Distillation Patents (Class 700/270)
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Patent number: 12233362Abstract: An energy saving and emission reduction system for chemical separation and purification process is disclosed. The chemical separation and purification process includes a synthesis section and/or a distillation section and/or a recovery section. The energy saving and emission reduction system includes an energy comprehensive utilization maximizing energy saving module. The energy comprehensive utilization maximizing energy saving module comprehensively evaluates the chemical separation and purification process, and acquires a lowest energy consumption value according to initial and final material flow parameters. Then energy integration optimization and energy saving technical modification are performed on the synthesis section and/or distillation section and/or recovery section according to the lowest energy consumption value.Type: GrantFiled: February 23, 2023Date of Patent: February 25, 2025Inventor: Qunsheng Li
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Patent number: 12203908Abstract: A chromatography method, a method of determining the concentration of at least one compound in a chromatography method and a method of obtaining at least one chromatography method parameter are provided. The methods can include selecting at least one compound, at least one stationary phase, at least one mobile phase, and at least one chromatography device having a chromatography bed comprising the at least one stationary phase and the at least one mobile phase.Type: GrantFiled: May 8, 2020Date of Patent: January 21, 2025Assignee: Sartorius Stedim Biotech GmbHInventors: Jan Schwellenbach, Volkmar Thom, Dominik Stein
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Patent number: 12076670Abstract: The present invention relates to a method for continuously operating a distillation column, which is designed to separate a mixture S, which contains essentially a substance A and a substance B, which boils significantly higher than substance A. In the method according to the invention, the reflux ratio is changed according to the feed flow and, at the same time, the energy input by means of the heat-transfer medium is changed proactively (so-called feed-forward control) by accounting for the feed flow by means of feed-forward control. At the same time, the bottom temperature is observed and the control structure is changed if the bottom temperature falls too far when the heat-transfer medium is reduced by means of the feed flow.Type: GrantFiled: December 9, 2020Date of Patent: September 3, 2024Assignees: Covestro Deutschland AG, Covestro Intellectual Property GmbH & Co. KGInventors: Klaus Mertens, Sabine Pegel
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Patent number: 11707698Abstract: Processes and systems for controlling operation of a commercial refinery distillation column and/or splitter operable to separate hydrocarbons. An automated process controller (APC) receives signal from at least one analyzer that provides information about the concentration of at least a first chemical in a first fraction and a second chemical in a second fraction obtained from the distillation column. The APC comprises programming in the form of an algorithm that calculates real-time monetary values for the first chemical and the second chemical and alters the operation of the distillation column to change either the percentage of the first chemical in the second fraction or the percentage of the second chemical in the first fraction, thereby maximizing overall operational profit for the distillation column.Type: GrantFiled: November 30, 2022Date of Patent: July 25, 2023Assignee: Phillips 66 CompanyInventor: Yangdong Pan
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Patent number: 10161676Abstract: The process and the apparatus serve for the low-temperature fractionation of air in a distillation column system, which has at least one separating column. Feed air is compressed in a main air compressor. Compressed feed air is cooled in a main heat exchanger. Cooled feed air is introduced into the distillation column system. At least one product stream is drawn off from the distillation column system, heated in the main heat exchanger and drawn off as a gaseous end product. At least one process parameter is set by a basic controller. The control of the process parameter is set by a combination of an ALC control and an MPC controller. This involves the ALC control outputting a first target value to the MPC controller.Type: GrantFiled: April 15, 2015Date of Patent: December 25, 2018Assignee: Linde AktiengesellschaftInventors: Gerhard Zapp, Michael Siebel
