The present invention is directed to a laminar flow air mover and more specifically to a centrifugal blower having forwardly curved blades inclined in the direction of the rotation of the impeller and having a conduit secured to the outlet of the centrifugal blower. A transversely extending baffle having a profile smaller than the outlet of the conduit is pivotally mounted in the outlet end of the conduit in such a manner so as to direct the entire flow of air from the centrifugal blower to any location in a trailer. The laminar air flow created by the assembly creates a coherent flow of air which is capable of moving substantial distances from the outlet of the conduit before dissipating.
Prior to the present invention radial fans were used to direct air into a trailer but such fans failed to create a coherent flow of air which would travel any substantial distance. Such fans are typically low pressure fans wherein the air flow dissipates quickly in a radial manner.
The present invention provides a new and improved laminar flow air mover assembly which is capable of providing a coherent air flow for a distance of approximately 55 feet. Thus the laminar air flow mover is suitable for directing a coherent flow of air the entire length of the largest road trailer available today to provide a significantly improved air cooling or heating system for the trailer. The entire laminar air flow mover assembly is mountable within a building having a loading platform adjacent the door of the building aligned with the open rear end of a trailer. The air mover assembly is adjustably mounted on a support adjacent the door opening so as to locate the outlet of the conduit in alignment with the door opening of the building to direct the flow of air into the trailer.
The present invention provides a laminar flow air mover having a centrifugal blower with forwardly curved blades inclined in the direction of rotation of the impeller and having a conduit secured to the outlet of the centrifugal blower. A baffle is pivotably mounted in the outlet opening of the conduit for directing the flow of air to any location in a trailer. The laminar air flow created by the assembly creates a coherent flow of air which is capable of moving substantial distances from the outlet of the conduit before dissipating.
The laminar flow air mover assembly shown in
The outlet pipe (12) has an elbow-like configuration with the inlet opening (24) being larger than the outlet opening (26). The inlet opening (24) of the outlet pipe (12) is connected to the outlet opening (22) of the intermediate pipe (14) by means of a breakaway connection. The intermediate pipe (14) is provided with a stepped recess (52) adjacent the outlet end (22) for receiving the inlet opening (24) of the outlet pipe (12). The stepped recess (52) will limit the amount of overlap between the two pipes. The stepped recess (52) is provided with three equally spaced holes (57) only one of which is shown in FIG. 4. Three elongated leaf springs (54) are mounted in equally spaced relationship in the interior of the outlet end of the intermediate pipe (14). The leaf springs (54), only two of which are shown in
Since the diameter of the outlet opening (26) is less than the diameter of the inlet opening (24) and since the intermediate pipe (14) tapers downwardly in a similar manner, a certain degree of back pressure is provided to the centrifugal blower. It is well known that a centrifugal blower needs a certain amount of back pressure in order to operate more efficiently.
A mounting assembly for the centrifugal blower is comprised of a first smaller diameter pipe (30) and a larger diameter pipe (32) which are telescopically mounted with respect to each other. The first pipe (30) extends through an aperture (33) in a protruding portion (35) of the inlet plate (31) which is mounted on one side of the centrifugal blower housing mounting plate (36) is secured at one end of the first pipe (30) which in turn is secured to the centrifugal blower housing (10) adjacent the outlet opening thereof by means of screws or rivets (38). A mounting plate (40) is secured to the end of the larger diameter pipe (32) opposite the end which is disposed in a telescopic relationship with the pipe (30). An adjustable connection arrangement is provided between the telescopic pipes (30, 32) similar to that disclosed in the parent application Ser. No. 10/162,196. The mounting plate (40) may be secured to the wall of a warehouse adjacent the loading platform door by any suitable means such as screws.
A baffle plate (42) is pivotably mounted in the outlet opening (26) by integral pins (44) at opposite ends of the plate (42). A transverse through hole (45) is formed in each end of the pin which protrudes outwardly of the pipe (12). A split ring (47) can be inserted through each hole (45) to prevent withdrawal of the pin (44) from the opening. The baffle plate (42) may be manually pivoted so as to divert the flow of air coming from the outlet pipe (12) in the desired direction. A pair of coil springs (49) are mounted on each pin (44) respectively between the baffle plate and the interior surface of the outlet pipe. This will provide suitable frictional resistance to the turning of the baffle (42) so that the baffle plate 42 will remain in the desired position after pivoting.
By using a centrifugal blower in combination with an outlet pipe of gradually diminishing diameter and having a pivoted baffle in the outlet end thereof makes it possible to provide a coherent flow of air for a great distance in the desired direction.
The present application is a continuation-in-part of application Ser. No. 10/162,196 filed Jun. 5, 2002 now U.S. Pat. No. 6,692,229.
Number | Name | Date | Kind |
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1618155 | Thomas, Jr. et al. | Feb 1927 | A |
4291671 | Senne | Sep 1981 | A |
4730790 | Williams | Mar 1988 | A |
5299737 | McGinnis et al. | Apr 1994 | A |
5667329 | Yoder, Jr. | Sep 1997 | A |
6517015 | Rowley, Jr. | Feb 2003 | B2 |
Number | Date | Country | |
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20030228218 A1 | Dec 2003 | US |
Number | Date | Country | |
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Parent | 10162196 | Jun 2002 | US |
Child | 10388511 | US |