Interpretation and evaluation method for water layer recognition by logging while drilling Q parameter
An evaluation method and parameter technology, applied in earthwork drilling, wellbore/well components, measurement, etc., can solve problems such as prominent objective and subjective interference factors, difficulty in identifying dry and water layers, and low reliability of original data. To achieve the effect of being easy to apply and popularize, reducing the influence of human factors, and explaining the results objectively
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Embodiment 1
[0048] A method for interpreting and evaluating water layer identification by using logging-while-drilling Q parameters, characterized in that it includes the following steps:
[0049] a. Collect and sort out the mud logging engineering parameters and geological parameters of the target layer;
[0050] b. Calculate the Q parameter response value of mud logging by using mud logging engineering parameters and geological parameters;
[0051] c. Draw a graph according to the response value of the mud logging Q parameter;
[0052] d. Using the chart while drilling to judge the development of the water layer.
[0053] In the step a, the mud logging engineering parameters and geological parameters include the drilling fluid performance parameters of the target layer while drilling, real-time mud logging data, and late mud logging data recorded by the comprehensive mud logging instrument.
[0054] The engineering parameters include: drilling time (ROP), weight on bit (WOB); the geol...
Embodiment 2
[0076] The present invention comprises the steps:
[0077] a. Collect and organize the logging engineering parameters and geological parameters of the target layer in the well section to be processed, including: the relative content of methane components obtained by the drilling fluid logging instrument (C 1 ), time-of-drill (ROP), weight-on-bit (WOB) parameters;
[0078] b. Using the relative content of methane components (C 1 ), time-of-drilling (ROP), and weight-on-bit (WOB) parameters to calculate the Q parameter of the drilling fluid methane variation index;
[0079] c. Using the relative content of drilling fluid methane components (C 1 ), drilling fluid methane fluctuation index Q parameter to make a single well Q parameter map;
[0080] d. Refer to the model diagram and numerical judgment to quickly identify the development of the water layer in the drilled formation.
[0081] In the step a, the mud logging engineering parameters and geological parameters include t...
Embodiment 3
[0101] An interpretation and evaluation method for identifying water layers by using logging-while-drilling Q parameters, comprising the following steps:
[0102] 1. Data source: collect and sort out the engineering and geological parameters (real-time mud logging data, delayed mud logging data) collected for research well section logging while drilling, including the relative content of methane components (C 1 ), time of drilling (ROP), weight on bit (WOB);
[0103] 2. Using the relative content of methane components (C 1 ), time-of-drilling (ROP), and weight-on-bit (WOB) parameters to calculate the Q parameter of the drilling fluid methane variation index;
[0104] 3. Using the relative content of methane components in drilling fluid (C 1 ) Change the characteristic Q parameter to make a single well Q parameter map;
[0105] 4. Refer to the Q parameter diagram and numerical discrimination to quickly identify the development of the water layer in the drilled formation.
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