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Patent number: 9037298Abstract: The present invention provides novel techniques for controlling the output of a distillation sub-process by controlling, using model predictive control, the temperature of steam used in the distillation sub-process, wherein the steam is generated in a milling and cooking sub-process. In particular, the present techniques are presented in the context of biofuel production, wherein the temperature of a cook tube generated in a milling and cooking sub-process may be controlled to optimize the energy utilization in the ethanol/water separation of a side stripper column, which uses the cook flash steam as an energy source. However, the present techniques may also be applied to other suitable applications, such as liquor processing, where steam generated in a different process may be used in a distillation process to help separate water from the liquor.Type: GrantFiled: September 30, 2008Date of Patent: May 19, 2015Assignee: Rockwell Automation Technologies, Inc.Inventors: Maina A. Macharia, Michael E. Tay
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Patent number: 9026252Abstract: The invention concerns an improvement in the monitoring and control systems used in a liquid-liquid extraction unit or an extractive distillation unit for the separation of aromatic hydrocarbons from non-aromatic hydrocarbons.Type: GrantFiled: November 21, 2012Date of Patent: May 5, 2015Assignee: ExxonMobil Chemical Patents Inc.Inventors: Robert Alan Schaefer, John J. Monson
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Patent number: 9015003Abstract: An Anti-Terrorism water quality monitoring system for continuously monitoring a potable water treatment system and related potable water distribution network that provides potable water to a municipality, city, housing development or other potable water consumer. The system includes the collection of data from the water distribution system and from the water treatment facility and from advanced separation processes which are integrated into analytical instruments. The data collected are stored in a remote database on a remote server computer or bank of computers and accessible by Homeland Security or its designated agency. Preferred parameters of monitoring include the turbidity and disinfectant such as chlorine, hypochlorous acid, sodium hypochlorite, calcium hypochlorite, ozone, chlorine dioxide, chloramines, hydrogen peroxide, peracetic acid.Type: GrantFiled: October 25, 2013Date of Patent: April 21, 2015Assignee: Hach CompanyInventor: Thomas D. Wolfe
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Patent number: 9014858Abstract: The present invention provides novel techniques for controlling the balance between energy usage and biofuels dehydration between a distillation process unit and molecular sieves with model predictive control technology. In particular, the present techniques are presented in the context of biofuel production, wherein control of the balance between energy usage and water removal in biofuel production may be optimized. However, the present techniques may also be applied to any other suitable applications, such as liquor processing, where energy may be used to remove water from the liquor.Type: GrantFiled: September 30, 2008Date of Patent: April 21, 2015Assignee: Rockwell Automation Technologies, Inc.Inventors: Maina A. Macharia, Zhaozhi Wei, Donald Melvin Maxwell
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Patent number: 8954196Abstract: Embodiments of the present invention generally relate to temperature control of a reactor using probability distribution of temperature measurements. In one embodiment, a method of controlling a temperature of a chemical reaction includes injecting a reactant stream into a reactor and through a catalyst bed of the reactor. The reactant stream includes a hydrocarbon and oxygen. Injection of the reactant stream into the catalyst bed causes an exothermic chemical reaction. The method further includes circulating a coolant through the reactor, thereby removing heat from the catalyst bed. The method further includes measuring temperature at a plurality of locations in the catalyst bed. The method further includes calculating a fraction of the catalyst bed greater than a predetermined maximum temperature limit using a probability distribution generated using the temperature measurements.Type: GrantFiled: September 18, 2009Date of Patent: February 10, 2015Assignee: Huntsman Petrochemical LLCInventor: Michael J. Gross
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Patent number: 8818562Abstract: A method of modeling a fermentation process comprises providing a first principles model of a fermentation process; determining the concentration of at least one substrate in a fermentation composition at a first time; and predicting the concentration of at least one component of the fermentation composition at a second time using the first principles model, wherein the second time is after the first time.Type: GrantFiled: June 4, 2011Date of Patent: August 26, 2014Assignee: Invensys Systems, Inc.Inventors: David Bluck, Prashant R. Karbhari, Wen-Jing Lin
