A study of thermal transpiration for the development of a new type of gas pump.
Thermal transpiration for performance prediction and development of gas pump
Engineering topics
Publications and source records attributed to Altman, M..
Thermal transpiration for performance prediction and development of gas pump
Thermal diffusion of materials, magnetoplasma studies, and electrochemical processes for purpose of energy conversion by unconventional techniques
Gas pump utilizing thermal transpiration in porous media, noting variation of performance with porous media geometric properties
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Materials, plasma, and electrochemical research on unconventional energy conversion techniques
Thermal diffusivity measurement, thermoelectric properties of graphite alloys and compounds, superconductivity in tungsten films, and gas pump based on thermal transpiration
Thermal diffusivities of thermal energy storage materials from solid surface temperature measurements, discussing advantages of transient method
Thermal diffusivities of solid boron nitrate, and liquid sodium nitrate and lithium fluoride
Preliminary thermal transpiration data for helium through porcelain membrane for heat pump
Energy and power requirements and capabilities for electric automobile propulsion emphasizing fuel cell systems
Thermal energy storage utilizing heat of fusion of compounds noting advantages for space power systems
Engineering developments in plasma probes, ionized gas, electron emission, electrochemical fuel cells, solar-thermal energy conversion, and nonlinear heat transfer phenomena
Transient measurement of thermal diffusivity of refractory materials at high temperature
Rotating plasma in crossed electric and magnetic field
Institute for Direct Energy Conversion at University of Pennsylvania
Method for determining thermal diffusivity of thermal energy storage solid materials with high melting points