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Showing posts with label semi-submersible. Show all posts
Showing posts with label semi-submersible. Show all posts

Wednesday, April 13, 2011

Pemex Evacuates 638 Workers from Leaning Dorm Platform

Pemex Evacuates 638 Workers from Leaning Dorm Platform

Wednesday, April 13, 2011
Dow Jones Newswires
by Laurence Iliff

Pemex said Tuesday it evacuated 638 workers from a semi-submersible dormitory platform after it began to lean to one side when water entered a pontoon.

Pemex said in a statement there were no injuries as a result of the sudden inclination of the Flotel Jupiter platform housing the workers about 80 kilometers (48 miles) off the coast of Ciudad de Carmen, Campeche state.

Since the platform is used only for housing and not for production, Pemex added, the morning incident didn't cause any leakage of hydrocarbons. "Pemex reiterates that neither production nor other activities in the area were affected," the statement said.

Leaning Flotel Jupiter Platform

Since the platform is used only for housing and not for production, Pemex added, the morning incident didn't cause any leakage of hydrocarbons. "Pemex reiterates that neither production nor other activities in the area were affected," the statement said.

The evacuated workers, Pemex said, were taken by transport ships to the Abkatun-Alfa platform. Divers were sealing the affected pontoon on the Jupiter and Pemex said it expected the platform to be stabilized shortly and moved to an inspection area.

Atlantic to Farm-In to Orchid Prospect

Atlantic to Farm-In to Orchid Prospect

Wednesday, April 13, 2011
P/F Atlantic Petroleum


Atlantic Petroleum has reached an agreement to acquire a 10% stake in P.1556, Block 29/1c containing the Orchid Prospect from Summit Petroleum in return for carrying a share of the cost of the initial exploration well.

The Orchid Prospect is a four-way dip closure in the Tertiary and Chalk and is located in the Central North Sea surrounded by the producing Banff, Kyle, Bittern and Gannet fields. The Orchid prospect is located close to acreage awarded to Atlantic Petroleum in the 26th Round.

Summit, the operator, is currently seeking a semi-submersible rig to drill the prospect in the second half of this year.

Ben Arabo, CEO, commented, "This is an important addition to our 2011 program. We are pleased to join Summit in the Central North Sea which is an area of growth for Atlantic Petroleum. We look forward to working with this new partner group on the Orchid project."

Friday, April 8, 2011

Seadrill Semisub Finally Heads West

Seadrill Semisub Finally Heads West

Friday, April 08, 2011
Seadrill Ltd.
Seadrill has through its affiliate Sea Dragon de Mexico settled the final agreement with Pemex for the provision of the ultra-deepwater semi-submersible drilling rig West Pegasus (previously Seadragon I). The five-year assignment in Mexico has a fixed operating dayrate for the first two years, and the dayrate will be adjusted annually thereafter based on market conditions. Estimated contract value is approximately US $850 million (excluding mobilization fee) assuming a constant dayrate over the five year term.

West Pegasus was recently delivered from the Jurong Shipyard in Singapore and proceeded for mobilization to Mexico on April 1. Commencement of operations is scheduled for the third quarter 2011.

Alf C Thorkildsen, Chief Executive Officer of Seadrill Management said, "This is Seadrill's first assignment for Pemex, and it presents an exciting opportunity to develop a strong relationship with one of the largest national oil companies in the world, as well as strengthening our position in the Gulf of Mexico. This contract further underlines the value of our recent acquisition of the Seadragon units, adding significant earnings visibility at what we believe is competitive terms and conditions."

Thursday, March 31, 2011

BP Spill Study Says BOP Needs Further Work

BP Spill Study Says BOP Needs Further Work

Thursday, March 31, 2011
Parks Paton Hoepfl & Brown
by  G. Allen Brooks



Last week, the results were released from the forensic study of the blowout preventer (BOP) used on BP Ltd.’s (BP-NYSE) Macondo well in the Gulf of Mexico that blew out last year causing an explosion, fire and eventual sinking of the Deepwater Horizon semi-submersible drilling rig and this nation’s greatest offshore environmental accident.

Den Norske Veritas (DNV), the Norwegian engineering and risk-management firm hired by the U.S. Department of the Interior to assess the BOP and determine its role in last year’s Deepwater Horizon disaster, after examining and testing the unit recovered from the ocean floor, prepared a 200-page report with a 351-page appendix.

The inspectors’ conclusion was that the shear ram valves in the BOP were unable to fully sever the drillpipe as the unit is designed to do because the pipe inside buckled from the well’s initial blow-out and was out of alignment that prevented complete closure.

DNV found that the shear rams had closed to within 1.4 inches.  This gap, albeit small, provided sufficient room for an estimated 4.9 million barrels of oil to escape.