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Patent number: 8801904Abstract: A drag chain carbonizer is provided with a system and methods for anaerobic thermal transformation processing to convert waste into various solid carbonized products and varied further co-products. The drag-chain carbonizer includes an adjustable bed depth mechanism, a heating mechanism, a pressure management mechanism, and a chain tensioning mechanism containing at least one position sensor for communication of an actuator position to at least one programmable logic controller (PLC). Carbonaceous waste is transformed into useful co-products that can be re-introduced into the stream of commerce at various economically advantageous points. Depending upon the input materials and the parameters selected to process the waste, including real time economic and other market parameters, the system adjusts co-products output to reflect changing market conditions.Type: GrantFiled: June 26, 2013Date of Patent: August 12, 2014Assignee: Aemerge, LLCInventors: Landon C.G. Miller, Scott Behrens, Brian Rayles
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Patent number: 8577623Abstract: An Anti-Terrorism water quality monitoring system for continuously monitoring a potable water treatment system and related potable water distribution network that provides potable water to a municipality, city, housing development or other potable water consumer. The system includes the collection of data from the water distribution system and from the water treatment facility and from advanced separation processes which are integrated into analytical instruments. The data collected are stored in a remote database on a remote server computer or bank of computers and accessible by Homeland Security or its designated agency. Preferred parameters of monitoring include the turbidity and disinfectant such as chlorine, hypochlorous acid, sodium hypochlorite, calcium hypochloritc, ozone, chlorine dioxide, chloramines, hydrogen peroxide, peracetic acid.Type: GrantFiled: September 14, 2012Date of Patent: November 5, 2013Assignee: Hach CompanyInventor: Thomas D. Wolfe
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Patent number: 8557087Abstract: The present invention relates to a process for the separation by distillation of a hydrocarbon-containing feed stream containing olefin monomer, co-monomer and hydrocarbon diluent. The present invention also relates to a distillation system including a distillation column for carrying out the process according to the invention.Type: GrantFiled: July 15, 2008Date of Patent: October 15, 2013Assignee: Total Petrochemicals Research FeluyInventor: Denis Mignon
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Patent number: 8504305Abstract: An Anti-Terrorism water quality monitoring system for continuously monitoring a potable water treatment system and related potable water distribution network that provides potable water to a municipality, city, housing development or other potable water consumer. The system includes the collection of data from the water distribution system and from the water treatment facility and from advanced separation processes which are integrated into analytical instruments. The data collected are stored in a remote database on a remote server computer or bank of computers and accessible by Homeland Security or its designated agency. Preferred parameters of monitoring include the turbidity and disinfectant such as chlorine, hypochlorous acid, sodium hypochlorite, calcium hypochlorite, ozone, chlorine dioxide, chloramines, hydrogen peroxide, peracetic acid.Type: GrantFiled: February 23, 2010Date of Patent: August 6, 2013Assignee: Hach CompanyInventor: Thomas D. Wolfe
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Publication number: 20130173061Abstract: The invention concerns an improvement in the monitoring and control systems used in a liquid-liquid extraction unit or an extractive distillation unit for the separation of aromatic hydrocarbons from non-aromatic hydrocarbons.Type: ApplicationFiled: November 21, 2012Publication date: July 4, 2013Applicant: ExxonMobile Chemical Patents Inc.Inventors: Robert Alan Schaefer, John J. Monson
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Patent number: 8428753Abstract: The disclosure relates to a system and a method for planning the operation of, monitoring processes in, simulating, and/or optimizing a technical installation comprising several units that can be combined with each other. Said system comprises at least one process planning module, at least one process simulation module, and at least one process optimization module. Components for modeling, simulating, and optimizing the technical installation are stored in said modules. The interrelated modules cooperate with a data management layer via at least one interface, said data management layer making available actual measured and/or historical process data for determining parameters and/or operational data for the modules in order to plan operations as well as simulate and optimize processes. The parameters and/or operational data determined in the modules can be fed to the data management layer for further processing by taking into account the stored components.Type: GrantFiled: January 20, 2006Date of Patent: April 23, 2013Assignee: ABB Technology AGInventors: Markus Gauder, Rolf Schmitt, Stefan Lauxtermann
