June 03, 2024 11:50 ET | Source: Precedence Research Precedence Research
Ottawa, June 03, 2024 (GLOBE NEWSWIRE) -- According to Precedence Research, the global drilling fluids market size surpassed USD 8.99 billion in 2023 and is anticipated to reach around USD 13.95 billion in 2032. The drilling fluids market is driven by rising environmental concerns, innovative technologies, and government initiatives. wellbore clean
The drilling fluids market encompasses the production, distribution, and application of fluids used in the drilling process for oil and gas exploration and extraction. Drilling fluid, commonly known as drilling mud, is used to drill boreholes for oil, gas, and water wells. There are two types of mud: water-based (WB) and non-aqueous (OB).
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WBs are made of bentonite clay and additives such as barium sulfate and calcium carbonate, whereas OBs use petroleum-based fluids for improved lubricity, shale restriction, and cleaning capabilities. Different drilling fluids are utilized in different portions of the hole, including air, air/polymer, air/water, and water. Synthetic-based fluids, often known as low-toxicity oil-based mud, are utilized on offshore rigs because they are less harmful.
Drilling Fluids Market Key Insights
U.S. Drilling Fluids Market Size and Growth 2024 to 2033
The U.S. drilling fluids market size accounted for USD 1.77 billion in 2024 and is estimated to hit around USD 2.93 billion by 2033, growing at a CAGR of 5.76% from 2024 to 2033.
North America dominated the drilling fluids market in 2023. The U.S. is a significant contributor to the global market for drilling and completion fluids. Upstream oil and gas activity has transitioned to shell deposits, with tight oil and dry gas from shale sources accounting for a major share of total crude oil and natural gas output, respectively. This output increase necessitates more wells per hectare than conventional oil fields, increasing demand for drilling fluid across the country. The growing number of horizontal wells is likely to drive up demand for these fluids.
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Asia Pacific is predicted to grow at the fastest CAGR during the forecast period as demand for oil rises and new oil and gas sources are discovered. As one of the world's top oil importers, the area is seeing a surge in deep-water and ultra-deep-water drilling. Notable finds include MBS171HAA-1 "Amrit" in Mumbai, Arabian Sea, and MB-SHDA-1.
According to the ONGC Director (Exploration), the company has made successive fresh discoveries in the OALP blocks, reiterating its commitment to unlocking India's hydrocarbon resources and accumulating reserves, hence boosting the country's energy security. These repeated finds are aiding regional drilling fluids market expansion.
Scope of Drilling Fluids Market
The onshore segment dominated the drilling fluids market in 2023.
Onshore drilling is the process of drilling oil or gas wells on land instead of offshore or undersea areas. Drilling rigs, as well as equipment, are set up to drill vertically into subsurface reservoirs, allowing rich energy resources to be extracted under the Earth's surface. When compared to offshore drilling, onshore drilling has several advantages, including quicker access to equipment, fewer operational costs, and lower environmental dangers. It also enables easier logistics, shorter transit distances, and fewer onerous regulatory requirements.
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The water-based fluids segment dominated the drilling fluids market in 2023. Water-based drilling fluids (WBM) are becoming more popular in high-temperature, high-pressure (HTHP) wells due to ecological and economic considerations. Dispersed water-based fluids are popular and cost-effective, making them ideal for HTHP situations. Water-based fluids also aid in counteracting shale swelling and fracturing during drilling, as they have a consistent point of yield and gel strength throughout a wide temperature range. They feature shear thinning capabilities, high-temperature resistance, greater fluid loss control, better hole cleaning, and well-tube stability.
The synthetic-based fluids segment is expected to grow at the fastest rate during the forecast period. Synthetic-based drilling mud (SBM), also known as low-toxicity oil-based mud (LTOBM), is an inversion emulsion mud that contains synthetic oil as its exterior phase. SBM's environmental appeal and outstanding performance make it an economically viable option for offshore drilling. SBM's rapid penetration rate and reduced mud-related inactivity make it an inexpensive alternative. SBM, like oil-based muds, can improve penetration rate, promote lubricity in wells, and minimize wellbore instability. It performs similarly to mineral oil and diesel-based fluids.
In recent years, there has been an increased emphasis on developing drilling fluids that are both ecologically friendly and sustainable. Traditional drilling fluids typically contain additives and chemicals that, if not managed properly, can pollute the environment. However, developments in formulation methods have resulted in the creation of sustainable substitutes that are non-toxic, biodegradable, and emit minimal levels of pollutants. These new fluids not only decrease the environmental effect of drilling operations, but they also follow tight regulations, lowering both legal and reputational concerns for operators.
The use of bio-based additives derived from renewable resources, such as microbial enzymes, plant extracts, and biopolymers, is also considered a superior alternative. These additives have various advantages over their synthetic equivalents, including greater biodegradability, less toxicity, and enhanced performance. These additives also contribute to the industry's efforts to reduce reliance on fossil fuels and mitigate carbon emissions.
Loss of circulation due to heavy drilling fluids
Lost circulation is the loss of mud into a formation caused by a variety of events, such as drilling with heavy mud loads or surging the formation. This can result in fracture pressure concerns, clogged pipes, well control challenges, and even damage to the manufacturing zone. To avoid mud losses, drilling procedures should be designed around assessing data from offset wells to determine the necessary mud weight. Lost circulation material (LCM) can be employed frequently in the working system while drilling across probably lost circulation strata, and it can be pumped with drilling fluids without changing their rheology or other predetermined qualities.
Nanoparticles are transforming drilling fluid technology by providing several advantages such as decreased formation damage, cost savings, fluid loss management, hazard elimination, enhanced lubrication, heat transfer, and rheological qualities. Polymeric nanoparticles, such as TiO2/PAM, have been successfully studied for application in WB drilling fluid systems, whereas ceramic nanoparticles, which have great temperature resistance and chemical inertness, are employed in imaging, drug administration, photodegradation, and photocatalysis.
Incorporating aluminum, magnesium, and silica nanoparticles into WB drilling fluids has enhanced filtration and rheological and thermal properties. Silica nanoparticles have also been investigated for their mechanical properties in drilling fluids. Overall, nanoparticles have the potential to transform the drilling fluids market.
Drilling Fluids Market Top Companies
Segments Covered in the Report
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