turbinas de perforacion

21
1 The Turbodrill - An introduction

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Turbines technical Data

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Page 1: Turbinas de perforacion

1

The Turbodrill -

An introduction

Page 2: Turbinas de perforacion

2

Typical Steerable Turbine

Page 3: Turbinas de perforacion

3

Forces and Load Support

Page 4: Turbinas de perforacion

4

Moving Disc

Fixed Disc

Moving Disc

Spacer Front Bearing

Labyrinth

Thrust Bearing

Flexible Shaft

Bent Housing

Front Bearing Stabiliser

Bit Box Stabiliser

Turbodrill Bearing Section

Thrust Bearing Components

Page 5: Turbinas de perforacion

5

PDC Thrust Bearing

( …or, animated…….)

Page 6: Turbinas de perforacion

6

Turbodrill features…

Page 7: Turbinas de perforacion

7

Leakage Flow Exits to Annulus

Turbine Shaft

Pressure Equalising Leakage Flow

Micro Annulus

Balance Drum

Housing

Main Mud Flow into Turbodrill

Balance Drum Assembly

Motor Section

Main Flow to Motor Section

Turbodrill Balance Drum Assembly

Page 8: Turbinas de perforacion

8

Downhole motors: Turbodrill competitors…

Page 9: Turbinas de perforacion

9

Turbodrill and PDM Drive Function

Page 10: Turbinas de perforacion

10

PDM Main Technical Features

• Torque / Speed range defined by lobe ratio• Slow enough for tricone bits• Torque variable via WOB• Low pressure demand on rig pumps – 150 psi per stage• Most technology available “over the counter”• Relatively easy to build adequate tool.

But… . . .

Page 11: Turbinas de perforacion

11

PDM Main Technical Features, continued

But… . . .

• Motor section limits life and power• Significantly affected by temperature• Readily damaged by stalling• Hydraulic noise, poor radial balance affects MWD

Page 12: Turbinas de perforacion

12

Turbodrill Technical Features

• Very high power potential• Intrinsically reliable / Long Life• Near perfect radial balance• No reliance on elastomers for power I.e. heat-proof• Fluid coupling effect.

But… . . .

Page 13: Turbinas de perforacion

13

Turbodrill Technical Features, continued

But… . . .

• Speeds too high for tricone bits• High power output - at expense of flow rate • Little application in top hole?• Building a viable and reliable turbodrill is difficult.

Page 14: Turbinas de perforacion

14

PUMP PRESSURE DISTRIBUTION12-14" HOLE SECTION

0

500

1000

1500

2000

2500

3000

3500

4000

4500

500 550 600 650 700 750 800 850 900 950

FLOW RATE (GPM)

PRES

SUR

E (P

SI)

Available For TurbineParasitic Losses

Following On…..

Page 15: Turbinas de perforacion

15

Turbodrill & PDM . . . .

. . . .What’s the difference?

Page 16: Turbinas de perforacion

16

Well bore quality

Page 17: Turbinas de perforacion

17Borehole Image with typical profile

generated by PDM + RockbitBorehole Image with typical profile

generated by Turbine + long gauge bit

Reduced hole spiralling effects & smoother well bore.(Hole spiralling negatively impacts measurements, mud, cement, casing running, etc.)- data from image tools would indicate less spiralling than competitors (primarily PDM’s + Rock BIts)

Well bore quality: smooth ? …

Page 18: Turbinas de perforacion

18

Well bore quality: Hole Spiralling 1…

Page 19: Turbinas de perforacion

19

Well bore quality: Hole Spiralling 2…

Page 20: Turbinas de perforacion

20

Well bore quality: Hole Spiralling problems…

Page 21: Turbinas de perforacion

21

LONG GAUGE PIN CONNECTION.

NEAR BIT STABILISER.

BOTTOM BEARINGSTABILISER

BOX END SHAFT

LONG GAUGE PIN CONNECTION.

SHORT GAUGE PIN CONNECTION

BOX END SHAFT

BIT BOXSTABILISER

BOTTOM BEARINGSTABILISER

BOTTOM BEARINGSTABILISER

BOX-UPLONG GAUGE BIT.

BOTTOM BEARINGSTABILISER

4.6Ft *

2.6Ft *

2.2Ft*

1.4Ft*

(* typical- may vary)