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ARTIFICIAL LIFT SimuliftTM Artificial Lift Sizing · PDF fileTotal Fluid 3714.9 bbl/D 3422.2...

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Halliburton’s comprehensive design software application is an industry leading electrical submersible pumps (ESP) modeling platform that enables application engineers to design a complete ESP system accurately, easily, and quickly. The design software guides the user through a step-by- step process, helping to ensure the output will be a robust and efficient ESP system. Increasingly complex ESP applications and installations require the use of modeling packages that can simulate the entire well over a broad range of conditions. Highly dynamic wells that have rapidly changing conditions require the use of a sophisticated modeling tool to help ensure the ESP will be able to continue to operate as conditions evolve. SimuLift TM software application is the tool that will provide an application engineer with full control over the input data and is able to create each case that is tailored specifically to the well, both for today and for the future. Features • Simple installation process • Temperature dependent rating • Independent well input screens and equipment selection screens • Wellbore clearance confirmation • System checks with alert flags to inform the operator of potential issues • Dynamic simulation of well operation • Gas handling solutions including taper pump design • Component-by-component modeling for the entire string • Extensive graphing capability • Link to a quoting module A key feature of SimuLift TM software application is the ability to match the performance of the well conditions exactly to the operating ESP. This enables full optimization of the production system for every well. This is also a very useful tool for forensic analysis where the operator has the ability to model conditions that lead to failures of the ESP systems. Temperature dependent ratings allow the user to provide and match the equipment exactly to the downhole load. SimuLift TM software application guides the application engineer through the ESP system design process including: Gathering relevant well data from the operator From the well input screen - Enter well parameters - Enter pressure volume temperature data - Enter inflow performance data - Computing output parameters From the equipment selection screen - Choose the desired equipment Generating and printing plots and reports Send output directly to the quote module Pump Conditions Intake Discharge Flow Pattern Transition Intermittent Pressure 889 psi 3450 psi Liquid Density 60.50 lbm/ft 3 60.70 lbm/ft 3 Gas Density 3.40 lbm/ft 3 14.40 lbm/ft 3 Mixture Density 55.60 lbm/ft 3 60.50 lbm/ft 3 Oil Flow Rate 556.0 bbl/D 608.0 bbl/D Gas Flow Rate 320.1 bbl/D 0.0 bbl/D Water Flow Rate 2838.8 bbl/D 2814.2 bbl/D Total Fluid 3714.9 bbl/D 3422.2 bbl/D Gas Volume Fraction 8.6% 0.0% Solution Gas Oil Ratio 176.40 SCF/STB 392.00 SCF/STB Solution Gas Water Ratio 7.70 SCF/STB 17.90 SCF/STB Oil Formation Volume Factor 1.14 1.25 Gas Formation Volume Factor 0.02 NA Water Formation Volume Factor 1.03 1.02 Oil Viscosity 1.99 2.04 cP Nameplate TDR Horsepower 330 305 Voltage 3895 3720 Amperage 52 46 % Rerate NA 92.3% Motor Rating SimuLift TM Artificial Lift Sizing and Modeling Software Application ARTIFICIAL LIFT SimuLift™ Software Application
Transcript
Page 1: ARTIFICIAL LIFT SimuliftTM Artificial Lift Sizing · PDF fileTotal Fluid 3714.9 bbl/D 3422.2 bbl/D ... adapt to the dynamic conditions of the oil field. Halliburton’s Artificial

SimuliftTM Artificial Lift Sizing and Modeling Software

Halliburton’s comprehensive design software application is an industry leading electrical submersible pumps (ESP) modeling platform that enables application engineers to design a complete ESP system accurately, easily, and quickly. The design software guides the user through a step-by-step process, helping to ensure the output will be a robust and efficient ESP system.

Increasingly complex ESP applications and installations require the use of modeling packages that can simulate the entire well over a broad range of conditions. Highly dynamic wells that have rapidly changing conditions require the use of a sophisticated modeling tool to help ensure the ESP will be able to continue to operate as conditions evolve. SimuLiftTM software application is the tool that will provide an application engineer with full control over the input data and is able to create each case that is tailored specifically to the well, both for today and for the future.

Features

• Simple installation process

• Temperature dependent rating

• Independent well input screens and equipment selection screens

• Wellbore clearance confirmation

• System checks with alert flags to inform the operator of potential issues

• Dynamic simulation of well operation

• Gas handling solutions including taper pump design

• Component-by-component modeling for the entire string

• Extensive graphing capability

• Link to a quoting module

A key feature of SimuLiftTM software application is the ability to match the performance of the well conditions exactly to the operating ESP. This enables full optimization of the production system for every well. This is also a very useful tool for forensic analysis where the operator has the ability to model conditions that lead to failures of the ESP systems.

