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- Pipesim installation requirements pc 64 Bit#
- Pipesim installation requirements pc manual#
- Pipesim installation requirements pc software#
- Pipesim installation requirements pc license#
25 Adding Casing and Tubing to a Detailed Wellbore Schematic. 25 Adding Casing and Tubing to a Simple Wellbore Schematic. 8 Importing or Exporting a Custom Unit System.
Pipesim installation requirements pc manual#
Schlumberger reserves the right to revise the information in this manual at any time without notice. Schlumberger makes no warranties, express, implied, or statutory, with respect to the product described herein and disclaims without limitation any warranties of merchantability or fitness for a particular purpose.
Pipesim installation requirements pc license#
Use of this product is governed by the License Agreement. No part of this manual may be reproduced, stored in a retrieval system, or translated in any form or by any means, electronic or mechanical, including photocopying and recording, without the prior written permission of Schlumberger Information Solutions, 5599 San Felipe, Suite 1700, Houston, TX 77056-2722, USA.
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If needed, create a folder called FlexLM in drive C and copy the OLGA_DownLoadLy.iR.lic file and rename it to license.dat.ĭownload Schlumberger OLGA 2016.2.Copyright 2014 Schlumberger. Finally, copy the OLGA_DownLoadLy.iR.lic file to the root of the C drive and run the software.
Pipesim installation requirements pc software#
Click Close to begin the software installation after the installation is complete, copy and paste the contents of the SPT Group folder in the Crack folder where the program is installed. After displaying the SPT License Handler window, click on Configure and import OLGA_DownLoadLy.iR.lic from the Crack folder. Run the setup_downLoadLy.ir.exe file to begin installing the license management tool and selecting Use a demo- or nodelocked license during installation.
Pipesim installation requirements pc 64 Bit#
Version 2016.2.1 was installed and successfully activated on Windows 10 64 bit on August 13, 96. Listed in the Readme.txt file in the folder.
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The hardware and software requirements for this version have not been made publicly available by the manufacturer, but the review requires high average processing power. Time-Dependent or Transient Flow Simulation to maximize production potentialĪbility to evaluate environmental impactsĪbility to simulate and accurately predict key operating conditions such as startup, shutdown, pigging, etc. Steady-state computation and analysis to address current problems and challenges Simulating key operational procedures including start-up, shut-down, and piggingĪssessing environmental risk in complex deepwater drilling environments.įeatures and Features of Schlumberger OLGA Software:Īccurate and advanced simulation and modeling of flow within pipesĪbility to dynamically simulate oil and gas pipes under different conditionsĪbility to calculate and incorporate various components such as heat transfer between the pipeline wall and the environment, pipe breakage, pipe corrosion, etc. The OLGA simulator enables key flow simulation applications, including: Key flow simulation applications are maximize production and minimize risk can be dynamically modeled and simulated. In Olga software, all types of pipeline networks that include various process equipment such as compressors, valves, heat exchangers, pumps, etc. The program was first formally launched by Statoil, which was then acquired by the SPT Group and subsequently developed by Schlumberger, a large company owned by Schlumberger. Schlumberger OLGA is a software developed for modeling and simulating a multi-phase flow that is a dynamic process. From wellbore dynamics for any well completion to pipeline systems with all types of process equipment, the OLGA simulator provides an accurate prediction of key operational conditions involving transient flow. Transient simulation with the OLGA simulator provides an added dimension to steady-state analyses by predicting system dynamics such as time-varying changes in flow rates, fluid compositions, temperature, solids deposition and operational changes. Dynamic simulation is essential in deepwater and is used extensively in both offshore and onshore developments to investigate transient behavior in pipelines and wellbores. Transient modeling is an essential component for feasibility studies and field development design. The OLGA dynamic multiphase flow simulator models time-dependent behaviors, or transient flow, to maximize production potential.