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Showing posts with label design. Show all posts
Showing posts with label design. Show all posts

Monday, August 22, 2011

Honda Civic Design Faults Hurt Its Reputation

- Honda Civic Design Faults Hurt Its Reputation



Aug 22, 2011

Honda (NYSE:HMC) may be a leading manufacturer but its design problems are hurting its reputation. That is evidenced by Consumer Reports decision to pan the Civic, a long time favorite.

Jim Hall, who runs an automotive consulting firm AutoPacific Group, "Customers don't care about how the cars are made. They care how they drive and how they look. If you are doing an exceptional job building a mediocre product, that impresses the industry but not the buyer."

Honda Motor (NYSE:HMC) has a potential upside of 49.7% based on a current price of $30.86 and an average consensus analyst price target of $46.2.

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Wednesday, July 6, 2011

Facebook Officially Announces Partnership with Skype

- Facebook Officially Announces Partnership with Skype



Jul 6, 2011

Facebook CEO, Mark Zuckerberg announced today at its company's headquarters in Palo Alto, CA the new features of Facebook which will include group chat and video chat run by Skype.

During the press conference, Facebook's Product Manager Peter Deng discussed group chat that will have a "Add friends to chat" feature to traditional chat. He also demoed the new Facebook design that will get hold of your account and browser size and a streamlined contacts bar to the right of your page. The video chat feature was demonstrated by a Facebook team member in Seattle.

Afterwards, Mark Zuckerberg invited the CEO of Skype, Tony Bates, onstage where he said, "Skype's mission has really been to make communications as pervasive as possible."

Zuckerberg also confirmed that Facebook now 750 million users.

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Wednesday, June 15, 2011

AMEC to Design, Deliver Expansion in MWCC's Containment System

- AMEC to Design, Deliver Expansion in MWCC's Containment System

Wednesday, June 15, 2011
AMEC plc

AMEC has been selected by the Marine Well Containment Company (MWCC) to design and deliver components of MWCC's expanded containment system.

"I am pleased that AMEC's track record of excellent execution, particularly of complex and challenging projects, has gained this recognition," said Simon Naylor, president of AMEC's Natural Resources Americas business. "This project is of significance to the reputation and future of our industry and it is a testament to our people that we have been given the responsibility to deliver a significant part of it."

AMEC's role covers project management, engineering, fabrication, integration, and commissioning of modular equipment to be utilized by the capture vessels of the Marine Well Containment System. AMEC's recent acquisition, qedi, will be supporting AMEC on the integrated completions and commissioning services. When completed, the modular assemblies will be stored and maintained at permanent shore base locations.

The expanded containment system, scheduled for delivery in 2012, is designed to operate in up to 10,000 feet of water in the Gulf of Mexico, and capture up to 100,000 barrels of fluid and 200 million cubic feet of gas per day.

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Wednesday, June 1, 2011

KBR Clinches Engineering Design Services Contract in AU

- KBR Clinches Engineering Design Services Contract in AU

Wednesday, June 01, 2011
KBR Inc.

KBR has been selected to execute engineering design services for three coal seam gas (CSG) pipelines designed to carry CSG from gasfields in central Queensland, Australia to an export facility on Curtis Island. The project will be executed for the McConnell Dowell/CCC joint venture (MCJV) on behalf of clients Queensland Curtis LNG (QCLNG) and Asia Pacific LNG (APLNG).

KBR will execute engineering design services including pipeline design, process, civil and structural, mechanical and electrical engineering and instrument controls for the three CSG pipelines. For QCLNG, KBR will design a pipeline from central Queensland to the coast that consists of more than 580 kilometers (360 miles) of pipelines, including: a 42-inch diameter coal seam gas (CSG) pipeline (approximately 374 kilometers/232 miles); a 42-inch diameter CSG collection header pipeline (approx 169 kilometers/105 miles); and six collection laterals of 12-24 inch diameter (5.4 kilometers/3.4 miles).

A second pipeline for QCLNG and a third pipeline for APLNG will both consist of a 42-inch diameter high pressure transmission pipeline from the main line valve on the Queensland mainland, across the Narrows to the Curtis Island delivery station. The shared design for the Narrows pipelines is the result of an agreement between QCLNG and APLNG to jointly contract to design build and deliver the two coastal pipelines.