PRODUCT BULLETIN

Temperature dependent ratings allow the user to provide and match the equipment exactly to the downhole load. SimuLiftTM software application guides the application engineer through the ESP system design process including:

• Gathering relevant well data from the operator

• From the well input screen

- Enter well parameters

- Enter pressure volume temperature data

- Enter inflow performance data

- Computing output parameters

• From the equipment selection screen

- Choose the desired equipment

• Generating and printing plots and reports

• Send output directly to the quote module

Pump Conditions

Intake DischargeFlow Pattern Transition IntermittentPressure 889 psi 3450 psiLiquid Density 60.50 lbm/ft3 60.70 lbm/ft3

Gas Density 3.40 lbm/ft3 14.40 lbm/ft3

Mixture Density 55.60 lbm/ft3 60.50 lbm/ft3

Oil Flow Rate 556.0 bbl/D 608.0 bbl/DGas Flow Rate 320.1 bbl/D 0.0 bbl/DWater Flow Rate 2838.8 bbl/D 2814.2 bbl/DTotal Fluid 3714.9 bbl/D 3422.2 bbl/DGas Volume Fraction 8.6% 0.0%Solution Gas Oil Ratio 176.40 SCF/STB 392.00 SCF/STBSolution Gas Water Ratio 7.70 SCF/STB 17.90 SCF/STBOil Formation Volume Factor 1.14 1.25 Gas Formation Volume Factor 0.02 NAWater Formation Volume Factor 1.03 1.02 Oil Viscosity 1.99 2.04 cP

Nameplate TDRHorsepower 330 305Voltage 3895 3720Amperage 52 46% Rerate NA 92.3%

Motor Rating

SimuLiftTM Artificial Lift Sizing and Modeling Software Application

ARTIFICIAL LIFT

SimuLift™ Software Application

Page 2: ARTIFICIAL LIFT SimuliftTM Artificial Lift Sizing · PDF fileTotal Fluid 3714.9 bbl/D 3422.2 bbl/D ... adapt to the dynamic conditions of the oil field. Halliburton’s Artificial

ARTIFICIAL LIFT

Pressure Profilewell test 106 - S H 28 S M

Single Speed Pump CurveMain Pump: 289 Stage HAL 400-6000

well test 106 - S H 28 S MHead BHP Efficiency System Operating Point Intake Discharge

Pressure Profile Image

Single Speed Pump Curve

Page 3: ARTIFICIAL LIFT SimuliftTM Artificial Lift Sizing · PDF fileTotal Fluid 3714.9 bbl/D 3422.2 bbl/D ... adapt to the dynamic conditions of the oil field. Halliburton’s Artificial

ARTIFICIAL LIFT

Delivery

All of the ESP pumps are fully integrated into Halliburton’s industry-leading, customer-oriented global service network. Beginning at the manufacturing plant in China, which has provided high-quality ESP systems for operators across the globe for over a decade, and then to the Halliburton Field Service Technician who supervises the installation and startup of the pumps on site, Halliburton’s quality-management system solves challenges at any stage of the process for operators in mature fields, unconventional resources, and deepwater. Control of this work flow enables continuous improvement in the hydraulic designs so that they fit customer-specific requirements, improve operating efficiencies, and adapt to the dynamic conditions of the oil field.

Halliburton’s Artificial Lift offerings help operators increase recoverable hydrocarbons by selecting the optimal lift method over the life of the well cycle to enhance well drawdown and provide reliable on-stream times that will maximize revenue and decrease costly well interventions, leading directly to increased customer profitability. Another important value to the customer is the ability of our Artificial Lift representative to collaborate across other Halliburton product lines so that the recommended solution is optimal not only from the pump selection point of view but also as it relates to delivering value to the reservoir.

Halliburton’s foundry provides high-quality ESP stages and assembled/tested pumps for a variety of customers and applications all across the world.

Halliburton’s process entails the latest technology in hydraulics, metallurgy, machining, and assembly, and the quality is assured through the rigorous quality-management system.

Halliburton technicians accompany the ESP systems to the field and supervise the installation and startup to maximize success.

Page 4: ARTIFICIAL LIFT SimuliftTM Artificial Lift Sizing · PDF fileTotal Fluid 3714.9 bbl/D 3422.2 bbl/D ... adapt to the dynamic conditions of the oil field. Halliburton’s Artificial

www.halliburton.com

ARTIFICIAL LIFT

www.halliburton.com

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For more information, contact your local Halliburton representative.

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