Cameron Ram-type Blowout Preventer (1922)
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Cameron Ram-type Blowout Preventer (1922)
The Cameron ram-type blowout preventer was the first successful blowout preventer (BOP) for oil wells. It was developed by James S. Abercrombie and Harry S. Cameron in 1922. The device was issued on January 12, 1926. The blowout preventer was designated as a Mechanical Engineering Landmark in 2003. History While drilling an oil or gas well, the top of the wellbore is lined with a casing. The drill string runs through the casing. The annular (ring-shaped) region between the casing and the drill stem is filled with drilling mud which provides hydrostatic pressure to keep the formation fluid from coming up the wellbore. If the pressure of the formation fluid exceeds the hydrostatic pressure of the drilling mud, the oil or gas can blow out of the wellbore. This has caused spills of large quantities of oil and fires on drilling rigs. The blowout of the Lucas well at the Spindletop field in 1901 lasted for over nine days and spilled over of oil. James Smither Abercrombie (1891–1975 ...
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Cameron Ram-type Blowout Preventer (1922)
The Cameron ram-type blowout preventer was the first successful blowout preventer (BOP) for oil wells. It was developed by James S. Abercrombie and Harry S. Cameron in 1922. The device was issued on January 12, 1926. The blowout preventer was designated as a Mechanical Engineering Landmark in 2003. History While drilling an oil or gas well, the top of the wellbore is lined with a casing. The drill string runs through the casing. The annular (ring-shaped) region between the casing and the drill stem is filled with drilling mud which provides hydrostatic pressure to keep the formation fluid from coming up the wellbore. If the pressure of the formation fluid exceeds the hydrostatic pressure of the drilling mud, the oil or gas can blow out of the wellbore. This has caused spills of large quantities of oil and fires on drilling rigs. The blowout of the Lucas well at the Spindletop field in 1901 lasted for over nine days and spilled over of oil. James Smither Abercrombie (1891–1975 ...
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Blowout (well Drilling)
A blowout is the uncontrolled release of crude oil and/or natural gas from an oil well or gas well after pressure control systems have failed.'All About Blowout', R. Westergaard, Norwegian Oil Review, 1987 Modern wells have blowout preventers intended to prevent such an occurrence. An accidental spark during a blowout can lead to a catastrophic oil or gas fire. Prior to the advent of pressure control equipment in the 1920s, the uncontrolled release of oil and gas from a well while drilling was common and was known as an oil gusher, gusher or wild well. History Gushers were an icon of oil exploration during the late 19th and early 20th centuries. During that era, the simple drilling techniques, such as cable-tool drilling, and the lack of blowout preventers meant that drillers could not control high-pressure reservoirs. When these high-pressure zones were breached, the oil or natural gas would travel up the well at a high rate, forcing out the drill string and creating a gus ...
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Drilling Technology
Drilling is a cutting process where a drill bit is spun to cut a hole of circular cross section (geometry), cross-section in solid materials. The drill bit is usually a rotary Cutting tool (machining), cutting tool, often multi-point. The bit is Pressure, pressed against the work-piece and rotated at rates from hundreds to thousands of revolutions per minute. This forces the cutting edge against the work-piece, cutting off Swarf, chips (swarf) from the hole as it is drilled. In Rock (geology), rock drilling, the hole is usually not made through a circular cutting motion, though the bit is usually rotated. Instead, the hole is usually made by hammering a drill bit into the hole with quickly repeated short movements. The hammering action can be performed from outside the hole (top-hammer drill) or within the hole (down-the-hole drill, DTH). Drills used for horizontal drilling are called drifter drills. In rare cases, specially-shaped bits are used to cut holes of non-circular cro ...
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Cameron Ram-type Blowout Preventer (1922) - Plan View
The Cameron ram-type blowout preventer was the first successful blowout preventer (BOP) for oil wells. It was developed by James S. Abercrombie and Harry S. Cameron in 1922. The device was issued on January 12, 1926. The blowout preventer was designated as a Mechanical Engineering Landmark in 2003. History While drilling an oil or gas well, the top of the wellbore is lined with a casing. The drill string runs through the casing. The annular (ring-shaped) region between the casing and the drill stem is filled with drilling mud which provides hydrostatic pressure to keep the formation fluid from coming up the wellbore. If the pressure of the formation fluid exceeds the hydrostatic pressure of the drilling mud, the oil or gas can blow out of the wellbore. This has caused spills of large quantities of oil and fires on drilling rigs. The blowout of the Lucas well at the Spindletop field in 1901 lasted for over nine days and spilled over of oil. James Smither Abercrombie (1891–1975 ...
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Cameron International Corporation
Cameron International Corporation (formerly Cooper Cameron Corporation (CCC) and Cooper Oil Tool, Cameron Iron Works) though now operating under Schlumberger, is a global provider of pressure control, production, processing, and flow control systems as well as project management and aftermarket services for the oil and gas and process industries. Cameron was acquired by Schlumberger (SLB) in 2016, and now operates as 'Cameron, a Schlumberger Company.' At the start of the SLB acquisition in 2015, Cameron employed approximately 23,000 people and delivered $9.8 billion in revenue. Organization Cameron's organization has changed throughout the years to adapt to the market. Currently, the main business lines (product groups) are: *''Drilling Systems'' manufactures pressure control equipment and provides aftermarket services for worldwide onshore, offshore and subsea oil & gas drilling and production operations. Also provides system design and project management services for world ...