While the report details the failure, the conclusions confirm the early belief of many drilling engineers consulted about the disaster.

The inability of the shear rams to cut the pipe because of it being off center highlight potential problems for companies drilling over-pressured wells.

The buckling of the pipe was due to the high pressure fluids roaring up the drilling pipe and annulus lifting the pipe until it hit an obstacle.  At that point, the momentum of the pipe and pressures and heat of the flows resulted in its bending.

Exhibit 10.  Why BP’s Macondo Well Spilled Oil
Why BP’s Macondo Well Spilled Oil
Source:  The Wall Street Journal

The report quickly generated further criticism of the offshore oil and gas industry and its safety procedures in drilling deepwater wells that tend to exhibit high formation pressures.

All facets of the oil and oilfield service industry involved in drilling these wells is working on ways to improve the performance of the drilling and safety equipment, especially the BOP.

There still remain unanswered questions about what actually caused the well to blow out and there will be more information and hypotheses presented down the road, but the DNV report was the last major report on the equipment involved in the accident.

The belief of most observers is that the Deepwater Horizon disaster was the result of a confluence of questionable decisions and actions by all parties involved that resulted in the creation of an unbalanced pressure differential between the downhole formation and the equipment designed to hold back that pressure.

Criticism of the DNV report came immediately from political opponents of offshore drilling including Rep. Edward Markey (D., Mass.) who said, “This report calls into question whether oil-industry claims about the effectiveness of blowout preventers are just a bunch of hot air.”  The man responsible for overseeing U.S. offshore drilling rules until he retired in 2009, Elmer Danenberger III, was quoted by The Wall Street Journal as saying, “They have to rethink the whole design,” meaning the BOP.

The DNV report concluded that the BOP failure was due to a design flaw and not the operation, abuse or maintenance of the BOP by the companies involved in drilling the Macondo well.

The BOP in question was manufactured by Cameron International (CAM-NYSE), the leading provider to the drilling industry of such units for over 90 years.  The BOP has been the industry’s last and best defense against well pressures, which often came as a result of encountering pockets of higher-pressured natural gas at shallower depths while drilling a well.  In fact, the BOP that became the signature product for Cameron was developed in response to several high-pressure well workover accidents in 1922.

The co-founder and majority owner of then Cameron Iron Works, James Abercrombie, was also a successful contract driller with a history of putting out well fires and blow-outs, long before Red Adair made the occupation of fire-fighting glamorous.

In late 1921, Mr. Abercrombie secured a contract to work over a troublesome well in the Hull field in Liberty County, northeast of Houston.  This was a field with many small pockets of high pressured gas.  In the course of working over wells in this field, Mr. Abercrombie’s company had lost its newest and best rig and had encountered three blowouts.

While each of the blowouts resulted in lost equipment, fortunately no one was hurt.

The episode, however, focused Mr. Abercrombie on ways to design equipment that could be used to prevent wells from blowing out.

Originally, he had used an elementary blowout preventer called a “boll weevil.”  It was essentially a piece of heavy-gauge pipe surrounded by a thick lead casing.  There was stopcock on top of the arrangement.  If it was suspected that a well might blowout, the unit was slipped over the well’s casing and the stopcock closed.  The unit proved impractical as a well containment device but mainly it was used to try to give the drilling workers time to get away from the rig before the well blew.

There was another preventer on the market designed to improve on the “boll weevil” and Mr. Abercrombie purchased one of them to use on his next well workover in the Hull field.  Unfortunately it, too, failed to prevent another blowout.  Mr. Abercrombie came up with the idea of a ram-type preventer with the faces of the rams closing in on the drillpipe in order to close off the pressure in the well.  With a sketch of the concept, Mr. Abercrombie went to his co-founder and partner, Henry Cameron, the next morning and sketched out his concept in the sawdust and dirt of the machine shop’s floor.  With a casting produced by Howard Hughes’ nearby shop, Mr. Cameron machined the design.

A patent application was filed on April 14, 1922, but patent number 1,569,247 was not issued until January 12, 1926.

As the unit was tested it was discovered that it leaked when pressure increased.  Mr. Cameron designed a fix whereby the increasing pressure would force open a notch in the corner of the ram face and force it to close tighter.  Patent number 1,498,610 was issued as a modification to the original BOP design but before the original patent was even granted.

By adding steel and cast iron parts to the BOP and being able to guarantee the unit would work to shut off 2,000 pounds of flowing pressure, the orders started coming in, not only from domestic companies in Texas, Louisiana and California, but also for use in foreign locations such as Mexico and Venezuela.  The Cameron Iron Works company was on its way to a glorious history that continues today.  [Much of this history about Cameron comes from the book, Mr. Jim, by Patrick J. Nicholson.]

