Apparatus and related methods to determine hole cleaning, well bore stability and volumetric cuttings measurements
Abstract
A method for estimating a parameter relating to solids recovered from a wellbore may include drilling a wellbore using a bottomhole assembly; conveying solids in the wellbore to a surface location using a drilling fluid; separating the drilling fluid from the solids using at least one shaker; conveying the separated solids by using a conveyor; and continuously dropping the solids into a solids evaluator positioned vertically above the dryer. The solids evaluator includes a chute having a vertically aligned bore in which the dropped solids reach a constant velocity, a sensor assembly generating a microwave field in a section of the chute where the dropped solids have the constant velocity, and a control unit in signal communication with the sensor assembly. The control unit estimates a mass flow rate of the solids based on the generated signals. The method may further include generating the signals representative of a mass flow rate of the dropped solids using the sensor assembly and using the control unit to estimate the mass flow rate of the solids based on the generated signals.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A method for estimating a parameter relating to solids recovered from a wellbore, comprising:
flowing the solids at a constant velocity through a microwave field, wherein the solids were separated from a drilling fluid recovered from the wellbore; generating signals representative of a mass of the flowing solids; and estimating a mass flow rate using the generated signals.
2 . The method of claim 1 , further comprising estimating a volumetric flow rate using the estimated mass flow rate and an estimated density of the solids.
3 . The method of claim 2 , further comprising comparing the estimated volumetric flow rate with a theoretically volumetric flow rate.
4 . The method of claim 3 , further comprising adjusting at least one drilling parameter based on the comparison of the estimated volumetric flow rate with the theoretical volumetric flow rate.
5 . A method for estimating a parameter relating to solids recovered from a wellbore, comprising:
drilling a wellbore using a bottomhole assembly; conveying the solids in the wellbore to a surface location using a drilling fluid; separating the drilling fluid from the solids using at least one shaker; conveying substantially all of the separated solids by using a conveyor; continuously dropping the solids into a solids evaluator positioned vertically above the dryer, wherein the solids evaluator includes:
a chute having a vertically aligned bore, the chute having a length selected to allow the dropped solids to reach a constant velocity,
a sensor assembly generating a microwave field in a section of the chute where the dropped solids have the constant velocity, and
a control unit in signal communication with the sensor assembly, the control unit being configured to estimate a mass flow rate of the solids based on the generated signals;
generating the signals representative of a mass flow rate of the dropped solids using the sensor assembly; using the control unit to estimate the mass flow rate of the solids based on the generated signals; and drying the solids in a dryer.
6 . The method of claim 5 , further comprising estimating a volumetric flow rate of the dropped solids by using the estimated mass flow rate and an estimated density of the dropped solids.
7 . The method of claim 5 , wherein the estimated density is based on an analysis of a formation through which the wellbore is being drilled.
8 . The method of claim 5 , wherein the dropped solids free fall through the chute.
9 . The method of claim 5 , further comprising adjusting at least one drilling parameter based on the estimated mass flow rate of the solids.
10 . The method of claim 9 , further comprising comparing the estimated mass flow rate of the solids to a theoretical mass flow rate of the solids.
11 . The method of claim 5 , wherein the separating of the drilling fluid from the solids is performed using a plurality of shakers.
12 . The method of claim 5 , wherein the microwave field completely traverses a cross-sectional flow path of the dropped solids and is perpendicular to the flow of the dropped solids.
13 . An apparatus for estimating a parameter relating to solids recovered from a wellbore, the solids being dropped from a conveyance device, the apparatus comprising:
a chute having a vertically aligned bore, the chute having a length selected to allow the dropped solids to reach a constant velocity, a sensor assembly generating a microwave field in a section of the chute where the dropped solids have the constant velocity, the sensor assembly generating signals representative of a mass flow rate of the dropped solids, and a control unit in signal communication with the sensor assembly, the control unit being configured to estimate a mass flow rate of the solids based on the generated signals.
14 . The apparatus of claim 13 , wherein the microwave field completely traverses a cross-sectional flow path of the dropped solids and is perpendicular to the flow of the dropped solids.
15 . The apparatus of claim 13 , wherein the chute is oriented to allow the dropped solids to free fall through the chute.Join the waitlist — get patent alerts
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