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Cooper Industries
Cooper Industries was an American worldwide electrical products manufacturer headquartered in Houston, Texas. Founded in 1833, the company had seven operating divisions including Bussmann electrical and electronic fuses; Crouse-Hinds and CEAG explosion-proof electrical equipment; Halo and Metalux lighting fixtures; and Kyle and McGraw-Edison power systems products. In 2011, 59% of total sales were to customers in the industrial and utility end-markets and 40% of total sales were to customers outside the United States. Cooper has manufacturing facilities in 23 countries as of 2011. On November 26, 2012, it was announced that the company will be replaced in the S&P 500 index, since its takeover by Eaton Corporation. History Cooper Industries was founded in 1833 by brothers Charles and Elias Cooper. The company started as a foundry located in Mt. Vernon, Ohio and was initially called the C&E Cooper Company. Cooper's initial product offerings included plows, hog troughs, kettles ...
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Texas State Historical Association
The Texas State Historical Association (TSHA) is a non-profit educational organization, dedicated to documenting the history of Texas. It was founded in Austin, Texas, on March 2, 1897. , TSHA moved their offices from Austin to the University of North Texas in Denton. In 2015, the offices were relocated again, to the University of Texas at Austin. Overview The chief executive officer is Jesús F. de la Teja and the chief historian is Walter L. Buenger. The association president (2018-2019) is Sarita Hixon; the preceding president is (2017-2018) Paula Mitchell Marks. Other past presidents include Steve Cook (2016-2017), Lynn Denton (2015-2016), John L. Nau III (2014-2015), Gregg Cantrell (2013-2014), Watson Arnold (2012-2013), Merline Pitre (2011-2012), Dianne Garrett Powell (2010–2011) and Walter L. Buenger (2009-2010). Other past presidents are the late Robert A. Calvert (1989–1990) of Texas A&M, Alwyn Barr (1992-1993) of Texas Tech University, and Jerry D. Thompson (2001†...
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Handbook Of Texas Online
The ''Handbook of Texas'' is a comprehensive encyclopedia An encyclopedia (American English) or encyclopædia (British English) is a reference work or compendium providing summaries of knowledge either general or special to a particular field or discipline. Encyclopedias are divided into articles ... of Texas geography, history, and historical persons published by the Texas State Historical Association (TSHA). History The original ''Handbook'' was the brainchild of TSHA President Walter Prescott Webb of The University of Texas history department. It was published as a two-volume set in 1952, with a supplemental volume published in 1976. In 1996, the New Handbook of Texas was published, expanding the encyclopedia to six volumes and over 23,000 articles. In 1999, the Handbook of Texas Online went live with the complete text of the print edition, all corrections incorporated into the handbook's second printing, and about 400 articles not included in the print edition due ...
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Spindletop
Spindletop is an oil field located in the southern portion of Beaumont, Texas, in the United States. The Spindletop dome was derived from the Louann Salt evaporite layer of the Jurassic geologic period. On January 10, 1901, a well at Spindletop struck oil ("came in"). The Spindletop gusher blew for 9 days at a rate estimated at of oil per day., Texas State Historical Association Gulf Oil and Texaco, now part of Chevron Corporation, were formed to develop production at Spindletop. The Spindletop discovery led the United States into the oil age. Prior to Spindletop, oil was primarily used for lighting and as a lubricant. Because of the quantity of oil discovered, burning petroleum as a fuel for mass consumption suddenly became economically feasible. The frenzy of oil exploration and the economic development it generated in the state became known as the Texas oil boom. The United States soon became the world's leading oil producer. __TOC__ History Pattillo Higgins sought a so ...
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Formation Fluid
Formation fluid refers to the naturally occurring liquids and gases contained in geologic formations. Fluids introduced during the drilling process are called drilling fluids. Fluids in an oil or gas reservoir are called reservoir fluids. The fluids flowing from the wellhead of an oil or gas well are called production fluid Production fluid is the fluid mixture of oil, gas and water in formation fluid that flows to the surface of an oil well from a reservoir. Its consistency and composition varies. Fluids may be described by a multitude of characteristics including ...s. References Oilfield terminology {{geology-stub ...
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Blowout Preventer
A blowout preventer (BOP) (pronounced B-O-P, not "bop") is a specialized valve or similar mechanical device, used to seal, control and monitor oil and gas wells to prevent blowouts, the uncontrolled release of crude oil or natural gas from a well. They are usually installed in stacks of other valves. Blowout preventers were developed to cope with extreme erratic pressures and uncontrolled flow ( formation kick) emanating from a well reservoir during drilling. Kicks can lead to a potentially catastrophic event known as a blowout. In addition to controlling the downhole (occurring in the drilled hole) pressure and the flow of oil and gas, blowout preventers are intended to prevent tubing (e.g. drill pipe and well casing), tools and drilling fluid from being blown out of the wellbore (also known as bore hole, the hole leading to the reservoir) when a blowout threatens. Blowout preventers are critical to the safety of crew, rig (the equipment system used to drill a wellbore) ...
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Drilling Mud
In geotechnical engineering, drilling fluid, also called drilling mud, is used to aid the drilling of boreholes into the earth. Often used while drilling oil and natural gas wells and on exploration drilling rigs, drilling fluids are also used for much simpler boreholes, such as water wells. One of the functions of drilling mud is to carry cuttings out of the hole. The three main categories of drilling fluids are: water-based muds (WBs), which can be dispersed and non-dispersed; non-aqueous muds, usually called oil-based muds (OBs); and gaseous drilling fluid, in which a wide range of gases can be used. Along with their formatives, these are used along with appropriate polymer and clay additives for drilling various oil and gas formations. The main functions of drilling fluids include providing hydrostatic pressure to prevent formation fluids from entering into the well bore, keeping the drill bit cool and clean during drilling, carrying out drill cuttings, and suspending t ...
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