EP0505261A2

Stand-off compensated formation measurements apparatus and method.

Abstract

Apparatus and method for measuring density, porosity and other formation characteristics while drilling is disclosed. The apparatus, preferably housed in a drill collar and placed within a drill string, includes a source of neutrons (57) and a source of gamma rays (55) placed within a tubular body (14) which is adapted to provide for the flow of drilling through it. Two sets of stabilizer blades (56) are provided. One set, associated with the neutron source, includes secondary radiation detectors (59,60) that are placed radially beyond the nominal outer radius of the body. Formation porosity measurement accuracy is substantially enhanced since the standoff of the detectors from the formation is substantially decreased. Another set, associated with the gamma ray source, includes one or more gamma ray detection assemblies (300,310) in a single blade. Each of the gamma ray detector assemblies is also placed radially beyond the nominal outer radius of the tubular wall. Formation density or absorption coefficient accuracy is substantially enhanced since the standoff between the detection assembly and the borehole wall is decreased. In a particularly preferred embodiment, ultrasonic sensors (400) incorporated either or both sets of blades provide a measurement of the borehole diameter and/or standoff of the detectors from the borehole. The bulk density measurement and neutron porosity measurement data can be corrected with information derived from the standoff or borehole diameter. All such information is preferably transmitted to surface instrumentation where the corrections are performed, or performed downhole and the corrected data transmitted to the surface.

EP0505261A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 17 March 2012, 14.5 years ago.

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10 claims: 1 independent, 9 dependent

  1. 1
    A borehole-while-drilling tool for measuring characteristics of earth formations surrounding a borehole including a tubular body having upper and lower ends adapted for coupling to a drill string and providing a fluid flow path between its upper and lower ends, said tubular body having a tubular outer radius and a source of neutrons disposed coaxially within said body, and a plurality of longitudinally spaced secondary radiation detectors carried by said tool with means responsive to said longitudinally spaced radiation detectors to generate first signals useful for determining a first characteristic of said earth formations,    wherein said tool is characterized by    a plurality of stabilizer blades secured symmetrically about the outer periphery of said tubular body,    a plurality of detector cavities in registration with each of said stabilizer. blades, each of said cavities formed by an outwardly facing slot of said body which faces an inwardly facing slot of a stabilizer blade, each of said cavities having an outer radial extent substantially greater than said nominal tubular outer radius, and    each of said secondary radiation detectors being placed within one of said cavities.