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To learn more about our privacy policy Click hereDue to the nature of underground operations, it is exceedingly difficult for professors to explain and students to comprehend the required technology and method during the training process. As a result, Esimtech has created a downhole virtual simulation training system.
Workover Simulating Training System For Downhole Operation
Because the workover simulating training system models real-world field devices, the layout of the controlling panel, manner of operation, and technique of parameter display are substantially comparable to those found on the job site. Using synchronous 3D projection and lifelike environment sound, the systems generate visual effects that are highly similar to real-world places and create an immersive teaching experience.
The system is built on powerful computer controlling, simulating, graphic, and network technology, which is combined with a tight simulation of the real drilling engineering process, offering 6 categories and 35 training activities in total, such as well killing and shutting in. Its primary application is to teach technical employees who work underground in oil fields.
A portable workover simulator combines petroleum engineering with computer technologies, such as virtualization and computer simulation.
Its main purpose is to train new personnel, drillers/assistants, drilling technicians, and driller supervisors. The instruction provided by this technique can assist students in mastering the foundations of closing in and well killing.
To accomplish the same effect as the actual drilling operation, the system employs a mathematical model to mimic numerous parameters such as pressure, torque, drilling rate, flow rate, and so on, as well as to reflect the relationships between these parameters. Real-time 3D animation immerses the trainees in an immersive atmosphere.
Training Items
(1) Primary worker activity
Pulling and running tubing
Cleaning the sand
Printing using lead
(2) Operation of intermediate workers
Eccentric roller reshaping
Release fishing with a spear
Fishing with a slider spear
determining the stumbling block
(3) The operation of senior workers
Perforation of TCP
(4)Scraping following perforation
Using a drilling platform
After kick, the rotary operation shuts down.
After a kick, running and pulling operations are shut down.
Shut-in after kick occurs when big diameter tools are tripped.
After a kick, there is a shut-in in the barren hole.
Shut-in after kick occurs in wireline perforation procedures.
Without drilling platform
After kick, the rotary operation shuts down.
After a kick, running and pulling operations are shut down.
(5) Display of animation
After disassembling the Christmas tree, install the standpipe BOP.
Scrubbing the well
Killing in recirculating wells
Low gauge pressure testing
Fracturing sand management
Screw drill TCP-DST combination test
The operation of toxic and hazardous gases was demonstrated.
Fracturing And Acidizing Simulation Training System For Downhole Operation
Fracturing and acidizing simulation training platform based solely on production-level devices. It also incorporates technologies such as Fieldbus communication, distributed control, and virtual reality. The system consists of three components: hardware, software, and a graphics system.
The hardware is comprised of a fracturing truck and a blending truck operation panel; the software is comprised of fracturing design and process technology; and the graphics system depicts the actual process in 3D models. An evaluation software that allows pupils to work individually while the system assigns a score automatically. Instructors can also see how pupils conduct themselves. This software assists in determining students' rates of advancement.
The fracturing and acidizing simulator is very intelligent, with robust software, consistent operation, and an easy-to-use and learn graphic interface. Students can obtain direct understanding of the genuine process and master the necessary abilities thanks to the system.
The Benefits of Simulation Training System For Downhole Operation
1.Consistent and extensive training content, adaptive project design
2.Real-time interactive 3D animation
3.Intelligent scoring and unbiased evaluation
4.Alarm and realistic environment sound
5.Excellent software functions, an easy-to-use interface, and ease of learning and use
6.Real-time voice prompts
7.Industrial-grade PLC control, with outstanding stability and dependability
8.Extremely rigorous mathematical simulation in response to real-world technical constraints
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