Customization: | Available |
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Type: | Wireline Drill Rod |
Usage: | Core Drilling |
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Wireline drilling pipe, also known as wireline drill rods, is a specialized type of drilling equipment used in the drilling industry for various applications, including mineral exploration, geological surveys, and environmental monitoring. Here are some key points about wireline drilling pipe:
Purpose and Function: Wireline drilling pipe is primarily used for core drilling, where the objective is to extract cylindrical samples of the subsurface. The pipe serves as a conduit for the drill bit and the retrieval of the core sample. Unlike conventional drill rods, wireline drill pipe allows for the retrieval of the core sample without removing the entire drill string from the borehole. This feature enables efficient and continuous drilling operations.
Design and Construction: Wireline drill pipe is typically made of high-strength steel alloy to withstand the rigors of drilling. The pipe is designed to be lightweight yet durable, allowing for easy handling and transportation. It consists of several sections, each connected by threaded couplings or rod joints. The pipe sections are generally thinner and longer compared to conventional drill rods to facilitate the retrieval of the core sample.
Wireline System: Wireline drilling pipe is an integral part of a wireline drilling system, which includes additional components such as the wireline winch, wireline cable, and the wireline core barrel. The wireline winch is used to raise and lower the drill string, while the wireline cable provides the necessary strength and flexibility to transmit power and data between the surface and the downhole tools.
Core Barrel Assembly: At the bottom end of the wireline drill pipe, a core barrel assembly is attached. The core barrel is a specialized tool that houses the core bit and collects the core sample during drilling. It typically consists of an inner tube, overshot assembly, and a core lifter. The inner tube houses the core sample and protects it during retrieval. The overshot assembly engages the core bit and allows for the retrieval of the core sample. The core lifter ensures that the core sample remains intact during the extraction process.
Wireline Coring Process: The wireline coring process involves the following steps:
Advantages of Wireline Drilling: Wireline drilling offers several advantages over conventional drilling methods:
Continuous Sampling: Wireline drilling allows for continuous sampling of the subsurface without interrupting the drilling process. This enables efficient and rapid data acquisition, especially in applications where a high volume of core samples is required.
Minimal Waste: With wireline drilling, only the core sample needs to be extracted, resulting in minimal waste material. This is particularly beneficial in environmentally sensitive areas or projects where waste disposal is a concern.
Reduced Downtime: The ability to retrieve core samples without removing the entire drill string from the borehole reduces downtime and improves drilling efficiency. It eliminates the need for tripping out the entire drill string after each core sample extraction.
High-Quality Core Samples: Wireline drilling provides high-quality core samples due to the continuous extraction process. The core samples are generally less fragmented and better preserved, allowing for accurate analysis and interpretation.
Wireline drilling pipe is a specialized tool that plays a crucial role in core drilling operations. Its design, along with the wireline system and core barrel assembly, enables efficient and continuous extraction of core samples. By utilizing wireline drilling pipe, drilling professionals can obtain high-quality subsurface samples for geological analysis, mineral exploration, and other scientific and engineering purposes.
Parameter table
Size | Outer Diameter (mm) | Inner Diameter(mm) |
AQ | 44.7 | 37.3 |
BQ | 55.7 | 46.1 |
NQ | 70.0 | 60.2 |
HQ | 89.0 | 78.0 |
PQ(PHD) | 114.5 | 101.5 |
BTW | 56.3 | 48.0 |
NTW | 73.3 | 64.0 |
HTW | 91.3 | 81.0 |
AW/AWJ/AWY | 43.7 | 30.7 |
BW/BWJ/BWY | 54.0 | 38.0 |
NW/NWY | 66.8 | 51.0 |
HW | 89.0 | 71.0 |
42mm | 42.0 | 30.0 |
50mm | 50.0 | 37.0 |
60mm | 60.0 | 48.0 |
70mm | 73.0 | 54.6 |
90mm | 89.0 | 69.0 |
S75A | 71.0 | 60.0 |
S95A | 89.0 | 78.0 |
S110 | 110.0 | 98.0 |
S130 | 129.0 | 117.0 |
Name: | Wireline Drill Rod |
Product Basic parameters | |
Model: | AQ,BQ,LTK48,NQ,NQ3,HQ,HQ3,PQ,PQ3 NTW, BTW, HTW |
Material: | Alloy Steel Tubing |
Dimensions: | 0.5,1m, 1.5m, 2m,2.5,3m length or customized |
Color: | Black or customized |
Applications: | Drilling Tools |
Standard: | ISO-9001 |
Application: | Mining or geological Drilling |
Rod Model | OD (mm) | ID (mm) | Thread Pitch(mm) | Pin Length(mm) | Rod Length(m) | Unit Bundle Qty (pcs) |
BAU(Q) | 55.6 | 46.1 | 8.5 | 44.5 | 3 | 19/25/30 |
NAU(Q) | 69.9 | 60.3 | 8.5 | 44.45 | 3 | 19/25/30 |
HAU(Q) | 88.9 | 77.8 | 8.5 | 44.45 | 3 | 19/25/30 |
BRAU(RQ) | 55.6 | 46.1 | 8.5 | 42 | 3 | 19/25/30 |
NRAU(RQ) | 69.6 | 60.3 | 8.5 | 42 | 3 | 19/25/30 |
HRAU(RQ) | 88.9 | 77.8 | 8.5 | 42 | 3 | 19/25/30 |
PHD | 114 | 102 | 10.2 | 63 | 3 | 79/25/30 |
FAQ:
Q1: What is the difference between straight and directional drilling?
A: Straight drilling involves drilling vertically downwards, while directional drilling refers to drilling deviated wellbores at an angle or horizontally using specialized BHA tools and steering techniques.
Q2: Why is drilling mud weight important?
A: Correct mud weight is needed to balance downhole pressure and prevent underground kicks, blowouts or lost circulation incidents. Proper monitoring and adjustment is critical for well integrity and safety.
Q3: What is the purpose of blowout preventers (BOP)?
A: BOP stacks installed at wellhead provide emergency well control in events like kicks to prevent blowouts at surface. Components like pipe rams can quickly seal around drill pipe or the open annulus.
Q4: What is underreaming and when is it used?
A: Underreaming enlarges the wellbore below restrictions to prevent stuck pipe when tripping through. Expandable reamers cut an eccentric widened hole to facilitate running liners/casing safely through tight zones.
Q5: What types of downhole motors are commonly used?
A: Positive displacement motors or turbines powered by drilling fluid generate bit rotation for applications like MWD, LWD, directional drilling with rotary steerable systems or coiled tubing drilling operations.
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