Enhanced Oil Recovery.



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Transcription:

Linde Engineering Nitrogen Generation and Nitrogen Rejection. Enhanced Oil Recovery.

2 Contents. 3 Introduction 4 Nitrogen injection 5 Air separation/nitrogen generation 6 Nitrogen rejection unit (NRU) 7 Services General Basic engineering Detail engineering Project management Construction Commissioning and training After sales service 8 Contact Cover photo: Nitrogen generation plant in Cantarell, Mexico

3 Introduction. Enhanced oil recovery (EOR) includes methods for increasing the amount of oil, condensate and associated natural gas recovered from hydrocarbon reservoirs. Following primary oil recovery, the majority of the original oil remains in the reservoir. In a framework of increasing global oil demand and regional natural gas shortages, unlocking remaining hydrocarbons is becoming evermore of a priority. Linde supports the economic recovery of oil, condensate and natural gas through its leading position as a supplier of industrial gases as well as supplier of cryogenic air separation plants for nitrogen generation. Furthermore, Linde provides cryogenic process technologies, equipment and plants to reject nitrogen from natural gas streams associated with the production of oil and condensate, the so called nitrogen rejection unit (NRU). 3

4 Nitrogen injection. Use of Nitrogen is a promising application for EOR. While the specifics of each reservoir dictate which EOR-methods have the greatest potential for recovering additional hydrocarbons, high purity nitrogen has properties which make it the ideal gas for certain situations. Nitrogen s low compressibility means that less energy is required to inject it into high pressure reservoirs. Nitrogen is inert, non-corrosive and readily available at any location. These properties make Nitrogen advantageous where field material costs, degradation and availability of alternative gases are a concern. As a non-toxic, non-greenhouse gas, Nitrogen also is an environmentally favourable choice. Nitrogen can be used for the following enhanced oil recovery applications: Air separation plant Injection compressor Condensate/oil Gas cap displacement Nitrogen is used to replace the gas cap of a reservoir. As such, the reservoir pressure is maintained while allowing the production of oil and associated gas to continue. Air separation plant Injection compressor Condensate/oil Pressure maintenance Nitrogen is injected into the oil- or condensate bearing stratum under high pressure. This pressure pushes the oil or condensate towards the production well. Air separation plant Injection compressor Oil Miscible displacement of oil Nitrogen is injected to form a miscible zone, where light hydrocarbons form a mixture with nitrogen which dissolves in the oil. This miscible zone allows a coherent drive of the oil front. Miscible zone Oil bank

5 Air separation plant in Ras Laffan, Qatar Air separation/nitrogen generation. The Linde Group with its Linde Gas Division - is a world leader in the industrial gases market offering a wide range of tonnage compressed and liquefied industrial gases to a large variety of industries. We are an important and reliable partner to many industries to whose operations Linde s continuous and timely supply of high quality industrial gases is essential. The Linde Group owns and operates more than 300 air separation plants of significant size worldwide. In addition Linde with its Linde Engineering Division is a pioneer in the air separation industry and has built more than 2,800 cryogenic air separation plants in more than 80 countries for the production of oxygen, nitrogen, argon and other rare gases, including the world s largest air separation complex in Ras Laffan, Qatar with a capacity of more than 30.000 tons per day of oxygen supplied by eight equal trains. more than 10,000 tons per unit is often the most economical and in many cases the only feasible choice. Linde engineered, built, owns and operates the world s largest nitrogen generation complex supplying one of the world s largest oil fields named Cantarell located in the Gulf of Mexico with 55,000 tons per day of high pressure nitrogen for EOR (see cover page). Likewise in Nitrogen generation complex in Mirfa, Abu Dhabi Mirfa, Abu Dhabi Linde currently is in the process of executing another large nitrogen generation complex with a capacity of more than 18.000 tons per day of nitrogen for EOR. This facility will be owned and operated jointly with the client. Both projects clearly demonstrate Linde s unique set of capabilities and extensive experience in the area of nitrogen generation for EOR. Enhanced Oil Recovery (EOR) with the use of nitrogen requires very significant quantities of pure high pressure nitrogen in the vicinity of the reservoir. Linde s cryogenic air separation technology with a nitrogen production capacity of

