EP0903462A1

Method of maintaining the integrity of a well cementing sheath

Abstract

A method of maintaining the integrity of a sheath, in particular a cementing sheath in a well consists in calculating or estimating variations in well pressure and/or in well temperature and/or in the variations in in-situ stresses, which may occur during the lifetime of the well, evaluating the stresses in the sheath as a function of the above variations, determining the nature of the stress likely to be first in causing deterioration of the sheath, and the risk thereof, and evaluating the influence of the elastic properties of the sheath, of the rock and/or of the casing on this stress, in order to select a sheath which is capable of attenuating this deterioration. The method is of particular application to oil, water, gas, and geothermal wells.

EP0903462A1, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 10 September 2018, 8 years ago.

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7 claims: 2 independent, 5 dependent

  1. 1
    A method for maintaining the integrity of a sheath forming a seal, in particular a cementing sheath, positioned around a metal casing for an oil, gas, water, geothermal or analogous well in rock, the sheath being subjected to mechanical and/or thermal stresses during the lifetime of the well which can cause a risk of cracking of the sheath by failure in tension or in shear, or by detachment of the sheath at the casing-sheath and/or sheath-rock interfaces, for example, the method being characterized in that it consists in:• calculating or estimating pressure and/or temperature variations in the well and/or variations in in-situ stresses, which can occur during the lifetime of the well;• for a given sheath, evaluating the various stresses which will be applied to that sheath in particular as a function of the variations defined above and taking into account the geometrical characteristics of the well and of the casing, and also the mechanical properties of the rock;• from the above evaluation of the various stresses, determining the nature of the stress which is likely to cause sheath deterioration in the first instance;• evaluating the influence of the mechanical and/or physical properties of the sheath, the rock and/or the casing on the above-defined stress;• selecting a sheath with mechanical and/or physical properties which are likely to attenuate the effects of the above-defined stress;and • positioning the sheath as selected in this way around the well casing.
  2. 5
    A method according to any one of claims 1 to 4, characterised in that it includes calculating the expansion of the sheath which is necessary to avoid detachment of the sheath at the sheath-rock and/or sheath-casing interfaces.
  3. 6
    A method according to any one of the preceding claims, characterised in that it also includes increasing the thickness of the well casing to limit its deformation when the well pressure increases.