A superconducting magnetic bottle.
Superconducting magnetic bottle consisting of two mirror coils, central field coil and quadrupole cusp field coil
Engineering topics
Publications and source records attributed to Coles, W. D..
Superconducting magnetic bottle consisting of two mirror coils, central field coil and quadrupole cusp field coil
High field liquid neon cooled electromagnet design, operating characteristics and tests
Superconducting magnetic bottle to produce magnetic fields for plasma physics
Design, construction, and performance of cryogenically cooled and superconducting electromagnets
Design, construction, and performance of cryogenically cooled and superconducting electromagnets
Thermal conductive measurements on molybdenum, stainless steel, and stainless steel-molybdenum joints
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The icing characteristics of two typical light-airplane engine induction systems were investigated using the carburetors and manifolds of engines in the horsepower ranges from 65 to 85 and 165 to 185. The smaller system consisted of a float-type carburetor with an unheated manifold and the larger system consisted of a single-barrel pressure-type carburetor with an oil-jacketed manifold. Carburetor-air temperature and humidity limits of visible and serious Icing were determined for various engine power conditions. Several.methods of achieving ice-free induction systems are discussed along with estimates of surface heating requirements of the various induct ion-system components. A study was also made of the icing characteristics of a typical light-airplane air scoop with an exposed filter and a modified system that provided a normal ram inlet with the filter located in a position to Induce inertia separation of the free water from the charge air. The principle of operation of float-type carburetors is proved to make them inherently more susceptible to icing at the throttle plate than pressure-type carburetors.. The results indicated that proper jacketing and heating of all parts exposed to the fuel spray can satisfactorily reduce or eliminate icing in the float-type carburetor and the manifold. Pressure-type carburetors can be protected from serious Icing by proper location of the fuel-discharge nozzle combined with suitable application of heat to critical parts.