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Patent number: 8364316Abstract: A method of modeling phase characteristics of thermodynamic systems utilizing pseudo-properties strategy and a reduced number of variables is disclosed herein. The method describes a means of determining the probability of phase splitting of mixtures of materials at a given temperature, pressure, and composition by characterizing the functions that describe the system via pseudo-properties, and also by describing the system in n?1 or fewer variables, where n represents the number of components in the system of interest. In an embodiment, a multi-component system is characterized in one variable, thereby providing simplified thermodynamic models in a time-efficient manner. In addition, the information generated by this reduced-variable calculation can further be used as a starting point for calculations of equations of state.Type: GrantFiled: September 15, 2009Date of Patent: January 29, 2013Assignee: Invensys Systems, Inc.Inventors: Gang Xu, David Bluck
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Publication number: 20120239405Abstract: A system and method for generating audio content. Content is automatically retrieved from a website. The content is converted to audio files. The audio files are associated with a hierarchy. The hierarchy is determined from the website. One or more audio files are communicated to an electronic device utilized by a user in response to a request from the user.Type: ApplicationFiled: May 30, 2012Publication date: September 20, 2012Inventors: William C. O'Conor, Nathan T. Bradley
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Patent number: 8216429Abstract: A method comprises sensing a differential pressure signal, filtering the differential pressure signal, generating a flooding indicator as a function of the filtered differential pressure signal, and indicating the onset of flooding. The differential pressure signal is sensed along a distillation flow path. The filtered differential pressure signal is responsive to a phase inversion along the flow path, and the flooding indicator is responsive to an onset of a flooding condition, based on the phase inversion. The onset of the flooding condition is indicated based on a change in the flooding indicator.Type: GrantFiled: June 17, 2009Date of Patent: July 10, 2012Assignee: Rosemount Inc.Inventors: Roger Kenneth Pihlaja, John Philip Miller
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Patent number: 8078323Abstract: Method for controlling the process of separating mixtures containing several substances having close boiling points and with a known concentration, in a distillation column, wherein the concentration of at least one component is measured at a midpoint of the column, and said measurement, together with other parameters, is used to control the process.Type: GrantFiled: September 6, 2002Date of Patent: December 13, 2011Assignee: Bayer AGInventors: Frank Meeuwssen, Franz Ferdinand Rhiel, Torsten Hauschild, Martin Gerlach
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Publication number: 20110224829Abstract: A method for protecting a thermal distillation column system from liquid over fill wherein instrument calibration and level signal aberrations are dynamically corrected, instrument measurement errors and measurement drifts over time are accounted for, and a decay factor component is employed to obviate the need for maintenance or periodic instrument.Type: ApplicationFiled: March 12, 2010Publication date: September 15, 2011Inventor: Prabhu Murugan
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Patent number: 7844365Abstract: A field-mounted process device with multiple isolated connections includes a connection that can be an input or an output. The given input or output can couple to multiple sensors or actuators, respectively. The process device can be wholly powered through its communication I/O port. The process device includes a controller adapted to measure one or more characteristics of sensors coupled to an input connection and to control actuators coupled to an output connection. The controller can be further adapted to execute a user generated control algorithm relating process input information with process output commands.Type: GrantFiled: July 19, 2005Date of Patent: November 30, 2010Assignee: Rosemount Inc.Inventors: John P. Brewer, Eric D. Rotvold, Robert J. Karschnia, Marcos Peluso
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Patent number: 7813839Abstract: A production process such as an isocyanate production process, conducted with a production facility having (a) at least two incoming streams, b) at least one exit stream and c) at least one inner recycling stream is controlled by adjusting at least one incoming stream amount by means of regulating controls to control the exit stream concentration and/or amount.Type: GrantFiled: January 22, 2007Date of Patent: October 12, 2010Assignee: Bayer MaterialScience AGInventors: Jochen Mahrenholtz, Stefan Wershofen, Gerhard Then, Sabine Pegel, Jun Wang, Erman Sevinc, Richard H. Guhl
