Exhaust pit, system, and methods of using the same
09987651 ยท 2018-06-05
Assignee
Inventors
Cpc classification
International classification
Abstract
The present invention relates to floor exhaust pits. Specifically, the present invention relates to a raised basement with an exhaust system therein for use in numerous locations. More specifically, the present invention provides an enclosed area having a floor and a ceiling, wherein said floor and ceiling comprise exhaust systems for circulating air into and out of the enclosed area. Additionally, the floor exhaust removes contaminants from the enclosed area.
Claims
1. An automotive paint booth comprising an enclosed area comprising a floor surface and a ceiling, and a plurality of sidewalls: an above ground exhaust pit within the automotive paint booth comprising: a platform disposed a length above the floor surface, the platform having a first end and a second end opposite the first end, the platform further comprising an exhaust system disposed within a wall on the second end and a ramp on the first end configured to allow automobiles to drive onto the platform; a first hollow passageway disposed between the platform and the floor surface; a first grating disposed on the platform and above the first hollow passageway; and a first filter disposed between the first hollow passageway and first grating; a second hollow passageway disposed between the platform and the surface; a second grating disposed on the platform and above the second hollow passageway; a second filter disposed between the second hollow passageway and the second grating; a solid panel disposed between the first and second grating, wherein the solid panel is configured to prevent airflow therethrough; a third hollow passageway between the solid panel and the surface; a first wall between the first hollow passageway and the third hollow passageway disposed the length of the platform and configured to prevent airflow therethrough except for a first opening between the first hollow passageway and the third hollow passageway at the first end of the platform, wherein the first opening is configured to allow airflow from the first hollow passageway to the third hollow passageway; a second wall between the second hollow passageway and the third hollow passageway disposed the length of the platform and configured to prevent airflow therethrough except for a second opening between the second hollow passageway and the third hollow passageway at the first end of the platform, wherein the second opening is configured to allow airflow from the second hollow passageway to the third hollow passageway.
2. The above ground exhaust pit of claim 1 wherein the first grating can support more than 5000 pounds.
3. The above ground exhaust pit of claim 1 further comprising: an exhaust vent disposed on the second end of the platform in communication with the third hollow passageway disposed between the platform and the surface and configured to direct airflow from the first hollow passageway and away from the platform.
4. The above ground exhaust pit of claim 1 further comprising: an automobile disposed on the platform.
5. A method of using an above ground exhaust pit comprising the steps of: providing an above ground exhaust pit comprising a platform disposed a length above a surface, the platform having a first end and a second end opposite the first end, the platform further comprising an exhaust system disposed within a wall on the second end and a ramp on the first end configured to allow automobiles to drive onto the platform, a first hollow passageway disposed between the platform and the surface, a first grating disposed on the platform and above the first hollow passageway, and a first filter disposed between the first hollow passageway and first grating, a second hollow passageway disposed between the platform and the surface, a second grating disposed on the platform and above the second hollow passageway, a second filter disposed between the second hollow passageway and the second grating, a solid panel disposed between the first and second grating, wherein the solid panel is configured to prevent airflow therethrough, a third hollow passageway between the solid panel and the surface, a first wall between the first hollow passageway and the third hollow passageway disposed the length of the platform and configured to prevent airflow therethrough except for a first opening between the first hollow passageway and the third hollow passageway at the first end of the platform, wherein the first opening is configured to allow airflow from the first hollow passageway to the third hollow passageway, a second wall between the second hollow passageway and the third hollow passageway disposed the length of the platform and configured to prevent airflow therethrough except for a second opening between the second hollow passageway and the third hollow passageway at the first end of the platform, wherein the second opening is configured to allow airflow from the second hollow passageway to the third hollow passageway; and directing an airflow through the first grating and the first filter into the first hollow passageway wherein the airflow is then directed through the first opening into the third hollow passageway and further then directed into the exhaust system; and venting the airflow away from the platform.
6. The method of claim 5 wherein the above ground exhaust pit further comprises an exhaust vent on the second end of the platform wherein the exhaust vent draws the airflow from the third hollow passageway and away from the platform.
