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・ EMD G22CU
・ EMD G26
・ EMD G8
・ EMD GA18
・ EMD GA8
・ EMD GL8
・ EMD GM10B
・ EMD GM6C
・ EMD GM6W
・ EMD GP10
・ EMD GP15-1
・ EMD GP15AC
・ EMD GP15D
・ EMD GP15T
・ EMD GP18
EMD GP20
・ EMD GP20D
・ EMD GP22ECO
・ EMD GP28
・ EMD GP30
・ EMD GP35
・ EMD GP38
・ EMD GP38-2
・ EMD GP38AC
・ EMD GP39
・ EMD GP39-2
・ EMD GP39DC
・ EMD GP39X
・ EMD GP40
・ EMD GP40-2


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EMD GP20 : ウィキペディア英語版
EMD GP20

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An EMD GP20 is a 4-axle (B-B) diesel-electric locomotive built by General Motors' Electro-Motive Division between November 1959 and April 1962. Power was provided by an EMD 567D2 16-cylinder turbocharged engine which generated . EMD was initially hesitant to turbocharge their 567-series diesel engine, but was spurred on to do so following successful tests made by Union Pacific in the form of UP's experimental ''Omaha GP20'' units. 260 examples of EMD's production locomotive model (with the EMD turbocharger) were built for American railroads.
The GP20 was the second EMD production locomotive to be built with an EMD turbocharged diesel engine, sixteen months after the six-axle (C-C) model SD24. Power output of the turbocharged SD24 was 33 percent higher than the of the concurrent Roots blower-equipped SD18s with the same engine displacement, per axle, but the power output of the turbocharged GP20 was only 11 percent higher than the of the concurrent Roots blower-equipped GP18s with the same engine displacement per axle, due to the limitations of the traction motors then available (this limitation was eliminated in the ''40-Series''). Nevertheless, the turbocharged GP20 provided full rated power at all altitudes, which the Roots-blown GP18 could not provide.
== EMD-type Turbo-Compressor (Turbocharger) ==

The turbocharger was the then-new EMD mechanically assisted turbo-compressor. During engine startup, and at lower power levels, during which there is not sufficient exhaust heat energy to drive the turbine fast enough for the compressor to supply the air necessary for combustion, the engine drives the compressor through a gear train and an overrunning clutch. At higher power levels, the overrunning clutch is disengaged, and the turbo-compressor operates as a true turbocharger. It is possible for the turbo-compressor to revert to compressor mode momentarily during commands for large increases in engine power. Turbocharging provides higher horsepower and good running characteristics at all altitudes. Turbocharging also improves fuel consumption and reduces emissions.
Previous Union Pacific experiments with turbocharging had utilized multiple Elliot〔Elliot turbochargers are now serviced by http://www.sinorengine.com/httpdocs/elliot_turbocharger.php〕 or Garrett AiResearch turbochargers feeding the usual pair of Roots blowers. EMD's mechanically assisted turbocharger eliminated the need for the pair of Roots blowers and also integrated the turbocharging function from two (Elliot) or four (AiResearch) smaller add-on turbochargers into one much larger, turbo-compressor (turbocharger) with intercooling.
The introduction of the EMD-type turbocharger was successful and all subsequent GP series were offered with this turbocharger, although not all models within a series were offered with turbocharging (e.g., the ''38'' sub-models within the ''40 Series'' were Roots-blown).

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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