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Patent number: 7698073Abstract: An Anti-Terrorism water quality monitoring system for continuously monitoring a potable water treatment system and related potable water distribution network that provides potable water to a municipality, city, housing development or other potable water consumer. The system includes the collection of data from the water distribution system and from the water treatment facility and from advanced separation processes which are integrated into analytical instruments. The data collected are stored in a remote database on a remote server computer or bank of computers and accessible by Homeland Security or its designated agency. Preferred parameters of monitoring include the turbidity and disinfectant such as chlorine, hypochlorous acid, sodium hypochlorite, calcium hypochlorite, ozone, chlorine dioxide, chloramines, hydrogen peroxide, peracetic acid.Type: GrantFiled: November 17, 2008Date of Patent: April 13, 2010Assignee: Hach CompanyInventor: Thomas D. Wolfe
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Publication number: 20100036529Abstract: A process control system and a method for detecting abnormal events in a process, the process comprising one or more independent and one or more dependent variables a means for measuring values of the dependent and independent variables, and a multivariable predictive control means capable of calculating predicted values of the one or more dependent variables from the measured values of the one or more independent variables using a predictive model, which method comprises performing principal components analysis on the residual values of the one or more dependent variables, the residual values being calculated from the difference between the predicted and measured dependent variable values.Type: ApplicationFiled: October 16, 2007Publication date: February 11, 2010Inventors: Keith Landells, Zaid Rawi
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Publication number: 20090314623Abstract: A method comprises sensing a differential pressure signal, filtering the differential pressure signal, generating a flooding indicator as a function of the filtered differential pressure signal, and indicating the onset of flooding. The differential pressure signal is sensed along a distillation flow path. The filtered differential pressure signal is responsive to a phase inversion along the flow path, and the flooding indicator is responsive to an onset of a flooding condition, based on the phase inversion. The onset of the flooding condition is indicated based on a change in the flooding indicator.Type: ApplicationFiled: June 17, 2009Publication date: December 24, 2009Applicant: ROSEMOUNT INC.Inventors: Roger Kenneth Pihlaja, John Philip Miller
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Patent number: 7454295Abstract: An Anti-Terrorism water quality monitoring system for continuously monitoring a potable water treatment system and related potable water distribution network that provides potable water to a municipality, city, housing development or other potable water consumer. The system includes the collection of data from the water distribution system and from the water treatment facility and from advanced separation processes which are integrated into analytical instruments. The data collected are stored in a remote database on a remote server computer or bank of computers and accessible by Homeland Security or its designated agency. Preferred parameters of monitoring include the turbidity and disinfectant such as chlorine, hypochlorous acid, sodium hypochlorite, calcium hypochlorite, ozone, chlorine dioxide, chloramines, hydrogen peroxide, peracetic acid.Type: GrantFiled: March 19, 2003Date of Patent: November 18, 2008Assignee: The Watereye CorporationInventor: Thomas D. Wolfe
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Patent number: 7448230Abstract: Method for controlling the production of one or more liquid products produced by one or more plants, that can be an air separation plant, that has a liquid storage capacity and that consumes electrical power. Linguistic values related to current liquid inventory, a rate of change of liquid inventory, projected demand requirements and projected unit power costs are inputted into a expert system controller having one or more rule sets that apply such input linguistic values to produce output linguistic values that are converted back to an output numerical value of a forecasted differential production rate to be applied during a forecast period. The output numerical value of differential production is added to the current production rate of the plants to obtain a new production rate which is applied during the forecast period.Type: GrantFiled: April 13, 2007Date of Patent: November 11, 2008Assignee: Praxair Technology, Inc.Inventors: William Randy Esposito, Lawrence Megan
