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    Dynamic Differential Pressure Effects on Drilling of Permeable Formations

    Source: Journal of Energy Resources Technology:;1998:;volume( 120 ):;issue: 002::page 118
    Author:
    L. L. Hoberock
    ,
    G. J. Bratcher
    DOI: 10.1115/1.2795021
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: In the mathematical modeling of bit penetration rate for tri-cone roller bits in permeable formations, virtually all of the current techniques assume that the differential pressure between the bottom-hole wellbore pressure and the formation is a “static” value. This work shows that the appropriate differential pressure is a dynamic quantity, because for overbalanced drilling, fluid filtrate from the wellbore requires a finite time to flow into the formation, producing a changing pressure gradient ahead of the bit. Moreover, this dynamic gradient is directly dependent upon the rate of drill bit penetration, which is in turn dependent upon the dynamic gradient itself. Accordingly, coupled penetration rate and dynamic gradient equations must be solved, which frequently result in the prediction of higher drilling penetration rates than when the static gradient is used. The appropriate dynamic differential pressure equations are developed and applied to an example drilling situation. It is shown that with water-based drilling fluids, for rock with permeability greater than a few microdarcies at virtually all penetration rates, and for penetration rates less than 3 m/h (9.84 ft/h) at permeabilities greater than 1 μd (microdarcy), the dynamic differential pressure is significantly less than the static differential pressure. Accordingly, using the conventional static differential pressure results in the prediction of penetration rates that are much too low. Moreover, using measured penetration rates from the field, the conventional approach yields predicted in-situ rock strength that is much too high.
    keyword(s): Pressure , Drilling , Gradients , Fluids , Permeability , Rocks , Equations , Rollers , Water , Flow (Dynamics) , Pressure gradient , Bits (Tools) AND Modeling ,
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      Dynamic Differential Pressure Effects on Drilling of Permeable Formations

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    http://yetl.yabesh.ir/yetl1/handle/yetl/120323
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    contributor authorL. L. Hoberock
    contributor authorG. J. Bratcher
    date accessioned2017-05-08T23:56:24Z
    date available2017-05-08T23:56:24Z
    date copyrightJune, 1998
    date issued1998
    identifier issn0195-0738
    identifier otherJERTD2-26476#118_1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/120323
    description abstractIn the mathematical modeling of bit penetration rate for tri-cone roller bits in permeable formations, virtually all of the current techniques assume that the differential pressure between the bottom-hole wellbore pressure and the formation is a “static” value. This work shows that the appropriate differential pressure is a dynamic quantity, because for overbalanced drilling, fluid filtrate from the wellbore requires a finite time to flow into the formation, producing a changing pressure gradient ahead of the bit. Moreover, this dynamic gradient is directly dependent upon the rate of drill bit penetration, which is in turn dependent upon the dynamic gradient itself. Accordingly, coupled penetration rate and dynamic gradient equations must be solved, which frequently result in the prediction of higher drilling penetration rates than when the static gradient is used. The appropriate dynamic differential pressure equations are developed and applied to an example drilling situation. It is shown that with water-based drilling fluids, for rock with permeability greater than a few microdarcies at virtually all penetration rates, and for penetration rates less than 3 m/h (9.84 ft/h) at permeabilities greater than 1 μd (microdarcy), the dynamic differential pressure is significantly less than the static differential pressure. Accordingly, using the conventional static differential pressure results in the prediction of penetration rates that are much too low. Moreover, using measured penetration rates from the field, the conventional approach yields predicted in-situ rock strength that is much too high.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleDynamic Differential Pressure Effects on Drilling of Permeable Formations
    typeJournal Paper
    journal volume120
    journal issue2
    journal titleJournal of Energy Resources Technology
    identifier doi10.1115/1.2795021
    journal fristpage118
    journal lastpage123
    identifier eissn1528-8994
    keywordsPressure
    keywordsDrilling
    keywordsGradients
    keywordsFluids
    keywordsPermeability
    keywordsRocks
    keywordsEquations
    keywordsRollers
    keywordsWater
    keywordsFlow (Dynamics)
    keywordsPressure gradient
    keywordsBits (Tools) AND Modeling
    treeJournal of Energy Resources Technology:;1998:;volume( 120 ):;issue: 002
    contenttypeFulltext
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