVA). This practice may have the potential to maximize the thermal efficiency of waste fuel combustion. If this practice becomes widespread, it will offer another avenue for use of fuels from waste. [Pg.59]

The analytical mechanisms for predicting the corresponding pollutant formation associated with fossil-fuel-fired furnaces lag the thermal performance prediction capabiUty by a fair margin. The most firmly estabUshed mechanism at this time is the prediction of thermal NO formation (24). The chemical kinetics of pollutant formation is, in fact, a subject of research. [Pg.147]

Eurther research on convective transport under low Reynolds number, quasicontinuum conditions is needed before the optimal design of such a micro heat exchanger is possible. The cooling heat exchanger is usually thermally linked to a relatively massive substrate. The effects of this linkage need to be explored and accurate methods of predicting the heat-transfer and pressure-drop performance need to be developed. [Pg.495]

Research activities in the area of PODs containing aromatic groups have been centered around the production of highly processible, soluble, and thermally stable polymers. In this particular class of PODs, the imide-and phenylene-containing backbones have been widely explored. [Pg.534]

PBI is being marketed as a replacement for asbestos and as a high temperature filtration fabric with exceUent textile apparel properties. The synthesis of whoUy aromatic polybenzimidazoles with improved thermal stabUities was reported in 1961 (12). The Non-MetaUic Materials and Manufacturing Technology Division of the U.S. Air Force Materials Laboratory, Wright-Patterson Air Force Base, awarded a contract to the Narmco Research and Development Division of the Whittaker Corp. for development of these materials into high temperature adhesives and laminates. [Pg.67]


See other pages where Thermal research is mentioned: [Pg.195]    [Pg.90]    [Pg.698]    [Pg.440]    [Pg.195]    [Pg.242]    [Pg.1824]    [Pg.699]    [Pg.8391]    [Pg.195]    [Pg.90]    [Pg.698]    [Pg.440]    [Pg.195]    [Pg.242]    [Pg.1824]    [Pg.699]    [Pg.8391]    [Pg.1064]    [Pg.244]    [Pg.735]    [Pg.59]    [Pg.263]    [Pg.38]    [Pg.124]    [Pg.244]    [Pg.442]    [Pg.391]    [Pg.24]    [Pg.451]    [Pg.585]    [Pg.47]    [Pg.154]    [Pg.262]    [Pg.326]    [Pg.328]    [Pg.333]    [Pg.336]    [Pg.67]    [Pg.67]   
See also in sourсe #XX -- [ Pg.271 ]




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