IP Library Granted Patent US 9,562,870
Granted Patent B2
US 9,562,870 · App. 13/823,645 · Granted Feb 7, 2017

Method and device for non-destructive testing of wind turbine blades

Inventors: Jacques Bouteyre (St Medard en Jalles, FR); Pascal Jouan (St Medard en Jalles, FR)
Assignee: ASTRIUM SAS
G01N25/72F03D1/065G01M99/002F05B2260/83Y02E10/721
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,562,870
App. No.
13/823,645
Granted
Feb 7, 2017
Kind
B2
Abstract

The method CND of non-destructive testing of a wind turbine blade includes: stressing the structure of the blade through a modification of a physical characteristic of a fluid filling the hollow interior volume of the blade; observing zones to be tested of the exterior surface of the blade, with the contactless measurement of a physical parameter on points of the exterior surface of the blade; and comparing the map of the values of the physical parameter measured with a reference map. A corresponding system CND for checking the structural integrity of a wind turbine blade includes an aerothermic device for modifying the physical conditions, temperature or pressure, of a fluid filling the hollow interior volume of the blade, a device for contactless measurement of a physical parameter, temperature or dimensions, of the exterior surface of the blade, and a device for processing the measurements.

Claims (39)

1. A NDT method ( 200 ) for non destructive testing of a wind turbine blade ( 10 ) attached to a wind turbine ( 100 ), a structure of said blade including a skin ( 13 ) determining a blade external surface ( 19 ) and a hollow volume ( 18 ) at the interior of the blade, said NDT method including:

a first step ( 201 ) for loading the blade structure, fixed to a turning shaft attached to a technical nacelle ( 30 ) located in an upper part of a carrying post ( 20 ), by a modification of at least one physical characteristic of a fluid filling out the blade hollow volume ( 18 ), using an aerothermic device ( 40 ) installed in the wind turbine;

a second step ( 202 ) for observing regions of the external surface ( 19 ) to be checked, said observation comprising the carrying out of contactless measurement with a measurement sensor, fixed remotely from the wind turbine, of at least one physical parameter, sensitive to the loading of the first step ( 201 ), on points of the external surface ( 19 ) in order to establish a measured map of the physical parameter values measured for said regions to be checked; and

a third step ( 203 ) for detecting structural anomalies in the blade by comparing values measured during the second step with expected values for a blade without any notable defect.

2. The NDT method according to claim 1 , wherein the at least one modified physical characteristic corresponds to the fluid temperature into the hollow volume ( 18 ), said temperature of said fluid being brought to a value different from the temperature at the blade outside during the first step ( 201 ), and wherein the physical parameter measured during the second step ( 202 ) corresponds to a temperature of the blade external surface ( 19 ).

3. The NDT method according to claim 2 , wherein the temperature of the blade external surface ( 19 ) is measured in a contactless manner by infra-red thermography.

4. The NDT method according to claim 1 , wherein the at least one modified physical characteristic corresponds to a fluid pressure into the hollow volume ( 18 ), said pressure of said fluid being brought to a value different from the pressure at the blade outside during the first step ( 201 ), and wherein the physical parameter measured during the second step ( 202 ) corresponds to a geometrical dimension of the external surface ( 19 ) characterizing the geometrical form of said external surface.

5. The NDT method according to claim 4 , wherein the geometrical dimension of the external surface ( 19 ) is measured by one of the laser telemetry, numerical photogrammetry, laser interferometry or shearography methods.

6. The NDT method according to claim 1 , wherein the detection of anomalies carried out in the third step ( 203 ) includes a step for comparing the measured value at each point with measured values at points near to the considered point in order to establish a map of value contrasts of the measured parameter and includes a step for correlating said contrasts map with internal structures of the blade ( 10 ).

