Download Petroleum Engineering Handbook. Drilling Engineering by Larry Lake PDF

By Larry Lake

ISBN-10: 1555631088

ISBN-13: 9781555631086

ISBN-10: 1555631134

ISBN-13: 9781555631130

V. 1. common engineering / John R. Fanchi, editor -- v. 2. Drilling engineering / Robert F. Mitchell, editor -- v. three. amenities and building engineering / Kenneth E. Arnold, editor -- v. four. construction operations engineering / Joe Dunn Clegg, editor -- v. five, pt. A and pt. B. Reservoir engineering and petrophysics / Edward D. Holstein, editor -- v. 6. rising and peripheral applied sciences / H.R. Warner Jr., editor -- v. 7. Indexes and criteria

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Extra resources for Petroleum Engineering Handbook. Drilling Engineering

Example text

14) Here, G is the gravitational coefficient. The best measurement of density is derived from well logs. However, density logs are seldom acquired to ground surface or to the sea floor. If good seismic velocities are available, a velocity to density transformation can be used to estimate density where it has not been measured directly. A number of transformations from velocity to density are available (see Eq. 15 In the absence of good velocity or density data, densities must be extrapolated from the surface to the depths at which they are measured.

Once the domains have been separated, independent calibrations can be used to determine the pore pressure. In highly lithified, older sediments, as in the case of overcompacted sediments, it is very difficult to use trend-line analyses to determine pore pressure. This is because, in these sediments, the sensitivity of porosity to effective stress is small. Even in such cases, however, it is sometimes possible (with accurate models derived from laboratory measurements and calibrated against in-situ direct measurements) to utilize resistivity or velocity measurements to estimate pore pressure.

It is well known that if a vertical wellbore is pressurized, a hydraulic fracture will form at the azimuth of the maximum horizontal stress SHmax. In some cases, the natural stress state, perhaps aided by drilling-related perturbations such as high mud weight, causes the wellbore wall to fail in tension, generating drilling-induced tensile wall fractures (DITWFs), as previously discussed for a vertical well in a strike-slip faulting environment. These fractures occur only at the wellbore wall (owing to the local stress concentration) and do not propagate any significant distance into the formation.

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Petroleum Engineering Handbook. Drilling Engineering by Larry Lake


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