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Geological Analysis Software
Leveraging AI models for geological interpretation in oil&gas development, assisting field personnel in real-time understanding of reservoir conditions and operations, providing decision support for development
*The generalization ability of the Oil & Gas AI model is limited, so it may need to be adapted and optimized according to specific scenes and needs in practical applications.
① Explanatory services are provided by Antonoil's offline technical personnel
② GPT development services are provided by Antonoil's AI professionals
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Geological Analysis Software
Fiber Optic Wellbore Leakage Point Real-time Prediction Platform
  • Real-time analysis of geological stratification using models
  • Automatic generation of early warning messages to assist engineers in adjusting drilling parameters promptly
  • Free Trial
    Reservoir / Lithology Identification
    Oil & Gas reservoir is a rocky area where Oil & Gas collect underground in Oil & Gas exploration engineering. Reservoir characteristics include lithology, physical properties, and hydrocarbon content, which is the main direction of reservoir prediction. Reservoir lithology is the main feature that describes the mineral composition of the reservoir, reflecting the storage performance and reservoir characteristics of the formation, and the commonly used parameters include the physical structure of the reservoir rock, the distribution range, the tectonic morphology of the top interface of the reservoir, and the thickness of the reservoir. Comprehensive reservoir characteristics can realize the prediction of Oil & Gas rich area, i.e. sweet spot, and indicate the location and exploitation plan for Oil & Gas drilling.
    developing...
    Equipment Intelligent Monitoring
    Through the online monitoring system, the operating status data of the well dressing machine can be monitored in real time. This real-time not only provides technical support for the field operators, but also enables the oilfield managers at all levels to understand the status of the production site in a timely manner, so as to provide a basis for decision-making.
    developing...
    Geological Sweet Spot/Engineering Sweet Spot Identification
    In the process of Oil & Gas exploration and development, large Oil & Gas areas and large segments of Oil & Gas layers will be revealed, but often some of them have better development benefits under the current economic and technological conditions, which are called "sweet spots". Taking the measured geological and engineering parameters as inputs and utilizing the neural network simulation technology, the correlation between geological parameters and elasticity parameters is intelligently analyzed through big data, and the corresponding sweet spot evaluation parameters are deciphered.
    developing...
    Dynamic Evaluation Of Artificial Fracture Reforming Volume
    Comprehensive comparative evaluation is carried out based on the actual natural fracture response, ground stress and brittleness of each section of each well on each platform; the degree of artificial fracture complexity described qualitatively and quantitatively; and the degree of compression tampering qualitatively and quantitatively.
    developing...
    Fiber-optic Liquid-producing Profile And Gas-producing Profile Monitoring
    Fiber optic production profile testing technology realizes fiber optic distributed monitoring by pumping armored fiber optic cables into the continuous tubing in advance, and then transmitting the continuous tubing to the destination test layer through the continuous tubing truck set during operation. The fiber optic production profile monitoring technology uses the fiber optic itself as the sensor, without additional downhole logging instruments, and detects the temperature and acoustic wave data along the downhole fiber optic by measuring the backscattered light, and then analyzes the fluids produced in the well through real-time iteration, thus realizing the monitoring of the production profile of various clusters in the Oil & Gas wells.
    developing...
    Dynamic Monitoring Of Fracturing Sand And Fluid Intake
    Fiber-optic fracturing monitoring technology mainly makes use of distributed optical fibers in the same well or neighboring wells to carry out distributed acoustic vibration (DAS) and distributed strain sensing (DSS) monitoring. Through DAS monitoring in the same well, it can visually display the situation of fluid and sand feeding into the fracture clusters, so as to guide fracturing temporary plugging and shift to optimize stratum modification. Through real-time monitoring of low-frequency strain signals, it depicts the development process and state of fractured cracks, and guides fracturing in real-time; it also extracts microseismic signal events to evaluate the fracturing effect and optimize the fracturing plan.
    developing...
    Successful Cases
    Oil & Gas Generic AI Community
    AI Technology Seminar
    Large Model Knowledge Base
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