56 lines
3.1 KiB
Plaintext
56 lines
3.1 KiB
Plaintext
The turbo-encabulator in industry.
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For more then 50 years the Arthur D. Little Industrial Bulletin has
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endeavored to interpret scientific information in terms that he lay
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person could understand. "The turbo-encabulator in industry" is the
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contribution of J.H. Quick, graduate member of the Institution of
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Electrical Engineers in London, England, and was, first published in
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the Institution's Students' Quarterly Journal in December 1944, It is
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here reprinted without the kind permission of that publication and of
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the author in a further salute to Quick.
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For a number of years now, work has been proceeding to bring perfection
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to the crudely conceived idea of a machine that would not only supply
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inverse reactive current for use in unilateral phase detractors, but
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would also be capable of automatically synchronizing cardinal
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grammeters.
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Such a machine is the "turbo-encabulator." Basically, the
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only new principle involved is that instead of power being generated by
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the relative motion of conductors and fluxes, it is produced by the
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medial interaction of magneto-reluctance and capacitive directance.
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The original machine had a base plate of prefabulated amulite,
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surmounted by a malleable logarithmic casing in such a way that the two
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spurving bearings were in direct line with the pentametric fan. The
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latter consisted simply of six hydrocoptic marzelvanes, so fitted to
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the ambifacient lunar waneshaft that side fumbline was effectively
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prevented. The main winding was of the normal lotus-0-delta type
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placed in panendermic semiboiloid slots in the stator, every seventh
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conductor being connected by a nonreversible tremie pipe to the
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differential gridlespring on the "up" end of the grammeters.
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Forty-one manestically spaced grouting brushes were arranged to feed
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into the rotor slipstream a mixture of high S-value
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phenylhydrobenzamine and 5% remanative tetryliodohexamine. Both of
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these liquids have specific pericosities given by P=2.5C.n(exponent)6.7
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where n is the diathetical evolute of retrograde temperature phase
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disposition and C is Chlomondeley's annular grillage coefficient.
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Initially, n was measured with the aid of metaploar refractive
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pilfrometer (for a description of this ingenious instrument, see
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Reference 1), but up to the present, nothing has been found to equal
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the transcendental hopper dadoscope (2).
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Electrical engineers will appreciate the difficulty of nubing together
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a regurgitative purwell and a supramitive wennelsprock. Indeed, this
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proved to be a stumbling block to further development until, in 1942,
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it was found that the use of anhydrous nangling pins enabled a
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kryptonastic boiling shim to the tankered.
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The early attempts to construct a sufficiently robust spiral
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decommutator failed largely because of a lack of appreciation of the
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large quasipiestic stresses in the gremlin studs; the latter were
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specifically designed to hold the roffit bars to the spamshaft. When,
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however, it was discovered that spending could be prevented by a simple
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