Eyuboglu
Abbas Sami Eyuboglu, Conroe, TX US
Patent application number | Description | Published |
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20130105224 | Method and Apparatus For Sensing Elongated Subterranean Anomalies | 05-02-2013 |
20130192359 | FORMATION EVALUATION PROBE SET QUALITY AND DATA ACQUISITION METHOD - In some embodiments, an apparatus and a system, as well as a method an article, may operate to move a borehole seal in space with respect to the wall of a borehole while monitoring borehole seal contact quality data, which may comprise borehole seal contact pressure data and acoustic data. Operations may further include adjusting the movement of the borehole seal based on the borehole seal contact quality data. Additional apparatus, systems, and methods are disclosed. | 08-01-2013 |
20150068736 | FORMATION ENVIRONMENT SAMPLING APPARATUS, SYSTEMS, AND METHODS - In some embodiments, an apparatus and a system, as well as a method and an article, may operate to advance a sampling and guard probe ( | 03-12-2015 |
Abbas Sami Eyuboglu, The Woodlands, TX US
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20130197809 | RECONSTRUCTING DEAD OIL - A computer accepts dead-oil properties of a reservoir fluid sampled from a well. The dead-oil properties are the measured composition of the reservoir fluid after volatile components of the reservoir have substantially vaporized. The computer analyzes the dead-oil properties and a constraint to produce estimated live-oil properties of the reservoir fluid. The live-oil properties are the composition of the reservoir before the volatile components have substantially vaporized. The computer uses the estimated live-oil properties to make a decision regarding the well. | 08-01-2013 |
M. Vedat Eyuboglu, Concord, MA US
Patent application number | Description | Published |
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20090318162 | BOOSTING A SIGNAL-TO-INTERFERENCE RATIO OF A MOBILE STATION - In a cell of a cellular wireless communication system, the SIR of at least one user in a sector of the cell is altered by temporarily reducing transmissions on a forward link in at least one other sector of the cell or a sector in another cell in accordance with a pattern. | 12-24-2009 |
20110065464 | BOOSTING A SIGNAL-TO-INTERFERENCE RATIO OF A MOBILE STATION - In a cell of a cellular wireless communication system, the SIR of at least one user in a sector of the cell is altered by temporarily reducing transmissions on a forward link in at least one other sector of the cell or a sector in another cell in accordance with a pattern. | 03-17-2011 |
20120243476 | RADIO NETWORK CONTROL - In connection with a mobile wireless subnetwork having multiple radio network controllers and multiple radio nodes, a session established for an access terminal is associated with a serving radio network controller. The association is maintained as the access terminal moves from the coverage area of one radio node to the coverage area of another radio node within the same subnetwork. Access channel packets are routed from an access terminal having an existing session to the serving radio network controller by determining the IP address of the serving radio network controller using a session identifier. | 09-27-2012 |
Sami Eyuboglu, Conroe, TX US
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20130199286 | Non-Invasive Compressibility and In Situ Density Testing of a Fluid Sample in a Sealed Chamber - In situ density and compressibility of a fluid sample are determined for a fluid sample collected downhole. The density and compressibility of the fluid sample is determined by measuring a distance to a piston contained within the sample chamber using an external magnetic field sensor that senses a magnetic field emanating from a magnetic provided on the piston internal to the sample chamber. The testing is performed quickly and at the surface in a noninvasive fashion (i.e., without opening the sample chamber). | 08-08-2013 |
Sami Eyuboglu, Houston, TX US
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20150112599 | DETERMINING THE QUALITY OF DATA GATHERED IN A WELLBORE IN A SUBTERRANEAN FORMATION - Methods for determining the quality of data gathered in a wellbore in a subterranean formation including (a) collecting a formation fluid sample in the wellbore in the subterranean formation using a formation tester for receiving the formation fluid, wherein the formation tester is lowered to at least one depth in the wellbore in the subterranean formation by a conveyor; (b) acquiring a wellbore measurement (“WM”) from the least one depth with the formation tester; (c) determining from the WM a measured quality value (“MQV”); (d) assigning a threshold value (“TV”) to the MQV; (e) assigning a range value (“RV”) to the MQV, based on geometric scaling of the TV, the RV defining the limits of the MQV above and below the TV; and (f) calculating a score value (“SV”) based on the MQV, the TV, and the RV, wherein the SV is a number between 0 and 2*TV, and wherein the quality of the WM increases as the SV increases. | 04-23-2015 |
Sami Abbas Eyuboglu, The Woodlands, TX US
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20130311099 | METHOD AND APPARATUS FOR EVALUATING FLUID SAMPLE CONTAMINATION BY USING MULTI SENSORS - A method of evaluating fluid sample contamination is disclosed. A formation tester tool is introduced into a wellbore. The formation tester tool comprises a sensor. Sensor data is acquired from the sensor and a contamination estimation is calculated. A remaining pump-out time required to reach a contamination threshold is then determined. | 11-21-2013 |
20140027112 | SYSTEMS AND METHODS FOR MEASURING PARAMETERS OF A FORMATION - A method of measuring parameters of a formation along multiple axes is disclosed. A formation tester tool is introduced into a wellbore. The formation tester tool includes a first probe oriented at an angle from a second probe about an axis of the formation tester tool. The first and second probes are positioned against a surface of the wellbore. Fluid is injected via at least one of the first and second probes. Pressure parameters corresponding to the fluid injected into the formation are monitored. Formation stresses about the formation fractures along multiple axes are determined based, at least in part, on the pressure parameters. | 01-30-2014 |
Sammi Abbas Eyuboglu, Conroe, TX US
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20150040657 | Automatic Optimizing Methods for Reservoir Testing - A method of determining a reservoir parameter of a subterranean formation comprising: initiating an initial pressure pulse in the subterranean formation; initiating a series of subsequent pressure pulses in the subterranean formation until the reservoir parameter may be determined, wherein each subsequent pressure pulse is optimized utilizing analytical and/or numerical simulation models; and determining the reservoir parameter. | 02-12-2015 |