Showing posts with label drill string. Show all posts
Showing posts with label drill string. Show all posts

Friday, February 18, 2011

Mud Density and Its Importances for The Drilling Operation

Mud weight or mud density is one of the important drilling fluid properties because it balances and controls formation pressure. Moreover, it also helps wellbore stability. Weight of drilling mud is measured and reported in pounds per gallon (PPG), pound per cubic feet (lb/cu.ft), or grams per milliliter (b/ml).

Mud density is normally measured by a conventional mud balance; however, if you have some air inside a fluid phase, reading from the conventional mud balance will give you an inaccurate number. Therefore, the most accurate method to measure the mud weight is with a pressurized mud balance.

The pressurized mud balance looks like the convention one, but it has a pressurized sample cup. When you press mud sample in the cup, any gas in fluid phase is compressed to very small volume so the mud weight measurement is more accurate.

What will be happened if there is insufficient drilling fluid density?
1. Well control - The well will be in an under balance condition so any formation fluids - gas, oil, and water- will enter into the wellbore.

2. Wellbore collapse (wellbore instability) - the wellbore will possibly become unstable, if the hydrostatic pressure provided by a mud column is below formation pressure.

What will be happened if the mud weight is too high?
1. Lost circulation - If the hydrostatic pressure from mud column exceeds formation strength, it will cause formation to break. Once the formation is broken, the drilling fluids will lose into the induced formation fractures.

2. Decrease in rate of penetration - The more density you have while drilling, the less ROP will be. Practically, while drilling, low mud weight is used at the beginning and weight will be increased as the well is drilled deeper in order to optimize ROP.

3. Stuck pipe - Since there are differences between the formation pressure and the hydrostatic pressure, there will be a lot of chances that a drill string will get differentially stuck across permeable rocks.

4. Formation damage - The more mud weight is in the well, the more mud filtration invades into porous formations. The invaded mud will cause damage to formation rocks. (ArticlesBase SC #3808190)

Saturday, February 12, 2011

What Is Directional Drilling And Why Is It Used?

Directional drilling is the practice of drilling non-vertical wells.  This was invented in the 1920s when it was originally used in the oil fields to increase oil production.  In the earlier 1990's the technology was adapted for utility installations. Directional bores have been installed for pipelines carrying things such as oil, natural gas, petrochemicals, water, sewerage and other products.  Besides crossing under highways, railroads, airport runways and areas with a lot of building congestion, installations have been made under rivers and waterways and protected wetlands.

There are three stages to go through when installing directional borings.  The first stage is called Pilot Hole.  A pilot hole is horizontal drilling that continues under and across an obstacle.  An electronic transmitter sends a signal to the surface which is read by the receiver.  This then transmits the information back to the drill rig operator.  The driller can then steer the bore path in any direction needed.

The second stage is called Pre-ream.  Once the pilot hole is complete, the hole must be enlarged to a suitable diameter to safely install the product lines.  This is accomplished by "pre-reaming" the hole to a larger diameter.  A reamer is pulled back and rotated while drilling fluid is pumped to cut and remove solids in the hole.  Usually, the reamer is attached to the drill string on the opposite end of the borehole and pulled back into the pilot hole.

Lastly, the third stage is called Pullback.  Once the drilled hole is enlarged, the conduit can be pulled through it.  A reamer is attached to the drill string and then connected to the product by a swivel.  The swivel allows the reamer to turn without turning the product with it.  The drilling rig then begins the pullback operation, rotating and pulling on the drill string as well as circulating the drilling fluids.

The use of directional drilling is growing rapidly and is expected to continue to grow in popularity in the future.
(ArticlesBase SC #3318825)

Seismic Energy Dissipation Devices

Seismic Energy Dissipation Devices