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Influence of Heavy Weight Drill Pipe Material and Drill Bit Manufacturing Errors on Stress State of Steel Blades

doi: 10.3390/en14144198
Drilling volumes should be increased in order to increase hydrocarbon production, but this is impossible without the usage of high-quality drilling tools made of modern structural materials. The study has to analyze the design, technological and operational methods to increase the performance of drilling tools made of various materials and has highlighted prospects of technological method applications. The scientific novelty of the study consists in the development of a new analytical model of PDC drill bit–well interaction. The developed model takes into account the drill bit manufacturing errors in the form of bit body–nipple axes misalignment on the drill bit strength. This result makes it possible to determine the permissible manufacturing errors to provide safe operation of the drill bit. It is established that there is an additional transverse force that presses the drill bit to the well wall in the rock due to manufacturing errors. It is determined that the magnitude of this clamping force can be significant. The material effect has been analyzed on additional clamping force. It is established that geometric imperfection of the drill bit causes the minimal effect for the elastic system of the pipe string, which includes a calibrator and is composed of drill pipes based on composite carbon fiber material, and the maximal effect—for steel drill pipes. Polycrystalline diamond compact (PDC) drill bit and well wall contact interaction during operation in non-standard mode is considered. Non-standard stresses are determined, and the strength of the blades is estimated for different values of drilling bit manufacturing error.
- Guangdong University of Petrochemical Technology China (People's Republic of)
- Ivano-Frankivsk National Technical University of Oil and Gas Ukraine
- Lublin University of Technology Poland
- National Mining University of Ukraine Ukraine
- National Mining University of Ukraine Ukraine
Technology, model, T, drilling; pipe; drill bit; manufacturing error; material; model; elastic modulus, drilling, drill bit, pipe, material, manufacturing error
Technology, model, T, drilling; pipe; drill bit; manufacturing error; material; model; elastic modulus, drilling, drill bit, pipe, material, manufacturing error
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