"This contract award demonstrates KBR's commitment to be involved in delivering pipelines and associated infrastructure in the important and emerging coal seam gas industry," said Colin Elliott, President, KBR Infrastructure and Minerals. "The expertise we've developed in the gas pipeline sector in Australia to date will be integral to the successful execution for MCJV, QCLNG and APLNG and add to our capabilities in this rapidly growing market."

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Monday, May 30, 2011

Holistic View to Rig Design, Construction Needed to Minimize Software Risk

- Holistic View to Rig Design, Construction Needed to Minimize Software Risk

Monday, May 30, 2011
Rigzone Staff
by Karen Boman

The growing use of software to run drilling rigs, coupled with the regulatory and operational challenges of the post-Macondo world, means that drilling rig contractors should take a more holistic view to reducing control systems software and hardware integrated-related non-productive time (NPT) and schedule delays.

According to Athens Group's third annual International Benchmarking Survey, this holistic approach include designing, building and testing a drilling rig as an integrated system, rather than testing individual systems before they are put together. Athens Vice President of engineering Bill O'Grady said this would allow for software risks to be addressed earlier in a rig's lifecycle.

The fact that most drilling equipment used today is software-driven presents challenges, and delays in rig delivery and problems integrating software systems mean lost revenue and additional costs for drilling contractors. "Typically, we see a collection of equipment built and tested separately and put together late in the process," said O'Grady. The task of integrating software systems also is spread among employees, rather than one person assigned the job. "Unless these systems integrated, you won't get the benefits of the software programs."


The study focuses on the cost and causes of control systems software and hardware integration-related NPT and safety incidents, and seeks to identify opportunities and barriers to reducing NPT and was as initiatives planned for 2010 and 2011. While progress has been made in reducing software and hardware-related NPT, the study found that the rate of control system and hardware integration NPT is 67 to 86 percent higher than the acceptable rate, depending on the age of the asset.

The top causes of NPT, with the exception of lack of shipyard experience, which is now last on the list, remain the same from last year's survey. The top causes include overextended equipment vendors, lack of software-experienced engineers, and late delivery and testing of software.

Many engineers lack software experience since oil and gas industry traditionally has been a hardware intensive company with mechanical control systems on board drilling rigs. In the past decade or so, the benefits of introducing software programs to control functions on board rigs began to take hold in the industry, but engineers more familiar with hardware are still adapting to using software.

Athens CMO Christine Lowry also attributes the lack of software experience to the 1980s energy industry bust, when many workers were laid off. This bust likely scared off potential recruits who would have entered the industry in the 1990s, many of whom would be familiar with computer software.

While software systems became prevalent on drillships and semisubmersibles in 1998, so few rigs are typically delivered each year, with the exception of last year, that experience installing integrated software systems is still lagging in comparison to other industries. The year 2010 was an exception, and equipment vendors were stretched thin due to 48 high-specification rigs delivered, the largest number of deliveries ever.

Two trends O'Grady sees among rigs is that older platforms with electromechnical systems need to be completely refurbished with a software system, and rigs built in 2000 through 2004 coming in for refurbishments also require software upgrades. Rigs such as the ENSCO 8500 series are the same in theory, but because software versions change, there is not a lot of duplication.


The survey found that adoption of simulation testing for topsides, improved rig crew training, and implementation of alarm management software are the top three opportunities for reducing NPT.

Thirty-seven percent of respondents in the survey indicated they would implement improved rig crew training this year, with training needed specifically targeted at the operation of complex integrated software control systems, and the maintenance and configuration of complex integrated software control systems. Survey respondents also included the adoption of simulation testing for topsides and implementation of alarm management software in their top three NPT reduction initiatives planned for this year.

O'Grady noted that simulation can be a valuable tool to test software, but choosing the right simulation and at the right time in the product lifecycle is critical for success. "The simulator also needs to be independently verified to ensure it is testing appropriately," he noted.

Implementing alarm systems on rigs requires a different approach with high temperature, high pressure wells offshore. More alarms are needed, but alarms must be placed where they matter most. "If too many are in place, people will likely ignore them or turn them off," O'Grady said.

One recommendation made in the report is drilling contractor's use of a concept of operations document, a well-known practice in automation and manufacturing process, for the design of newbuild rigs and refurbishment of existing rigs, said O'Grady. The concept of operations document, in which the end user describes what tasks they want an asset to perform, is missing in a lot of highly integrated assets such as drilling rigs.

