Colling, US
Aaron Colling, Seattle, WA US
Patent application number | Description | Published |
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20090100158 | Backup and Recovery System for Multiple Device Environment - A backup system stores configuration data for several interdependent systems in a single backup store. As the systems are being configured and when changes are made to the systems, the backup store is updated with the change. The systems may be configured with each system having a designated role. During a restore operation, an otherwise unallocated system may assume a particular role and use the configuration logic defined for the role that may be taken from the backup store. The system may perform the restore in conjunction with the other systems and the interdependencies with the systems. | 04-16-2009 |
20090187648 | Security Adapter Discovery for Extensible Management Console - An extensible management console may use a discovery mechanism to detect and identify security services across a network. After identification, the console may download and install an adapter so that the security service may be monitored and controlled using the extensible management console. A catalog of security services may be obtained from a catalog server and used to scan various devices, registries, file systems, and active services to detect and identify security services that may be added to the extensible management console. | 07-23-2009 |
Arthur K. Colling, Monson, MA US
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20090032222 | HEAT EXCHANGER WITH VIBRATOR TO REMOVE ACCUMULATED SOLIDS - A ultrasonic transducer is associated with a heat exchanger and is operable to vibrate a tube associated with the heat exchanger to break up accumulated solids which may have formed on an outer periphery of the tube. A gas flow passes over the tube to remove the pulverized solids. | 02-05-2009 |
Craig Colling, Naperville, IL US
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20160031772 | Process for Recovering Paraxylene from at Least Two Feedstreams Containing Xylene Isomers - Processes for recovering paraxylene from at least two feedstreams containing xylene isomers. The process includes directing to a paraxylene recovery zone comprising at least one crystallization zone, a paraxylene-lean feedstream having a paraxylene to total xylene isomer ratio of 0.50 or less, and also directing to the paraxylene recovery zone, a paraxylene-rich feedstream having a paraxylene to total xylene isomer ratio of greater than 0.50. A paraxylene-containing product stream is recovered from the paraxylene recovery zone having a paraxylene to total xylene isomer ratio greater than that of the paraxylene-rich feedstream. The process provides improvements in paraxylene recovery efficiency and/or cost effectiveness. | 02-04-2016 |
Craig W. Colling, Warrenville, IL US
Patent application number | Description | Published |
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20080200696 | SEPARATION PROCESS USING AROMATIC-SELECTIVE POLYMERIC MEMBRANES - Processes are disclosed for production of value-added products from fluid admixtures of hydrocarbon compounds at least one of which is an aromatic hydrocarbon compound, by means of one or more devices using perm-selective polymeric membranes. More particularly, processes of the invention comprise separations using aromatic-selective polymeric materials comprising long-chain polymeric molecules in which recurring amide and imide linkages are part of the main polymer chain. Processes of the invention advantageously employ aromatic-selective membranes to separate an aromatic enriched stream from gaseous and/or liquid mixtures comprising one or more aromatic hydrocarbon compounds thereby producing a stream comprising the remaining compounds which may include alkenes and/or alkanes containing 3 or more carbon atoms, and/or alicyclic hydrocarbons. Processes of the invention are particularly useful for recovery of meta-xylene and para-xylene products from liquid mixtures even containing ethylbenzene as well as the three xylene isomers. | 08-21-2008 |
20090236213 | ENRICHMENT OF LIGHT HYDROCARBON MIXTURE - Light hydrocarbon enrichment is accomplished using a vertically oriented distillation column having a plurality of vertically oriented, nonselective micro/mesoporous hollow fibers. Vapor having, for example, both propylene and propane is sent upward through the distillation column in between the hollow fibers. Vapor exits neat the top of the column and is condensed to form a liquid phase that is directed back downward through the lumen of the hollow fibers. As vapor continues to ascend and liquid continues to countercurrently descend, the liquid at the bottom of the column becomes enriched in a higher boiling point, light hydrocarbon (propane, for example) and the vapor at the top becomes enriched in a lower boiling point light hydrocarbon (propylene, for example). The hollow fiber becomes wetted with liquid during the process. | 09-24-2009 |
20100264012 | ENRICHMENT OF LIGHT HYDROCARBON MIXTURE - Light hydrocarbon enrichment is accomplished using a vertically oriented distillation column having a plurality of vertically oriented, nonselective micro/mesoporous hollow fibers. Vapor having, for example, both propylene and propane is sent upward through the distillation column in between the hollow fibers. Vapor exits neat the top of the column and is condensed to form a liquid phase that is directed back downward through the lumen of the hollow fibers. As vapor continues to ascend and liquid continues to countercurrently descend, the liquid at the bottom of the column becomes enriched in a higher boiling point, light hydrocarbon (propane, for example) and the vapor at the top becomes enriched in a lower boiling point light hydrocarbon (propylene, for example). The hollow fiber becomes wetted with liquid during the process. | 10-21-2010 |
James David Colling, Seabrook, TX US
Patent application number | Description | Published |
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20140064979 | Multicant Winglets - A multicant winglet has a first blade section having a leading and a trailing edge, a first lowermost edge and a first uppermost edge, and a first central plane defined by the edges, and a second blade section having a leading and a trailing edge, a second lowermost edge and a second uppermost edge, and a second central plane defined by the edges. The first central plane is canted from vertical by a first cant angle, and the second central plane is canted from vertical by a second cant angle, the first cant angle unequal to the second cant angle. | 03-06-2014 |
James Todd Colling, Chattanooga, TN US
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20130022435 | LOW PROFILE WHEEL LIFT - A low profile wheel lift having a new crossbar/boom pivot connection enabling a recovery vehicle to quickly engage a disabled vehicle to facilitate damage-free towing to a degree not previously possible. | 01-24-2013 |
John A. Colling, Livonia, MI US
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20100063775 | METHOD AND APPARATUS FOR TESTING AUTOMOTIVE COMPONENTS - Method and apparatus are provided for automatically testing automotive components for one or more operating parameters. At least one operating parameter dependent variable is sensed and the data collected regarding the values of the operating parameter are transmitted to a data processing system. The data processing system compares the measured data to pre-programmed operating data that will determine a pass/fail decision for the machine element. The dependent variable data are compared to a predetermined set of values as determined by a pass envelope defined between a set of maximum values and a set of minimum values which can be illustrated as curves for an operating cycle of the machine element. The data processing system can determine, as correlated to an independent variable, whether or not the values are acceptable for the dependent variable. | 03-11-2010 |
Kent D. Colling, Forest, VA US
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20100226342 | Distributed Ad Hoc Network Protocol Using Synchronous Shared Beacon Signaling - A method for forming a protocol structure for use in an ad hoc, distributed, scaleable wireless sensor node network which enables nodes to join the network autonomously without there being a designated, permanent central time reference and for enabling such nodes to synchronize timing with each other and with other nodes in the network. The method involves discovering the active channel changing sequence used by the network, synchronizing communications of a new node with the remainder of the nodes in the network and scanning communications channels to detect merging clusters of nodes. | 09-09-2010 |