7. The NDT method according to claim 1 , wherein the detection of anomalies carried out in the third step ( 203 ) includes a step for comparing the measured map with a reference map, said reference map being a reference map of the measured parameter values established by measurements according to the first and second steps ( 201 , 202 ) of the method, on one or more blades considered as without defect, or a reference map established by a digital simulation of the method on a digital blade model, or it is an hybrid map obtained by hybridization of all or a part of reference maps established by measurement or digital simulation.

8. The NDT method according to claim 1 , comprising a fourth step ( 204 ) for characterizing defects by a comparison of the anomalies identified at the third step ( 203 ), in real time during the measurement or in differed time, of each anomaly observed with known anomalies whose characteristics are stored in a bank of anomaly data.

9. A set including a wind turbine ( 100 ) and a NDT system for non destructive testing intended to check the structural integrity of a wind turbine blade ( 10 ), fixed to a turning shaft attached to a technical nacelle ( 30 ) located in an upper part of a carrying post ( 20 ) of the wind turbine ( 100 ) according to the process of claim 1 , said blade comprising a skin ( 13 ) determining a blade external surface ( 19 ) and a blade hollow volume ( 18 ), comprising:

an aerothermic device ( 40 ) intended to modify physical conditions of a fluid filling out the blade internal hollow volume ( 18 ) and implemented either in the technical nacelle ( 30 ) or the wind turbine blade ( 10 );

a contactless measurement device fixed remotely from the blade to be checked during the measurements and implementing at least a contactless sensor ( 51 ) of at least a physical parameter of the blade external surface ( 19 );

a measurement processing device configured to establish a measured value map of the at least one parameter on the blade external surface ( 19 ) and to identify anomalies of said measured values map,

wherein the aerothermic device ( 40 ) is a heating or cooling device intended to modify the fluid temperature within the blade hollow volume ( 18 ) at a value different from the temperature at the blade outside,

wherein the measurement device provided with at least a contactless sensor ( 51 ) implements a thermal camera measuring the temperature of the blade external surface ( 19 ), and

wherein the contactless measurement device ( 50 ) is fixed on the ground, or on a terrestrial vehicle, or on a surface vessel, remotely from the wind turbine during the measurements.

10. A set including a wind turbine ( 100 ) and a NDT system for non destructive testing intended to check the structural integrity of a wind turbine blade ( 10 ), fixed to a turning shaft attached to a technical nacelle ( 30 ) located in an upper part of a carrying post ( 20 ) of the wind turbine ( 100 ) according to the process of claim 1 , said blade comprising a skin ( 13 ) determining a blade external surface ( 19 ) and a blade hollow volume ( 18 ), characterized in that it comprises:

an aerothermic device ( 40 ) intended to modify physical conditions of a fluid filling out the blade internal hollow volume ( 18 ) and implemented either in the technical nacelle ( 30 ) or the wind turbine blade ( 10 );

a measurement device implementing at least a contactless sensor ( 51 ) of at least a physical parameter of the blade external surface ( 19 ); and

a measurement processing device configured to establish a measured value map of the at least one parameter on the blade external surface ( 19 ) and to identify anomalies of said measured values map,

wherein the aerothermic device ( 40 ) is a heating or cooling device intended to modify the fluid temperature within the blade hollow volume ( 18 ) at a value different from the temperature at the blade outside,

wherein the measurement device provided with contactless sensors ( 51 ) implements a thermal camera measuring the temperature of the blade external surface ( 19 ), and

wherein the contactless measurement device ( 50 ) is fixed to an airborne platform ( 50 ) movable along the blade ( 10 ), near said blade.

11. The set including the wind turbine ( 100 ) and the NDT system according to claim 10 , wherein the airborne platform ( 50 ) is maintained in levitation by a drone or micro-drone with a rotary aerofoil ( 53 a ) and controlled in position relatively to the blade ( 10 ) to be checked.

12. The set including the wind turbine ( 100 ) and the NDT system according to claim 10 wherein the airborne platform ( 50 ) is maintained in levitation by a captive balloon ( 53 b ) lighter than the air and controlled in position relatively to the blade ( 10 ) to be checked.