O'Grady also noted that rig owners are now taking more control of the commissioning phase of rigs. This approach is a shift from the original owner-furnished equipment in which a rig owner specified to a shipyard what particular pieces would go on a rig. However, the implementation of software on rigs began to cause delays with rig deliveries. Shipyards began suggesting that, while shipyards could standardize some equipment parts for rigs, more specialized pieces with software-dependent parts should be put in place by the owner.

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Thursday, May 26, 2011

Wood Group Lands Engineering, Design Gig for Tamar Platform

- Wood Group Lands Engineering, Design Gig for Tamar Platform

Thursday, May 26, 2011
John Wood Group plc

Wood Group's Alliance Engineering has been awarded a contract to provide detailed engineering and design services for the Tamar Platform Project, including topsides facilities and deck structure, to be located offshore Israel. The Tamar natural gas field will be operated by Noble Energy and is located offshore Israel in the eastern Mediterranean Sea's Levantine Basin.

The Tamar platform will be located in approximately 800 feet of water and will be designed to process 1.2 billion standard cubic feet of gas per day. The Tamar field is estimated to contain 8.4 trillion cubic feet of gas and will be produced through several subsea wells connected to the platform by 150 km long flow lines. The planned single-lift topsides facility will have four deck levels and will weigh nearly 10,000 tons when completed.

"We are very excited to be working for Noble Energy on this international gas field development," said Edmund Lunde, president of Alliance. "Alliance is committed to execution excellence in its projects and we are honored Noble Energy has given us this opportunity to showcase our capabilities."

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Wednesday, May 25, 2011

Wartsila Awarded Design, Equipment Contract for Vestland PSV

- Wartsila Awarded Design, Equipment Contract for Vestland PSV

Wednesday, May 25, 2011
Wartsila Corp.

Wärtsilä has been awarded the contract to supply the design and equipment for a new Platform Supply Vessel (PSV) for offshore operations. The order has been placed by Hellesøy Verft AS, the Norwegian shipyard that will build the vessel, which is to be owned and operated by Norwegian ship owner, Vestland Offshore. The vessel is scheduled to be delivered towards the end of 2012.

In response to the customer's demand for a modern, high quality, and fuel efficient PSV, Wärtsilä Ship Design has developed a highly energy and environmentally efficient vessel solution. Based on the well-proven VS 485 design, the new vessel has an optimized hull design for greater efficiency, with corresponding reduced emission to air. The Vessel will be fitted with Wärtsilä medium speed engines and Wärtsilä NOx Reducer.

In addition to the design package, Wärtsilä's scope of supply includes four Wärtsilä 9L20 diesel generator sets, the electric propulsion system, the power management system, and an integrated automation system.

"Vestland Offshore is building a fleet of vessels that emphasize energy efficiency, safety, reliability, and environmental sustainability. These are all major focus areas for today's oil industry, and Wärtsilä's designs are at the forefront of achieving these aims," said Tor Østervold, Chairman of the Board of Vestland Offshore.

The VS 485 Mk III fulfils the highest possible Environmental Rating Number (ERN) 99.99.99.99, which represents the vessel's capability for maintaining its position and normal operations under certain weather conditions. The new Wärtsilä PSV design includes a unique power and propulsion system based on the company's patented Low Loss Concept. This provides both additional safety and extra reliability for continuous operation, in various failure modes.

"Over the years, Wärtsilä has gained considerable experience in the development of energy efficient vessels. In particular, the optimization of hull lines has been a major focus area of this development work. By combining this know-how with our overall expertise and experience, new design optimization tools, and state-of-the-art power and propulsion solutions, we have been able to produce a highly efficient portfolio of Offshore Service Vessel designs," said Johannes Eldøy, Director, Project Development for Wärtsilä Ship Design.

Wärtsilä has had a long and successful relationship with the Hellesøy Verft yard, and this will be the seventh VS 485 vessel that they have built. However, this is the first ship of the new Mk III design that they have ordered. The new ship will be one of the most cost and fuel-efficient supply vessels ever to be launched. It is designed to be suitable for world-wide operations.

The vessel is 85.6 meters long, has a breadth of 20 meters, a cargo deck area of approximately 1000 square meters, and has a dead weight at 7 m of 5,000 tonnes.