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Patent number: 7249470Abstract: Method for controlling the production of one or more liquid products produced by one or more plants, that can be an air separation plant, that has a liquid storage capacity and that consumes electrical power. Linguistic values related to current liquid inventory, a rate of change of liquid inventory, projected demand requirements and projected unit power costs are inputted into a expert system controller having one or more rule sets that apply such input linguistic values to produce output linguistic values that are converted back to an output numerical value of a forecasted differential production rate to be applied during a forecast period. The output numerical value of differential production is added to the current production rate of the plants to obtain a new production rate which is applied during the forecast period.Type: GrantFiled: April 7, 2005Date of Patent: July 31, 2007Assignee: Praxair Technology, Inc.Inventors: William Randy Esposito, Lawrence Megan
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Patent number: 7107194Abstract: A new way of applying the compartmental approach to the simulation of multi-stage separation processes in the process industry leads to more robust simulation models and higher success rate. The new approach makes use of steady-state component balances, constant vapor-liquid equilibrium ratios, and initialization models. Guidelines are provided for creating a computer executable regular model of the multi-stage separation process. Guidelines are also provided for creating a computer executable model that solves the problem of initialization failure of the regular model for the process.Type: GrantFiled: October 27, 2003Date of Patent: September 12, 2006Assignee: ABB Inc.Inventor: Wai Biu Cheng
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Patent number: 7082348Abstract: A computer based method for controlling an industrial process that includes at least two unit processes, including the steps of directly controlling the process by a control model including one or more algorithms, and automatic diagnosis of the validity of the process data retrieved from the process for the purpose of preventing irrelevant process data from being used as an input in the control model.Type: GrantFiled: October 4, 2000Date of Patent: July 25, 2006Assignee: ABB ABInventors: Erik Dahlquist, Thomas Liljenberg, Stefan Backa
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Patent number: 6954701Abstract: A method of monitoring the daily operating performance parameters for water treatment processes through the collection of localized data. The data is manipulated to generate preconfigured performance, maintenance, and quality assurance reports and further provide automatic submission of data as required for regulatory review of certain water treatment systems such as potable water treatment. The data is collected from sensors located at an equipment site and transferred to a remote computer located by use of the Internet, further all data received and used for generation of reports is also accessible by Internet connection and be delivered directly to the regulatory agency without additional process.Type: GrantFiled: October 27, 2003Date of Patent: October 11, 2005Assignee: Watereye, Inc.Inventor: Thomas D. Wolfe
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Publication number: 20040249512Abstract: Method for controlling the process of separating mixtures containing several substances having close boiling points and with a known concentration, in a distillation column, wherein the concentration of at least one component is measured at a midpoint of the column, and said measurement, together with other parameters, is used to control the process.Type: ApplicationFiled: March 18, 2004Publication date: December 9, 2004Inventors: Frank Meeuwssen, Franz Ferdinand Rhiel, Torsten Hauschild, Martin Gerlach
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Patent number: 6763324Abstract: An integrated engineering analysis system that determines at least one final output value in response to at least one initial input value. A first subprocesses provides at least one output value in response to the initial input value. A plurality of subprocesses provide a plurality of output values in response to the output values of the first subprocess. The plurality of output values and the output value of the first subprocess are inputted into at least one of the plurality of subprocesses. A command code executes each of the plurality of subprocesses in response to the output values and determines which one of the plurality of subprocesses to run and a final subprocess provides a final output. The final output is the result of a plurality of calculations executed by the plurality of subprocesses and the command code compares the final output with the initial input.Type: GrantFiled: March 24, 2000Date of Patent: July 13, 2004Assignee: General Electric CompanyInventors: Robert N. Pittman, Scott J. Dennison, Kenneth E. Seitzer, John D. Bibler, Stephen P. Schrantz, John C. Blanton, Mir M. Ali, Robert J. Maffeo, James C. Dudley, David M. Johnson