13. A set including a wind turbine ( 100 ) and a NDT system for non destructive testing intended to check the structural integrity of a wind turbine blade ( 10 ), fixed to a turning shaft attached to a technical nacelle ( 30 ) located in an upper part of a carrying post ( 20 ) of the wind turbine ( 100 ) according to the process of claim 1 , said blade comprising a skin ( 13 ) determining a blade external surface ( 19 ) and a blade hollow volume ( 18 ), comprising:

an aerothermic device ( 40 ) intended to modify physical conditions of a fluid filling out the blade internal hollow volume ( 18 ) and implemented either in the technical nacelle ( 30 ) or the wind turbine blade ( 10 );

a contactless measurement device fixed remotely from the blade to be checked during the measurements and implementing at least a contactless sensor ( 51 ) of at least a physical parameter of the blade external surface ( 19 );

a measurement processing device configured to establish a measured value map of the at least one parameter on the blade external surface ( 19 ) and to identify anomalies of said measured values map,

wherein the aerothermic device ( 40 ) is a heating or cooling device intended to modify the fluid temperature within the blade hollow volume ( 18 ) at a value different from the temperature at the blade outside,

wherein the measurement device provided with contactless sensors ( 51 ) implements a thermal camera measuring the temperature of the blade external surface ( 19 ), and

wherein the contactless measurement device ( 50 ) is fixed on a robot movable along the blade ( 10 ) and bearing on said blade.

14. A set including a wind turbine ( 100 ) and a NDT system for non destructive testing intended to check the structural integrity of a wind turbine blade ( 10 ), fixed to a turning shaft attached to a technical nacelle 25 ( 30 ) located in an upper part of a carrying post ( 20 ) of the wind turbine ( 100 ) according to the process of claim 1 , said blade comprising a skin ( 13 ) determining a blade external surface ( 19 ) and a blade hollow volume ( 18 ), comprising:

an aerothermic device ( 40 ) intended to modify physical conditions of a fluid filling out the blade internal hollow volume ( 18 ) and implemented either in the technical nacelle ( 30 ) or the wind turbine blade ( 10 );

a contactless measurement device fixed remotely from the blade to be checked during the measurements and implementing at least a contactless sensor ( 51 ) of at least a physical parameter of the blade external surface ( 19 );

a measurement processing device configured to establish a measured value map of the at least one parameter on the blade external surface ( 19 ) and to identify anomalies of said measured values map; wherein the aerothermic device ( 40 ) is a heating or cooling device intended to modify the fluid temperature within the blade hollow volume ( 18 ) at a value different from the temperature at the blade outside,

wherein the measurement device provided with contactless sensors ( 51 ) implements a thermal camera measuring the temperature of the blade external surface ( 19 ), and wherein the contactless measurement device is movable along the blade ( 10 ) and the contactless sensor ( 51 ) is free of any physical contact with the blade ( 10 ).

Assignments (4)
CHANGE OF NAME Recorded Sep 7, 2018
From: AIRBUS SAFRAN LAUNCHERS SAS
To: ARIANEGROUP SAS
Reel/Frame 047570/0905 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 7, 2018
From: AIRBUS DEFENCE AND SPACE SAS
To: AIRBUS SAFRAN LAUNCHERS SAS
Reel/Frame 046809/0065 →
CHANGE OF NAME Recorded Sep 6, 2018
From: ASTRIUM SAS
To: AIRBUS DEFENCE AND SPACE SAS
Reel/Frame 047525/0499 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 23, 2013
From: BOUTEYRE, JACQUES; JOUAN, PASCAL
To: ASTRIUM SAS
Reel/Frame 030471/0956 →
Priority Claims (1)
FR 10 57827 · Sep 28, 2010 · national
Continuity (1)
Related Publication 20130235897A1 · Sep 12, 2013