We have high confidence that the engineers in the drilling business will figure out how to improve the performance and safety of the drilling process, just as they have for the past 150+ years.  Well control episodes have occurred throughout the history of the petroleum industry.  The Deepwater Horizon was the latest and most devastating, both due to the loss of 11 lives and the environmental damage to the Gulf of Mexico from the oil spill.

The evidence from the investigations of the disaster continues to show the Macondo well blowout was an accident.  All aspects of our daily lives, including the energy, involve risks.  We need to better understand the risks and their potential ramifications.  Importantly, we need to keep a perspective on risk and our risk tolerance.  We don’t stop driving after a car accident.  We don’t stop flying after a plane accident.  We shouldn’t stop drilling after a drilling accident.

Statoil Allows Extra Time for Tenderers to Mature

Statoil Allows Extra Time for Tenderers to Mature

Thursday, March 31, 2011
Statoil
Statoil has decided to allow more time for the tenderers to mature their respective category B rig concepts, which includes an extended front end engineering and design (FEED) phase. The planned award date is set for the fourth quarter of 2011.

Statoil has had an ongoing tender process for the new category B rig type – a semi-submersible designed and equipped for subsea well intervention. The rig will be a highly anticipated contribution to the rig fleet on the Norwegian continental shelf (NCS).
"The decision to allow more time to mature category B is motivated by input from the bidders. We see that an integration of additional services, combined with more time for an in-depth FEED phase, can improve the robustness of the concept," said Statoil's chief procurement officer, Jon Arnt Jacobsen.

"In reality, this is to be regarded as an extension of the bidding process where we according to plan will be able to award the final contract within 2011. Expected delivery from the yard should take place in 2014," Jacobsen added.

The design of the category B service unit is based on the bidders own FEEDs. The rig is designed for year-round well intervention operations for Statoil, providing a full range of heavy well intervention and light drilling techniques – including through-tubing rotary drilling (TTRD), wireline, coil tubing, high pressure pumping and cementing. Statoil is asking for a minimum of one rig of this type for work on the NCS.

"Traditional drilling rigs are not efficient enough for well intervention purposes, so Statoil has developed a new rig type for well intervention in collaboration with industry partners. This rig type will close the gap between light intervention vessels and conventional drilling units. The category B rig with its integrated service lines is expected to reduce well intervention operations costs by up to 40%," Jacobsen said.

The key to maintaining the current production level on the NCS through 2020 is increased recovery from existing fields and fast and effective development of new fields. It is becoming more important to increase drilling activity in mature fields to attain the full potential of the NCS.

"Improved subsea well intervention methods are making vital contributions to increased recovery. Increased recovery is one of the most important contributions to keep up current production level at the Norwegian continental shelf," says Knut Gjertsen, responsible for Operations North field development.

Tuesday, March 29, 2011

Antrim Inks Rig, Services Contract for Greater Fyne Area

Antrim Inks Rig, Services Contract for Greater Fyne Area

Tuesday, March 29, 2011
Antrim Energy Inc.
Antrim has signed a Letter of Award with AGR Peak Well Management Limited ("AGR") to provide well project management and drilling services, including the provision of the semi-submersible drilling rig, WilPhoenix, for the drilling of two wells within the Greater Fyne Area, in the UK Central North Sea. The estimated duration for the drilling of the two wells is 50 days, not including testing. A site survey of both locations will be initiated in the next three weeks. Both wells are scheduled to be drilled mid year 2011.

The first well will target the Jurassic Fulmar Formation at approximately 10,400 ft true vertical depth (TVD) on the West Teal Prospect, Block 21/24b (Antrim 100%). The West Teal Prospect has a light oil target (37 degrees API) delineated by 3-D seismic and a previous discovery well drilled in 1991. The original discovery well encountered a gross oil column up to 140 ft thick in the Fulmar Formation but was abandoned after mechanical problems while conducting a cased hole test. The West Teal Prospect is structurally up dip and approximately 4 km west of the Teal Field, which has produced approximately 55 million barrels of oil to date.

The second well is expected to target the Eocene Tay Formation at a depth of approximately 6,000 ft on the Carra Prospect, Block 21/28b (Antrim 100%). The Carra Prospect is a medium gravity target (25 degrees API) delineated by 3-D seismic, on trend and 4 km from the West Guillemot Field. If successful, a discovery on either of these prospects would add significant resources to the scheduled development of the Fyne Field, located 3 km to the northwest of Carra.

Antrim intends to use the proceeds from its recent equity issue to fund the drilling program but will also invite participation from industry partners.