Dr. Quintero graduated from the Univ De Panama, Fac De Med, Panama City, Panama in 1978. He works in Miami, FL and 1 other location and specializes in Endocrinology, Diabetes & Metabolism and Diabetes. Dr. Quintero is affiliated with Baptist Childrens Hospital, Baptist Hospital Of Miami, Coral Gables Hospital, Doctors Hospital and Mercy Hospital.
- Houston TX, US Aixa Maria Rivera-Rios - Houston TX, US Luis Emilio San Martin - Albuquerque NM, US Luis F. Quintero - Katy TX, US
International Classification:
G01N 17/04 E21B 47/00
Abstract:
Apparatus and methods to investigate a multiple nested conductive pipe structure can be implemented in a variety of applications. A pipe characterization tool obtains first measurements of multiple nested conductive pipes at a first time subsequent to placement of at least one of the multiple nested conductive pipes in a wellbore, and at a second time subsequent to the first time. Processing circuitry calculates a thickness change of the multiple nested conductive pipes between the first time and the second time and predicts future thickness based on this thickness change. Well treatment decisions can be made based on predicted future thickness. Additional apparatus, systems, and methods are disclosed.
Multi-Sensor Workflow For Evaluation Of Water Flow In Multiple Casing Strings With Distributed Sensors Data
A distance of a water flow path and a velocity of the water flow are calculated using data obtained from both a pulsed neutron sensor and distributed acoustic sensors. The two distance and velocity values are compared to obtain a first calculated distance and velocity. The distance of the water flow path and the velocity of the water flow are calculated using the Doppler data obtained from distributed Doppler sensors. The distance and velocity values are compared with the first calculated distance and first calculated velocity to obtain a second calculated distance and velocity values. The distance of the water flow path and the velocity of the water flow are calculated using temperature data obtained from distributed temperature sensors. The distance and velocity values are compared with the second calculated distance and velocity to determine a distance of a cement interface, and a velocity of a water flow therein.
Multi-Sensor Workflow For Evaluation Of Gas Flow In Multiple Casing Strings With Distributed Sensors
A gas presence and distance thereof are calculated using pulsed neutron data. A distance of a gas flow path and a velocity of the gas flow therein are calculated using distributed acoustic sensors. The gas saturation and distance, and gas velocity and distance obtained from the noise data are correlated to obtain a first calculated distance and velocity values. The distance and the velocity of the gas flow are calculated using distributed Doppler sensors. The distance and velocity values are compared with the first calculated distance and velocity values to obtain a second calculated distance and velocity values. The distance of the gas flow and the velocity of the gas flow are calculated using distributed temperature sensors. The distance and velocity values are compared with the second calculated distance and velocity values to determine a distance of a cement interface, and a velocity of a gas flow therein.
Multi-Sensor Workflow For Evaluation Of Gas Flow In Multiple Casing Strings
A distance of a gas flow path and a velocity of the gas flow therein are calculated using pulsed neutron data and noise data. The gas saturation and distance to flow path obtained from the pulsed neutron data and gas velocity and distance to flow path obtained from the noise data are compared with each other to obtain a first calculated distance and a first calculated velocity. The distance and the velocity of the gas flow are calculated using Doppler data. The distance and velocity values are compared with the first calculated distance and first calculated velocity to obtain a second calculated distance and velocity values. The distance and the velocity of the gas flow are calculated using temperature data. The distance and velocity values are compared with the second calculated distance and velocity to determine a distance of a cement interface and a velocity of a gas flow therein.
Multi-Sensor Workflow For Evaluation Of Water Flow In Multiple Casing Strings With Distributed Sensors Data
A distance of a water flow path and a velocity of the water flow is calculated using data obtained from both a pulsed neutron sensor and distributed acoustic sensors. The two distance and velocity values are compared to obtain a first calculated distance and velocity. The distance of the water flow path and the velocity of the water flow are calculated using the Doppler data obtained from distributed Doppler sensors. The distance and velocity values are compared with the first calculated distance and first calculated velocity to obtain a second calculated distance and velocity values. The distance of the water flow path and the velocity of the water flow are calculated using temperature data obtained from distributed temperature sensors. The distance and velocity values are compared with the second calculated distance and velocity to determine a distance of a cement interface, and a velocity of a water flow therein.
Multi-Sensor Workflow For Evaluation Of Water Flow In Multiple Casing Strings
A distance of a water flow path and a velocity of the water flow is calculated using pulsed neutron data and noise data. The two distance and velocity values are compared with each other to obtain a first calculated distance and a first calculated velocity. The distance of the water flow path and the velocity of the water flow are calculated using Doppler data. The distance and velocity values are compared with the first calculated distance and first calculated velocity to obtain a second calculated distance and velocity values. The distance of the water flow path and the velocity of the water flow are calculated using temperature data. The distance and velocity values are compared with the second calculated distance and velocity to determine a distance of a cement interface and a velocity of a water flow in the cement interface.
ITT Technical Institute Houston, TX Jan 2011 to Jan 2012 Bachelor of Science in Information Systems SecurityITT Technical Institute Houston, TX Jan 2009 to Jan 2011 Associates Degree in Computer Networking Systems
Skills:
SKILLS Bilingual (English & Spanish) Microsoft Office (Word, Power Point, Outlook) Windows OS - XP, Vista, Windows Server 2003 & Windows 7 User support/troubleshooting Customer service oriented
Oct 2010 to 2000 Trade Client Service Officer, AVPCiticorp North America Inc. - Global Trade Services Tampa, FL May 2009 to Oct 2010 Analyst - Advanced Products UnitCiticorp North America Inc. - Global Trade Services Tampa, FL 2008 to May 2009 Analyst - LATAM Initiation UnitGlobal Trade Services Tampa, FL 2006 to 2008 Specialist - Foreign Standby UnitCiticorp North America Inc. - Global Trade Services Tampa, FL 2003 to 2006 Specialist - U.S. Standby UnitCiticorp North America Inc. - Global Trade Services Tampa, FL 2000 to 2003 Senior Service Rep. - Document Examination UnitBPD International Bank New York, NY 1998 to 2000 Letters of Credit SpecialistBanco de la Rep. Oriental del Uruguay New York, NY 1996 to 1998 Letters of Credit Specialist
Education:
University of Phoenix Tampa, FL 2010 B.S. in Business
Skills:
Advance knowledge of MS Office (Excel, Word, Power Point, and Outlook). Advance working knowledge of Bank systems (Citismart, AFS, CMOS, CADD, AMC, Credit Platform, Citidirect, Ecommit, TRIMS, and Titan) and iLien, D&B, SOS Advance knowledge of Standby Letters of Credit, Import/Export Letters of Credit, Transferable Letters of Credit, Documentary Collections, Clean Bankers' Acceptance, and Supplier Finance.
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