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Improved NIST radiometric optical characterization meets the modern requirements of laser-induced breakdown spectroscopy. Some advances over previous NIST designs used an intense, short-duration laser pulse to observe a transient jet-induced temperature and pressure by using a diode or a pulsed flashlamp. A new design is based on a pulsed high-power argon-ion laser designed for 6 degrees Celsius-cooling of samples and other applications at intensities of the order of 10 erg/cm2. The laser is combined with a supersonic nozzle to produce a high-temperature submillimeter plasma that is large enough for a spectroscopy application. The results for the argon laser demonstrate that the pressure and temperature can be controlled independent of the nature of the optical equipment, to give results that are approximately three times more accurate. These and other improvements to the system should lead to higher reproducibility of results with many more samples and increased applications.
In response to requirements identified during the design and construction of the NASA/NSF NOVA program, a high performance turbopump is described and analyzed that is optimized for low-emissions ion propulsion systems operating in vacuum. The pump is designed for high reliability using simplifications that take advantage of the benign low-pressure operation used at low altitudes and for higher reliability since failing at low pressure may not be catastrophic.
Electro-thermal conductivity sensors are widely used for boiler measurement or for such measurement of thermal performance as drying grain. Previous diffusimeters did not provide sufficient temperature uniformity over the sensor area. A small cylindrical sensor has been developed at the NASA Goddard Center for Advanced Development employing a multi-layer thin film sensor array that operates on the basis of thermal-transfer type resistivity rather than the more widely used bridge-detector principle. We report parametric and calibration data for the process. Circuit design is presented indicating the effect of internal calibration, an assumption used for obtaining thermal coating uniformity required for the inertial confinement fusion program. Thus, the described sensor design provides a practical methodology for the measurement by simple algorithms for constant conductivity of the most important desirables in a typical turbine or boiler process. d2c66b5586
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