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Patent number: 6758945Abstract: A method and apparatus for quenching the coke drum vapor line from a coke drum to the main fractionator in a coker unit whereby the volume of quench liquid prevents the drum vapor line from plugging with carbon-based deposits. A differential pressure control technique is utilized to quench the drum vapors being delivered to the fractionator as opposed to a temperature, delta temperature, uninsulated vapor line, or fixed flow rate control as used in the prior art. Vapor line quench control by differential pressure prevents over-quenching of the vapor line during a coke drum switch, unit startup, or slowdown as well as under-quenching during drum warm-ups. It improves the fractionator recovery time from a drum switch and overall liquid product yield during the drum cycle which can be produced by over-quenching. It also prevents the vapor line from drying out at anytime, an under-quenched condition, as long as the quench oil quality and conditions do not vary significantly.Type: GrantFiled: September 14, 2000Date of Patent: July 6, 2004Assignee: Shell Oil CompanyInventor: Stephen Michel Haik
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Patent number: 6751527Abstract: A method comprising: a) selecting a loading variable from operating variables, the loading variable being directly related to total energy input into the system and equipment constraint of the system; b) selecting a performance specification variable which is required to be kept within a defined target at all times during operation of the system; and c) pairing the performance specification variable with a manipulated variable having a mass/balance relationship to the performance specification which is not the loading variable and; d) controlling the manipulated variable to maintain the performance specification variable with the defined target.Type: GrantFiled: February 9, 2001Date of Patent: June 15, 2004Assignee: Stone & Webster Process Technology, Inc.Inventor: Charles Herzog
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Patent number: 6647745Abstract: A method for controlling the operation of a plant such as a cryogenic rectification plant wherein process parameters are quantitatively determined and then are qualitatively categorized to establish by reference to a rule set the general adjustment required for a plant element prior to determining the numerical adjustment for that element.Type: GrantFiled: December 5, 2002Date of Patent: November 18, 2003Assignee: Praxair Technology, Inc.Inventor: William Paul Belanger
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Patent number: 6640161Abstract: A method of operation of a steam stripped fractionation column by using a computer to process the relevant operating parameters of the column to determine the undesirable approach to a possible flooding condition.Type: GrantFiled: February 2, 2001Date of Patent: October 28, 2003Assignee: UOP LLCInventor: Richard K. Hoehn
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Patent number: 6581443Abstract: “Process for determining the distillation characteristics of liquid petroleum products by express mini-distillation and apparatus permitting implementation of this process” Apparatus characterized by the fact that it includes: a distillation flask dimensioned to receive 5 to 15 ml of a sample to be analysed, organs for heating the distillation flask, with an adjustable constant heating intensity, two inertialess temperature sensors permitting continuous measurement on the one hand of the true value of the temperature of a sample in the course of distillation in the liquid phase and the true value of the temperature of this sample in the vapor phase, a device for continuous measurement of the pressure in the vapor phase of a sample in the course of distillation which includes a pressure detector and a capillary tube, and organs for reception and exploitation of signals transmitted by the temperature sensors and the pressure detector.Type: GrantFiled: October 17, 2001Date of Patent: June 24, 2003Assignee: Instrumentation Scientifique de Laboratoire I.S.L. SAInventors: Guenrikh Abaev, Raissa Andreeva, Viachaslau Urvantsau, Aliaksandr Spirydonau, Victor Kalesnik
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Patent number: 6560543Abstract: A method of monitoring the daily operating performance parameters for water treatment processes through the collection of localized data. The data is manipulated to generate preconfigured performance, maintenance, and quality assurance reports and further provide automatic submission of data as required for regulatory review of certain water treatment systems such as potable water treatment. The data is collected from sensors located at an equipment site and transferred to a remote computer located by use of the Internet, further all data received and used for generation of reports is also accessible by Internet connection and be delivered directly to the regulatory agency without additional process.Type: GrantFiled: October 26, 2001Date of Patent: May 6, 2003Assignee: Perlorica, Inc.Inventors: Thomas D. Wolfe, James Douglas Elliott, III
