Transport refrigeration system

4770002
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Inventors

Viegas, Herman H.
Havemann, Robert K.
McClellan, Bruce E.

Application #

095380

Filed

Sep-8-1987

Published

Sep-13-1988

Current US Class

062/239
062/429
415/61
416/169R
416/170R

International Classes

B60H 001/32

Field of Search

62/239 62/429 415/61 415/123 416/124 416/169 417/223 417/319

Assignee

Thermo King Corporation (Minneapolis, MN)

Examiners

Tapolcai; William E.

Attorney, Agent or Firm

Lackey; D. R.

US Patent References

4365930   Electric fan
4551986   Transport refrigerat...

Referenced by:

View Backward References

Citation

Cite This Patent

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Abstract
A transport refrigeration system including a compressor, a prime mover for the compressor, a condenser, and an evaporator blower assembly. The evaporator blower assembly includes a shaft driven by the prime mover, a first blower fixed to the driven shaft, a second blower journaled for rotation about the driven shaft, and a clutch for coupling and decoupling the first and second blowers. The volume of air moved through the evaporator and into the conditioned space or cargo area is thus selectable based upon need of the transport refrigeration system, without the necessity of changing the speed of the prime mover. The resulting savings in power realized when only one blower is being driven is automatically translated into fuel savings and/or increased cooling capacity.
 
Claims
We claim as our invention:

1. A transport refrigeration system including a compressor, compressor prime mover, condenser and evaporator, the improvement comprising:

an evaporator blower assembly including a shaft driven by the prime mover, first and second blowers, and clutch means,

said first blower being fixed to said driven shaft,

said second blower being journaled for rotation about said driven shaft,

said clutch means being disposed to selectively couple and decouple said second blower to said first blower,

and condenser air mover means driven by the prime mover,

whereby said first and second blowers may be coupled for rotation with said driven shaft when the transport refrigeration system requires the air volume of both said first and second blowers, and decoupled such that only said first blower rotates with said driven shaft, when the transport refrigeration system requires only the air volume of said first blower, to change the volume of air delivered by said evaporator blower assembly without the necessity of changing prime mover speed, and without changing the volume of air delivered by said condenser air mover means, to increase cooling capacity and save energy when the air volume of said first blower is adequate.



Description
BACKGROUND OF THE INVENTION

1. Field of the Invention

The invention relates to transport refrigeration systems, such as the refrigeration systems used to condition frozen and perishable loads in the cargo spaces of trucks and trailers.

2. Description of the Prior Art

The evaporator and condenser sections of transport refrigeration systems each require air delivery or air mover means in the form of blowers and/or fans for moving air across the finned tubes which make up the evaporator and condenser sections. It is conventional to drive the blowers and fans directly from the prime mover which drives the refrigerant compressor, which may be a dedicated internal combustion engine, such as a Diesel engine; or indirectly by electric motors which are powered by alternators driven by the prime mover. The fans and motors consume a significant percentage of the power available from the prime mover. It would thus be desirable, and it is the object of the present invention, to reduce the power consumed by the air delivery means of transport refrigeration systems, at least when a reduction in air volume will not deleteriously affect the cargo in the conditioned space, to conserve fuel and make additional cooling capacity available to the system.
 
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