Az % salt=x(cation exchange capacity)y where Az % salt is a final swelling volume of the shale in the presence of an aqueous fluid having a salt concentration of z %, and x and y are empirical constants, determining a composition of a wellbore servicing fluid based on the determined swelling characteristic, and drilling the wellbore using the wellbore servicing fluid. The swelling characteristic of the shale can be determined using the cation exchange capacity of the shale and a salt concentration in an equation comprising a term of the form:Am % salt=f(m,z)*(x)(cation exchange capacity)y where Am % salt is a final swelling volume of the shale in contact with an aqueous fluid having a salt concentration of m %, f(m,z) is a function based on the salt concentration of m % relative to salt concentration of z % in the aqueous fluid in contact with the shale, and x and y are empirical constants defining the relation Az % salt=x (cation exchange capacity)y."/> Mathematical modeling of shale swelling in water based muds
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Mathematical modeling of shale swelling in water based muds

机译:水基泥浆中页岩溶胀的数学模型

摘要

A method of servicing a wellbore comprises determining a cation exchange capacity of a sample of a shale, determining a swelling characteristic of the shale using the cation exchange capacity in an equation comprising a term of the form:Az % salt=x(cation exchange capacity)y where Az % salt is a final swelling volume of the shale in the presence of an aqueous fluid having a salt concentration of z %, and x and y are empirical constants, determining a composition of a wellbore servicing fluid based on the determined swelling characteristic, and drilling the wellbore using the wellbore servicing fluid. The swelling characteristic of the shale can be determined using the cation exchange capacity of the shale and a salt concentration in an equation comprising a term of the form:Am % salt=f(m,z)*(x)(cation exchange capacity)y where Am % salt is a final swelling volume of the shale in contact with an aqueous fluid having a salt concentration of m %, f(m,z) is a function based on the salt concentration of m % relative to salt concentration of z % in the aqueous fluid in contact with the shale, and x and y are empirical constants defining the relation Az % salt=x (cation exchange capacity)y.
机译:一种维修井眼的方法,包括确定页岩样品的阳离子交换能力,使用阳离子交换能力在包含以下形式的项的方程式中确定页岩的溶胀特性:<?in-line-formulae description =“在线公式” end =“ lead”?> A z%盐 = x (阳离子交换容量) y <?in-line-formulae description =“在线表达式” end =“ tail”?>其中A z%盐是在盐浓度为z%的水性流体存在下页岩的最终溶胀量,而x和y是经验常数,确定了井筒维修的组成根据确定的溶胀特性,注入井眼,并使用井眼维修液钻探井眼。页岩的溶胀特性可以使用页岩的阳离子交换能力和盐浓度来确定,公式包括以下形式的项:<?in-line-formulae description =“在线公式” end =“ lead”?> A m%盐 = f m,z )*( x )(阳离子交换容量) y <?in-line-formulae description =“在线表达式” end =“ tail”?>其中A m%盐是与盐浓度为m%的水性流体接触的页岩的最终溶胀体积,f(m,z)是基于盐浓度为m的函数相对于与页岩接触的含水流体中z%的盐浓度的百分比,x和y是经验常数,定义关系A z%salt = x(阳离子交换容量) y

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