Barbely
Allen Peter Barbely, Auburn, GA US
Patent application number | Description | Published |
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20160123651 | AIR HANDLING UNIT WITH CONDENSATION COLLECTION SYSTEM - A condensation collection system including a housing, a heat-exchanging coil located in the housing, a drain pan located in the housing and underneath the heat-exchanging coil, a water-sensitive element located in the housing and underneath both the heat-exchanging coil and the drain pan. The drain pan is configured to collect condensation from an interior of the housing. The drain pan includes a bottom, three or more exterior walls that generally conform to an interior perimeter of the housing, a primary drain located on a first exterior wall selected from the three or more exterior walls, and a controlled overflow drain located on a second exterior wall selected from the three or more exterior walls. The primary drain is configured to drain collected condensation from the drain pan. The controlled overflow drain is configured to drain the collected condensation from the drain pan. | 05-05-2016 |
20160123682 | AIR HANDLING UNIT WITH INTERNAL SUPPORT SYSTEM - An air handling unit, includes: an outer casing defining an air passage from a first opening on a first side of the outer casing to a second opening on a second side of the outer casing; a first supporting member in the air passage and affixed to the outer casing; a heat-exchanging coil affixed to a surface of the first supporting member facing the second opening; a second supporting member located such that the heat-exchanging coil is located between the first supporting member and the second supporting member; a first connection member connecting the first supporting member and the second supporting member; and insulation material adjacent to the outer casing at least between the first supporting member and the second opening, the insulation material being located between the first connection member and the outer casing, wherein the insulation material is unperforated between the first supporting member and the second opening. | 05-05-2016 |
Eric Barbely, Decatur, GA US
Patent application number | Description | Published |
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20090309355 | DOUBLE COVER-CENTER CUSHION DECOUPLER - A sealed coupling for connecting two pipe ends include two operating covers for respective connection to respective pipe ends, and elongated bellows having respective ends and a damping element supported by respective rims of said covers, said damping element disposed radially outwardly of said bellows and oriented centrally of said respective bellows ends for dissipating forces on said coupling uniformly across said bellows. | 12-17-2009 |
Eric Barbely, Atlanta, GA US
Patent application number | Description | Published |
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20160003388 | DYNAMIC LINER SLEEVE FOR FLEXIBLE COUPLING - A flexible coupling includes a liner, a bellow, and a liner sleeve preferably defined by a compressed woven mesh strip spirally wound around the liner between bellow and liner and moveable longitudinally with respect to the bellow and liner when the coupling expands linearly. An alternate sleeve in the form of a cylinder is disposed about the liner, under the bellow and is formed of a woven non-compressed mesh. | 01-07-2016 |
Jason R. Barbely, East Islip, NY US
Patent application number | Description | Published |
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20100224410 | SYSTEM AND METHOD FOR DAMPING VIBRATION IN A DRILL STRING USING A MAGNETORHEOLOGICAL DAMPER - A system for damping vibration in a drill string can include a magnetorheological fluid valve assembly having a supply of a magnetorheological fluid, a first member, and a second member capable of moving in relation to first member in response to vibration of the drill bit. The first and second members define a first and a second chamber for holding the fluid. Fluid can flow between the first and second chambers in response to the movement of the second member in relation to the first member. The valve assembly can also include a coil for inducing a magnetic field that alters the resistance of the magnetorheological fluid to flow between the first and second chambers, thereby increasing the damping provided by the valve. A remanent magnetic field is induced in one or more components of the magnetorheological fluid valve during operation that can be used to provide the magnetic field for operating the valve so as to eliminate the need to energize the coils during operation except temporarily when changing the amount of damping required, thereby eliminating the need for a turbine alternator power the magnetorheological fluid valve. A demagnetization cycle can be used to reduce the remanent magnetic field when necessary. | 09-09-2010 |
20120085581 | SYSTEM AND METHOD FOR DAMPING VIBRATION IN A DRILL STRING USING A MAGNETORHEOLOGICAL DAMPER - A system for damping vibration in a drill string can include a magnetorheological fluid valve assembly having a supply of a magnetorheological fluid. A remanent magnetic field is induced in the valve during operation that can be used to provide the magnetic field for operating the valve so as to eliminate the need to energize the coils except temporarily when changing the amount of damping required The current to be supplied to the coil for inducing a desired magnetic field in the valve is determined based on the limiting hysteresis curve of the valve and the history of the magnetization of the value using a binary search methodology. The history of the magnetization of the valve is expressed as a series of sets of current and it resulting magnetization at which the current experienced a reversal compared to prior values of the current. | 04-12-2012 |
Jason R. Barbely, Middletown, CT US
Patent application number | Description | Published |
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20090008151 | Rotary Steerable Motor System for Underground Drilling - A preferred embodiment of a system for rotating and guiding a drill bit in an underground bore includes a drilling motor and a drive shaft coupled to drilling motor so that drill bit can be rotated by the drilling motor. The system further includes a guidance module having an actuating arm movable between an extended position wherein the actuating arm can contact a surface of the bore and thereby exert a force on the housing of the guidance module, and a retracted position. | 01-08-2009 |