7. The method of claim 5 further comprising the step of: disposing and automobile on the platform.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The drawing figures depict one or more implementations in accord with the present concepts, by way of example only, not by way of limitations. In the figures, like reference numerals refer to the same or similar elements.
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DETAILED DESCRIPTION OF THE PRESENTLY PREFERRED EMBODIMENTS
(7) The present invention relates to floor exhaust pits. Specifically, the present invention relates to a raised basement with an exhaust system therein for use in numerous locations. More specifically, the present invention provides an enclosed area having a floor and a ceiling, wherein said floor and ceiling comprise exhaust systems for circulating air into and out of the enclosed area. Additionally, the floor exhaust removes contaminants from the enclosed area.
(8) The present invention may provide a downward air flow for use within an automotive cleaning, painting, and/or welding booth by providing a pit or passageway disposable beneath a work area. The present invention may be disposable within pre-formed booths or in other locations without much installation. The present invention may provide a passageway that may extend a minimal length away from a surface, so that a user is unlikely to trip over it.
(9) The present invention, in one embodiment, may be a sloped surface comprising a plurality of diffusion baffles and air filters disposed over two pre-defined rows that connect to a smooth central exhaust tunnel or duct. The sloped surface may allow a user to easily transport an object above the surface and work on the underside of any object placed on the surface. The present invention may require less assembly time and materials to install than a normal floor pit because no ground needs to be excavated. The present invention may be placed on a surface, in a booth, or in a room and may have a low height so as not to decrease the volume or height of the booth or room, or require the room or booth to be heightened. The present invention may be compact and fit entirely within a pre-existing booth so as not to take up additional space. Many additional benefits will be discussed with reference to the figures.
(10) Now referring to the figures, wherein like numerals refer to like parts,
(11) Additionally, the at least one passageway 14 may extend a length horizontally so that the at least one passageway 14 extends the entire length of a vehicle, machinery, or other object to be worked on in the work area 12. This may allow air flow to envelop the front and back of the vehicle, machinery, or other object more efficiently. Further, this may prevent overspray of paint or chemicals from ending up on a plurality of panels 20.
(12) The plurality of panels 20 may seal off the area beneath the vehicle, machinery, or other object being worked on, in order to direct air flow towards an exhaust vent 30, as indicated by downward air flow 15. The plurality of panels 20 may have sufficient strength to allow a user to walk thereon and to support a vehicle, machinery, or other object to be worked on. In one embodiment, the plurality of panels 20 may be able to support around 5,100 pounds.
(13) The downward air flow 15 may show how the at least one passageway 14 interacts with the exhaust system 16. The downward air flow 15 may be drawn into the at least one passageway 14 through the at least one grating 18. The downward air flow 15 may travel towards a first end 11 of the above ground exhaust pit 10. The downward air flow 15 may then enter into the area beneath the plurality of panels 20. The downward air flow 15 may then travel towards a second end 13 of the above ground exhaust pit 10 where the exhaust system 16 is located. The downward air flow 15 may exit the above ground exhaust pit 10 through the exhaust vent 30. This downward air flow 15 may be continuous, periodic, or temporary as determined by a user. The user may be able to set a time and/or a rate of air flow, or a user may merely turn the exhaust system 16 on or off. Alternatively, the user may be able to reverse the air flow.
(14) The exhaust vent 30 may be connected to a ventilation system that extends outside of a work both when the above ground exhaust pit 10 is installed in new and/or pre-existing booths. Alternatively, the exhaust vent 30 need not be connected to anything if the above ground exhaust pit is being used in an open area. In another embodiment, the exhaust vent 30 may be directional such that an air flow may be directed away from the work area 12.
(15) In one embodiment, the plurality of panels 20 may be replaced with additional passageways 14 for more air flow surface area. As shown in
(16) The above ground exhaust pit 10 may further comprise storage space 22 disposed on one end of the above ground exhaust pit 10. The above ground exhaust pit 10 may be manufactured and/or sold as a single unit. Alternatively, each component may be separately manufactured and/or sold and may be subsequently combined at the discretion of the user. The above ground exhaust pit 10 may be moved between locations, may be installed in new work booths, or may be inserted into pre-existing work booths.