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Patent number: 6332110Abstract: A method of monitoring advanced separation and/or ion exchange processes through the collection of localized data. The data is manipulated to generate preconfigured performance, maintenance, quality assurance, quality control, regulatory, cost reports, performance graphing and historical trends. The data is collected from sensors located at an equipment site and transferred to a remote located by use of the Internet, further all data received and used for generation of reports is also accessible by Internet connection.Type: GrantFiled: December 17, 1998Date of Patent: December 18, 2001Assignee: PerLorica, Inc.Inventor: Thomas D. Wolfe
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Patent number: 6317654Abstract: A model to predict the quality of a lubricant base stock for use in a plurality of products having a plurality of viscosities. The compositional model is based on a quantitative analysis of key compositional parameters and performance criteria for the plurality of products representing the plurality of viscosities. The compositional model provides a method for making a lubricant base stock to be used in manufacturing a lubricant for a particular application from a refinery stream wherein the lubricant base stock and the refinery stream are characterizable according to a plurality of compositional components common to the base stock and to the refinery stream. This method begins with determining the acceptable region and adjusting for viscosity variations.Type: GrantFiled: January 29, 1999Date of Patent: November 13, 2001Inventors: James William Gleeson, William Francis Heaney, Eugenio Sanchez, Viswanathan Visweswaran
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Control of lubricant production by a method to predict a base stock's ultimate lubricant performance
Patent number: 6295485Abstract: A model to predict the quality of a lubricant base stock for use in a plurality of products having a plurality of viscosities. The compositional model is based on a quantitative analysis of key compositional parameters and performance criteria for the plurality of products representing the plurality of viscosities. The compositional model predicts whether the composition of a new lubricant base stock is similar or dissimilar to known lubricant base stock compositions that have previously passed or failed performance tests. New base stock compositions, then, are evaluated in light of base stocks that have demonstrated acceptable performance in a plurality of products. The compositional model also predicts whether a combination of refinery streams can be blended for use in manufacturing a lubricant base stock.Type: GrantFiled: January 29, 1999Date of Patent: September 25, 2001Assignee: Mobil Oil CorporationInventors: James William Gleeson, William Francis Heaney, Eugenio Sanchez, Viswanathan Visweswaran -
Patent number: 6212436Abstract: Object services like methods or properties are provided to or inherited by objects dynamically during run-time. In one method of providing dynamic inheritance, hierarchical relationships are defined between multiple objects such that each object references or is referenced by another object. A call is made for a particular service (e.g., a method or property) at a selected object. The service is provided directly from the object whenever the service is available therefrom. Whenever the selected service is unavailable at the selected object, the call is passed to a hierarchically superior object. Another aspect of dynamic inheritance is that an object, such as the root object, may include one or more methods for adding or otherwise changing the methods or properties available from that object.Type: GrantFiled: February 24, 1998Date of Patent: April 3, 2001Assignee: Microsoft CorporationInventors: Kirk J. Marple, Manny Vellon, Steven M. Drucker
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Patent number: 6088630Abstract: Automatic control systems, and corresponding processes, for controlling either an anode adjuster in a chlor/alkali cell or at least one average middle temperature of a distillation column wherein the combination of feedback control from at least one real unit operation variable and an embedded real-time dynamic simulation of that variable are used.Type: GrantFiled: November 9, 1998Date of Patent: July 11, 2000Assignee: Olin CorporationInventor: David W. Cawlfield
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Patent number: 5864805Abstract: A continuous speech recognition system has the ability to correct errors in strings of words. The error correction method stores data in the system's internal state to update probability tables used in developing alternative lists for substitution in misrecognized text.Type: GrantFiled: December 20, 1996Date of Patent: January 26, 1999Assignee: International Business Machines CorporationInventors: Chengjun Julian Chen, Liam David Comerford, Catalina Maria Danis, Satya Dharanipragada, Michael Daniel Monkowski, Peder Andreas Olsen, Michael Alan Picheny