6 Nitrogen rejection unit (NRU). Nitrogen in non-associated or associated natural gas often is a natural phenomenon and can be tolerated within limits. However, natural gas pipeline operators need to control nitrogen content to meet heating value and Wobbe index requirements governed by downstream applications, such as burners or gas turbines. In case significant natural gas volumes require treatment, cryogenic nitrogen rejection technology is the most economical choice and, in some cases, the only feasible option. Similarly, nitrogen in the feed gas to LNG plants poses a challenge as it accumulates in the end flash gas and requires that nitrogen is rejected prior to using the flash gas in gas turbines or fuel systems. While in both aforementioned applications nitrogen content often is stable, nitrogen content in associated natural gas may increase during the lifetime of a reservoir and fluctuate significantly some time after nitrogen injection has commenced as part of a EOR-scheme. With over 125 years of experience with cryogenic process technologies, manufacturing of key cryogenic process equipment and expertise as an EPC contractor, Linde is in a position to work closely with its clients to develop customized nitrogen rejection units. The Linde portfolio for nitrogen rejection includes single and double column processes, complemented by pre-separation columns and closed or open recycles as the case may be. Furthermore the process and equipment design can be tailored to accommodate an increasing nitrogen content, part load requirements and nitrogen fluctuations which can occur in complex gas well networks. Linde also is a leading provider of natural gas pre-treatment technology and gas separation plants which are often required upstream of a nitrogen rejection unit. This experience in natural gas processing puts Linde in an exceptional position to provide integrated, robust and energy-efficient solutions for every application along the entire natural gas process chain. The growing importance of re-ducing greenhouse gas emissions has led Linde to pay special attention to minimize methane in vent gas during the design of nitrogen rejection units. As a result of such efforts, Linde s nitrogen rejection units in Hammerfest, Norway and Karratha, Australia are best in class with regard to methane emissions. NRU integrated in an LNG plant in Hammerfest, Norway NRU module for an LNG plant in Karratha, Australia

7 Nitrogen rejection unit and helium production unit in Skikda, Algeria Services. General The Engineering Division has extensive experience in executing large complex multi-national turnkey projects particularly for large petrochemical and LNG plants (e.g. Hammerfest LNG plant: 1.6 million engineering hours, 9 construction sites, 120 suppliers, 19 main subcontractors). The Engineering Division is the only company that has comprehensive experience in the execution of turnkey contracts for air separation plants in China and in the Middle East. Basic engineering Process design and optimization with advanced process simulation software OPTISIM (developed by Linde). The process design incorporates features of numerous in-house patents. Design of plant operation and control using Linde s 125 years of plant operation experience. Detail engineering Mechanical design using 3D CAD software to establish a complete model of the plant. Specification of the electrical equipment and design of the power supply networks with specific expertise in large drives (up to 60 MW). Specification of control system hardware from well-known international automation companies. Programming of control functions using pre-engineered and pre-tested basic control functions. Implementation of advanced control functions (automatic load change, automatic start-up, automatic product adaptation) using the Linde advanced process control system. Project management Project managers with senior-level experience of complex multi-national/multi-partner projects. Advanced tools and methods for project control (scheduling, cost control). Reliable tools, methods and procedures for global sourcing and material logistics. Construction Extensive experience with turnkey projects for large plants (including Middle East and China). Methods and experience in controlling complex pre-fabrication and construction activities as well as material flow. Commissioning and training Skilled experienced commissioning teams ensure smooth start-up and handover of the plant to the customer. Remote support for the commissioning team on site by specialists of every discipline (e.g. process, control, machinery) makes the whole Linde expertise available on site. Extensive safety procedures and safety training ensure safe commissioning and operation of the plant. After sales service Prompt response to any customer request by qualified specialists. Global remote on-site support to optimize operation and minimize plant downtimes. Plant optimization services to improve plant efficiency. Remote support for the on-site commissioning team by specialists of every discipline (e.g. process, control, machinery) giving access to the total Linde expertise. Linde s safety procedures and safety training ensuring safe plant commissioning and operation.

