Drilling World 🌎
СтатистикаDrilling World: An integrated channel that clarifies all required drilling concepts in Arabic and English, and publishes all courses and books. @MoamelAli2_bot
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يعلن Nexus Energy Institute (NEI) عن إقامة ورشة تدريبية متخصصة بعنوان: Slickline Unit المحاضر: Eng. Mohammed Abdulzahra Naif محاور الورشة: Slickline Unit Slickline Jobs التاريخ: 14 – 15 August الوقت: 9:00 PM – 10:30 PM المنصة: Google Meet تقنية Slickline هي من أهم خدمات الآبار، تُستخدم لتنفيذ عمليات داخل البئر دون الحاجة لإخراج أنابيب الإنتاج، وتشمل إنزال واسترجاع الأدوات، القياسات، وأعمال الصيانة والتدخل لتحسين كفاءة البئر وسلامة العمليات الميدانية. دعوة عامة لجميع المهندسين والطلبة المهتمين بمجال الـ Slickline. https://forms.gle/P4C2MvyStJTHBFmJ9 https://t.me/OilNovaCareers
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Geosteering and Directional Drilling are often confused, but they serve different purposes. Directional drilling is responsible for steering the well toward its planned target, while geosteering uses real-time geological data to ensure the well remains within the most productive section of the reservoir. Understanding the difference is essential for anyone interested in drilling engineering, reservoir development, or petroleum geoscience.
🔷Understanding Swabbing in Drilling Operations Swabbing is one of the most important well control phenomena that every drilling professional should understand. During tripping out of the hole, the upward movement of the drillstring can create a temporary reduction in Bottom Hole Pressure (BHP). If this pressure falls below the formation pressure, formation fluids may enter the wellbore, resulting in a kick. The likelihood of swabbing increases with high tripping speeds, restricted annular clearance, balled BHA or bit, and drilling fluids with high viscosity or gel strength. Early recognition of surface indicators and adherence to proper tripping practices are essential for maintaining well control and preventing costly incidents.
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يشهد القطاع النفطي اليوم ثورة تكنولوجية غير مسبوقة، أعادت تشكيل طرق الاستكشاف والإنتاج والتشغيل بشكل جذري. من الذكاء الاصطناعي وتحليل البيانات الضخمة، إلى الأتمتة والحقول الذكية وتقنيات خفض الانبعاثات، أصبحت التكنولوجيا لاعبًا رئيسيًا في رفع الكفاءة وتقليل المخاطر والتكاليف. في هذا المنشور، نستعرض أبرز التطورات التكنولوجية التي تقود مستقبل صناعة النفط والغاز وتعيد تعريف هذا القطاع الحيوي 🔷laleh academy
Automation in production engineering is no longer a luxury-it’s the baseline. Are you still waiting for weekly or monthly reports to identify production decline? In today’s operations, the gap between field data and engineering models needs to be closed -automatically. By integrating automation tools with standard petroleum engineering software, we can move from reactive troubleshooting to proactive optimization. Here is a practical, automated workflow for real-time well performance monitoring: 🔷Connect to Field Data: Use Trusted Automation tool to query the PI Asset Framework (PI AF) via PI Web API, pulling wellhead pressure and flow rates every hour. 🔷Nodal Analysis Validation: Automatically compare this live data against your Prosper VLP/IPR models. Any deviation instantly flags potential performance decline (like scaling or water loading) before it compounds. 🔷Network Optimization: If a well degrades, the workflow triggers a GAP reallocation scenario via Open Server to recalculate optimal network routing and optimize based on the new constraints. 🔷Automated Reporting: Generate a daily production deferment summary complete with root-cause analysis and push it directly to operations leader via email. The result? Minimal production deferment, optimized production, and an engineering team focused on solving problems rather than manually exporting data to Excel. Tools and Networks like Prosper & Gap, OFM & Pipesim wait for data and run instead of some intelligent expectations. 🔷For Engineer Mustafa Jaber 🔶For more information, follow us
🔶CIRP completion insertion and removal under pressure equipment is used to insert and retrieve lon... CIRP completion insertion and removal under pressure equipment is used to insert and retrieve long gun strings under well head pressure when the surface pressure control equipment, or a lubricator, is shorter than the gun string. With CIRP equipment, you can perforate a long interval under the optimal underbalanced condition, and then retrieve the guns without exposing the formation to damaging kill fluids. You can also reperforate wells without killing them, minimizing production loss and formation damage. Multiple perforating runs can be completed without killing the well between runs. In extended-reach wells, for example, the perforated interval may be longer than the maximum gun string that can be conveyed, mandating multiple runs. The CIRP equipment consists of three main components: 🔷connectors, which tie the gun sections together and provide sealed ballistic transfer 🔷 deployment stack, which locks and unlocks connectors under pressure and supports the disconnected string 🔷two gate valves, which isolate the lubricator from well pressure to contain well pressure when short gun sections are being picked up or laid down 🔶If you have any questions or queries, please get in touch
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