Tulsa, Oklahoma
United States
26
2012-10-04
The entities that hold a legal rights for patent applications filed by inventor Kidwell John E.:
John E. Kidwell from Tulsa, US has applied for patents for these inventions. The list has both pending applications and granted patents:
METHOD OF AND APPARATUS FOR TRANSFERRING HEAT ENERGY BETWEEN A HEAT EXCHANGING SUBSYSTEM ABOVE THE SURFACE OF THE EARTH AND MATERIAL THEREBENEATH USING ONE OR MORE COAXIAL-FLOW HEAT EXCHANGING STRUCTURES PRODUCING TURBULENCE IN AQUEOUS-BASED HEAT-TRANSFERING FLUID FLOWING ALONG HELICALLY-EXTENDING OUTER FLOW CHANNELS FORMED THEREIN
#2 | 2012-08-23COAXIAL-FLOW HEAT TRANSFER STRUCTURE
#3 | 2011-10-27BUILDING STRUCTURES EMPLOYING COAXIAL-FLOW HEAT TRANSFER STRUCTURES FOR THERMAL REGULATION
#4 | 2011-09-29ENTHALPY-BASED GROUND HEAT EXCHANGER (GHE) PERFORMANCE TEST INSTRUMENT SYSTEM
#5 | 2011-09-15GPS-tracking ground heat exchanger (GHE) performance test instrumentation network supporting a plurality of wireless portable GPS-based enthalpy-based GHE performance test instrumentation systems
#6 | 2011-09-15Method of and apparatus for empirically measuring the heat transfer rate of a ground heat exchanger (GHE) installation with its surrounding deep earth environment
#7 | 2011-09-15Method of and apparatus for interfacing geothermal equipment (GTE) in a building with a ground loop heat exchanging (GLHE) subsystem installed in the deep earth environment outside of the building
#8 | 2011-09-15APPARATUS AND PROCESS FOR CONTROLLING THE FLOW RATE OF HEAT TRANSFERRING FLUID FLOWING THROUGH A GROUND LOOP HEAT EXCHANGING (GLHE) SUBSYSTEM CONSTRUCTED FROM ONE OR MORE GROUND HEAT EXCHANGERS (GHE) WHILE OPERABLY CONNECTED TO GEOTHERMAL EQUIPMENT (GTE) INCLUDING A REFRIGERANT COMPRESSOR AND ASSOCIATED WITH A GEOTHERMAL SYSTEM
#9 | 2009-10-08Coaxial-flow heat transfer structures for use in diverse applications
#10 | 2008-09-04Method of and apparatus for transferring heat energy between a heat exchanging subsystem above the surface of the earth and material therebeneath using one or more coaxial-flow heat exchanging structures producing turbulence in aqueous-based heat-transfering fluid flowing along helically-extending outer flow channels formed therein
#11 | 2008-09-04System for exchanging heat within an environment using a coaxial-flow heat exchanging structure with helically-finned tubing
#12 | 2008-08-21Method of transferring heat energy between a heat exchanging subsystem above the surface of the earth and material therebeneath using a coaxial-flow heat exchanging structure generating turbulence along the outer flow channel thereof
#13 | 2008-08-07Natural gas dehydration and condensate separation system employing co-axial flow heat exchanging structures
#14 | 2008-08-07Building structures employing coaxial-flow heat transfer structures for thermal regulation
#15 | 2008-06-26Heat exchanging system employing co-axial flow heat exchanging structures installed in the ambient environment
#16 | 2007-02-08Geo-thermal heat exchanging system facilitating the transfer of heat energy using coaxial-flow heat exchanging structures installed in the earth for introducing turbulence into the flow of the aqueous-based heat transfer fluid flowing along the outer flow channel
#17 | 2007-02-08Coaxial-flow heat exchanging structure for installation in the earth and introducing turbulence into the flow of the aqueoue-based heat transfer fluid flowing along the outer flow channel while its cross-sectional characteristics produce fluid flows therealong having optimal vortex characteristics that optimize heat transfer with the earth
#18 | 2007-02-01Geo-thermal heat exchanging system facilitating the transfer of heat energy using coaxial-flow heat exchanging structures installed in the earth for introducing turbulence into the flow of the aqueous-based heat transfer fluid flowing along the outer flow channel
#19 | 2007-02-01Electromagnetic signal transmission/reception tower and accompanying base station employing system of coaxial-flow heat exchanging structures installed in well bores to thermally control the environment housing electronic equipment within the base station
#20 | 2007-01-25Coaxial-flow heat transfer structures for use in diverse applications
#21 | 2006-09-14Coaxial-flow heat transfer system employing a coaxial-flow heat transfer structure having a helically-arranged fin structure disposed along an outer flow channel for constantly rotating an aqueous-based heat transfer fluid flowing therewithin so as to improve heat transfer with geological environments
#22 | 2006-09-14Coaxial-flow heat transfer system employing a coaxial-flow heat transfer structure having a helically-arranged fin structure disposed along an outer flow channel for constantly rotating an aqueous-based heat transfer fluid flowing therewithin so as to improve heat transfer with geological environments
#23 | 2006-08-22Centrifugal heat transfer engine and heat transfer systems embodying the same
#24 | 2006-04-20Centrifugal heat transfer engine and heat transfer systems embodying the same
#25 | 2005-11-15Centrifugal heat transfer engine and heat transfer systems embodying the same
#26 | 2005-09-27Centrifugal heat transfer engine and heat transfer systems embodying the same
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