Designing processes constructing plants. Linde s Engineering Division continuously develops extensive process engineering know-how in the planning, project management and construction of turnkey industrial plants. The range of products comprises: Petrochemical plants LNG and natural gas processing plants Synthesis gas plants Hydrogen plants Gas processing plants Adsorption plants Air separation plants Cryogenic plants Biotechnology plants Furnaces for petrochemical plants and refineries The Engineering Division and its subsidiaries manufacture: Packaged units, cold boxes Coil-wound heat exchangers Plate-fin heat exchangers Cryogenic standard tanks Air heated vaporizers Spiral-welded aluminium pipes More than 4,000 plants worldwide document the leading position of the Engineering Division in international plant construction. Engineering Division Schalchen Plant Tacherting, Germany Phone +49.8621.85-0 Fax +49.8621.85-6620 plantcomponents@linde-le.com Linde Engineering Dresden GmbH Dresden, Germany Phone +49.351.250-30 Fax +49.351.250-4800 ledd.dresden@linde-le.com SELAS-LINDE GmbH Pullach, Germany Phone +49.89.7447-470 Fax +49.89.7447-4717 selas-linde@linde-le.com Cryostar SAS Hésingue, France Phone +33.389.70-2727 Fax +33.389.70-2777 info@cryostar.com Linde CryoPlants Ltd. Aldershot, United Kingdom Phone +44.1252.3313-51 Fax +44.1252.3430-62 lindecryoplants@linde-le.com Linde Impianti Italia S.p.A. Rome, Italy Phone +39.066.5613-1 Fax +39.066.5613-200 m.margheri@lindeimpianti.it Linde Kryotechnik AG Pfungen, Switzerland Phone +41.52.3040-555 Fax +41.52.3040-550 info@linde-kryotechnik.ch Bertrams Heatec AG Pratteln, Switzerland Phone +41.61.467-7525 Fax +41.61.467-7500 hubertus.winkler@linde-le.com CRYO AB Gothenburg, Sweden Phone +46.3164-6800 Fax +46.3164-2220 lars.persson@cryo.aga.com Linde Process Plants, Inc. Tulsa, OK, U.S.A. Phone +1.918.4771-200 Fax +1.918.4771-100 sales@lppusa.com Selas Fluid Processing Corp. Blue Bell, PA, U.S.A. Phone +1.610.834-0300 Fax +1.610.834-0473 sales@selasfluid.com Hydro-Chem Holly Springs, GA, U.S.A. Phone +1.770.345-2222 Fax +1.770.345-2778 sales@hydro-chem.com Linde Engenharia do Brasil Ltda. São Paulo, Brazil Phone +55.21.3545-2255 Fax +55.21.3545-2257 jaime.basurto@linde.com Linde Process Plants (Pty.) Ltd. Johannesburg, South Africa Phone +27.11.490-0513 Fax +27.11.490-0412 linde.za@linde-le.com Linde Engineering Dresden GmbH Moscow Office, Russia Phone +7.495.6426242 Fax +7.495.6426243 ledd.moscow@linde-le.com Linde Engineering RUS,OOO Samara, Russia Phone +7.846.331-3377 le.rus@linde-le.com Linde Arabian Contracting Co. Ltd. Riyadh, Kingdom of Saudi Arabia Phone +966.1.419-1193 Fax +966.1.419-1384 martin.hofmann@linde-le.com Linde Arabian Contracting Co. Ltd. Al-Khobar, Kingdom of Saudi Arabia Phone +966.3.887-1191 Fax +966.3.887-0133 diethard.nowag@linde-le.com Linde Engineering Middle East LLC Abu Dhabi, United Arab Emirates Phone +971.2.6981-400 Fax +971.2.6981-499 leme@linde.com Linde Engineering India Pvt. Ltd. Vadodara, Gujarat, India Phone +91.265.3056-789 Fax +91.265.2461-757 sales@linde-le.com Linde Engineering Far East, Ltd. Seoul, South Korea Phone +82.2780-0954 Fax +82.2780-0958 hanyong.lee@linde.com Linde Engineering Division Bangkok, Thailand Phone +66.2751-9200 Fax +66.2751-9201 anuwat.krongkrachang@linde.com Linde Engineering Co. Ltd. Dalian, P.R. of China Phone +86.411.3953-8819 Fax +86.411.3953-8899 info@lindeled.com Linde Engineering Co. Ltd. Hangzhou, P.R. of China Phone +86.571.8501-9222 Fax +86.571.8501-9200 info@lindeleh.com Linde Engineering Division Beijing Representative Office Beijing, P.R. of China Phone +86.10.6437-7014 Fax +86.10.6437-6718 info@linde-lecn.com Linde Engineering Taiwan Ltd. Taipei, Taiwan Phone +886.2.2786-3131 Fax +886.2.2652-5871 tso.ming.hsieh@linde-le.com Linde AG Engineering Division, Head office, Dr.-Carl-von-Linde-Strasse 6-14, 82049 Pullach, Germany Phone +49.89.7445-0, Fax +49.89.7445-4908, E-Mail: info@linde-le.com, www.linde-engineering.com HE/1.2.e/12