A Double-layer Intelligent ROP Modeling Method for Geological Exploration Drilling Process
A technology of geological exploration and modeling method, which is applied in the fields of earthwork drilling, drilling equipment, drilling automatic control system, etc. It can solve the problems of not forming a unified structure and achieve the effect of overcoming the coupling problem
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Embodiment 1
[0049] The embodiment of the present invention provides a double-layer intelligent ROP modeling method in the geological exploration drilling process, which can effectively improve the accuracy and generalization ability of the ROP model, and lays a good foundation for the intelligent control of the geological exploration drilling process. see figure 1 , the geological exploration drilling process double-layer intelligent ROP modeling method of the present invention comprises the following steps:
[0050]Step S100: Obtain a sample data set based on the segmented cubic Hermitian interpolation calculation method; select the rate of penetration as an index to measure the efficiency of the geological exploration drilling process, analyze the mechanism of the drilling process, and determine various parameters that affect the rate of penetration , based on the segmented cubic Hermitian interpolation calculation method to fill in some missing data and obtain a sample data set; it spe...
Embodiment 2
[0074] See Table 1 and Table 2 for the drilling parameters, formation depth and seismic acoustic wave time parameters in a certain area. Effect of the present invention is simulated and verified by table 1 and table 2 data, please refer to Figure 9 , which is a specific embodiment of the above method applied to a certain place, including the following specific steps:
[0075] (1) The original data are Table 1 and Table 2. Based on the segmented cubic Hermitian interpolation method, the seismic acoustic wave time data and formation depth in Table 2 are correspondingly supplemented, and the following is obtained: image 3 The seismic acoustic wave time comparison chart of measurement and interpolation is shown. The sample data set consists of formation depth, formation drillability, seismic layer velocity, specific pressure on bit, rotational speed, specific water power, mud density, ROP, seismic acoustic wave time, etc. A total of 22 sets of data consist of 9 parameters.
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