Porous Plate Water Boiler Design Study Final Report
This study program was conducted to obtain a sound theoretical understanding of and a valid analytical method for predicting the performance of porous plate water boilers.
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This study program was conducted to obtain a sound theoretical understanding of and a valid analytical method for predicting the performance of porous plate water boilers.
Water flow and cavitation in convergent-divergent boiler inlet nozzles
Design point performance of double containment tantalum and stainless steel mercury boiler for SNAP 8
Boiler design for potassium and cesium Rankine cycle space power plants
Experimental and analytical study of dynamics of single tube counterflow boiler
Frequency response of forced flow single tube boiler with inserts and exit restriction
9Cr-1Mo steel as mercury containment material for SNAP-8 boiler
Fabrication of counterflow double wall tantalum- stainless steel mercury boiler
Steady-state pressure drop and heat transfer data for single-tube-in-shell water boiler
Corrosion testing of tantalum for mercury containment in SNAP 8 boiler
Effects of blade-type flow swirlers on maximum exit quality of 5/8-inch boiler tubes
Performance tests of SNAP 8 double-containment tantalum-stainless steel mercury boiler
Size, weight, and performance of conventional condensers and boilers for steam-powered cars
X ray observations of two phase flow patterns in metallic, forced flow mercury boiler
Experimental evaluation of tantalum stainless steel mercury boilers for SNAP-8 system
SNAP-8 boiler performance degradation and two phase flow heat and momentum transfer models
Vapor generating boiler system for turbine motor
Experimental evaluation of four transfer functions for single tube boiler and demonstration of functions being independent of exit restrictions