(17) As seen in
(18) Of course, the exhaust system 16, specifically the fan rotor 28 and fan 29, may be reversed and may create a blowing force instead of a suction force, as seen in
(19) As seen in
(20) Additionally, a support 34 may be disposed beneath the at least one filter 32. The support 34 may be a grid made of wire, metal, plastic, paper, cardboard, polymer, any combination thereof, or other material known to one skilled in the art that has sufficient strength to support the at least one filter 32 and at least one grating 18. The support 34 may be used to hold the at least one filter 32 in place while an air flow travels therethrough. A diffuser (not shown) may be disposed beneath the support 34 and may control the flow of air into the at least one passageway 14. Of course, the diffuser may be disposed above the support 34, the at least one filter 32, or the at least on grating 18 without diminishing its function. The diffuser may be a diffusion baffle or may merely be a pane with a plurality of holes therein. The plurality of holes may differ in size, shape, and number according to a determined air flow.
(21) In one embodiment, the diffuser may slow or otherwise control the air flow entering the at least one passageway. In another embodiment the diffuser may prevent air disruption within the at least one passageway 14. Additionally, different diffusers may be placed throughout the length on the at least one passageway 14 to control the air flow therethrough. For example, a diffuser towards the first end 11 of the above ground exhaust pit 10 may have a large number of holes while a diffuser towards the second end 13 of the above ground exhaust pit 10 may have a small number of holes. In another example, a diffuser towards the first end 11 of the above ground exhaust pit 10 may have large holes while a diffuser towards the second end 13 of the above ground exhaust pit 10 may have small holes. Of course, any combination of holes of varying number and sizes may be used to control the determined air flow through the above ground exhaust pit 10. Alternatively, the diffuser may be replaced with a nozzle that may increase and/or direct the air flow exiting the at least one passageway 14 when the upward air flow 25 is present.
(22) The at least one passageway 14 may be formed with a plurality of walls 36. The plurality of walls 36 may generally surround the at least one passageway 14 on four sides except for the one or more entryways 24. The plurality of walls 36 may have a connection seal disposed between each of the plurality of walls 36 to prevent air from escaping. Additionally, a bottom seal may be disposed on a bottom 38 of the plurality of walls 36 such that the plurality of walls 36 may be placed onto any surface to seal off the at least one passageway 14 from the rest of the surface. Alternatively, a floor wall may be disposed beneath the plurality of walls 36 in order to seal the bottom of the at least one passageway 14. In a preferred embodiment, the at least one passageway may be sealed on five sides, leaving the top and one or more entryways open for air to flow therethrough. The connection and bottom seals may allow air to flow through the at least one passageway 14 without loss of volume, pressure, and the like.
(23) The plurality of walls 36 may be attached together by screws, nails, nuts and bolts, rivets, glue, sealant, or other attaching method known to one skilled in the art. Preferably, as with between the plurality of walls 36, the attaching method would maintain the seal of the at least one passageway 14. Of course, the present invention may be practiced without a complete seal on five sides and/or with air flow leakage or negligible air flow leakage.
(24) The plurality of walls 36 may have a top 40 that may support the diffuser, the support 34, the at least one filter 32, the at least one grating 18, and/or the plurality of panels 20 thereon. The top 40 may have a plurality of recesses 44 that may allow the top 40, the plurality of panels 20, and the at least one grating 18 to be on the same plane, as shown in
(25) As shown in
(26) It should be noted that various changes and modifications to the presently preferred embodiments described herein will be apparent to those skilled in the art. Such changes and modifications may be made without departing from the spirit and scope of the present invention and without diminishing its attendant advantages. Further, references throughout the specification to the invention are nonlimiting, and it should be noted that claim limitations presented herein are not meant to describe the invention as a whole. Moreover, the invention illustratively disclosed herein suitably may be practiced in the absence of any element which is not specifically disclosed herein.