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Tuesday, April 26, 2011

KBR Bags Design Engineering Gig for Jack/St. Malo FPU

KBR Bags Design Engineering Gig for Jack/St. Malo FPU

Tuesday, April 26, 201
KBR Inc.

KBR has been awarded a contract by Chevron U.S.A. Inc. to execute detailed design engineering for the Jack/St. Malo floating production unit (FPU) located in the Lower Tertiary trend in the deepwater Gulf of Mexico. The Jack and St. Malo fields are located within 25 miles (40 km) of one another approximately 280 miles (450 km) south of New Orleans, Louisiana, in water depths of 7,000 feet (2,100 m).

KBR will provide design and engineering support through fabrication for the deep draft semi-submersible (semi) including: hull, deck box, accommodations, appurtenances, equipment foundations; mooring system design; and anchor suction piles. The semi will be designed to minimize vessel motion and allow acceptable fatigue lives of the moorings, risers and umbilicals.

"Following the announcement of the detailed design contract for Big Foot in January 2011, KBR is overwhelmingly proud to accept the award for Jack & St. Malo FPU," said Dennis Calton, President, KBR Oil & Gas. "As a company, we’ve worked strategically to re-enter the Gulf of Mexico. The opportunity to execute another project for Chevron in the Gulf positions KBR at the forefront of deep water field development."

KBR subsidiaries Granherne and GVA consultants will collaborate on the execution of this phase of the project. The award of this contract follows the successful completion of conceptual engineering and design, pre-FEED and FEED by KBR for the Jack & St. Malo FPU project.

Sunday, April 10, 2011

Shell joins the project as a gas supplier and equity participant

Shell joins the project as a gas supplier and equity participant

10 April 2011 14:43

San Ramon. Chevron Corporation (NYSE: CVX) today announced the signing of agreements with Shell Development (Australia) Pty Ltd to bring Shell into the Chevron-operated Wheatstone Project as a natural gas supplier and equity participant.

George Kirkland, vice chairman, Chevron Corporation, said, "Chevron is pleased to welcome another participant into the Wheatstone Project. The Wheatstone hub will provide a reliable new source of energy to Australia and the region. It will also further enhance Chevron's position as a leading supplier of liquefied natural gas (LNG) in Asia-Pacific."

Under the unitization agreement with Chevron's Australian subsidiaries, Shell will assume an 8 percent participating interest in the Wheatstone and Iago natural gas fields in the Chevron-operated permits WA-253-P, WA-17-R and WA-16-R, located offshore northwest Australia.
The Wheatstone and Iago gas fields will supply Trains 1 and 2 of the Wheatstone Project, located onshore at Ashburton North in Western Australia.

Shell will also assume a 6.4 percent participating interest in the project facilities, with Chevron remaining project operator.

Chevron Australia managing director, Roy Krzywosinski, said front-end engineering and design (FEED) activity on the Wheatstone Project is nearing completion.

"The Wheatstone Project is set to become one of Australia's largest resource projects and Australia's first LNG hub. A final investment decision is expected in the second half of this year once environmental approvals and other associated agreements are finalized with various levels of government."

The first phase of the Wheatstone Project consists of two LNG processing trains with a combined capacity of 8.9 million tonnes per annum (MTPA) and a domestic gas plant.

Chevron is one of the world's leading integrated energy companies, with subsidiaries that conduct business worldwide. The company's success is driven by the ingenuity and commitment of its employees and their application of the most innovative technologies in the world. Chevron is involved in virtually every facet of the energy industry.

The company explores for, produces and transports crude oil and natural gas; refines, markets and distributes transportation fuels and other energy products; manufactures and sells petrochemical products; generates power and produces geothermal energy; provides energy efficiency solutions; and develops the energy resources of the future, including biofuels. Chevron is based in San Ramon, Calif.

More information about Chevron is available at http://www.chevron.com.

Thursday, March 31, 2011

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 22, 2011

Foster Wheeler Clinches Detail Design Contract in GOM

Tuesday, March 22, 2011

Foster Wheeler's Global Engineering and Construction Group has been awarded a detail design contract by Enbridge Offshore for the deepwater Walker Ridge Gathering System (WRGS) export gas pipelines and the deepwater Big Foot (BGF) export oil pipeline located in the Walker Ridge (WR) area of the Gulf of Mexico.

The contract value, which was not disclosed, will be included in the company's first-quarter 2011 bookings. Foster Wheeler's work on the design contract is expected to be completed during the second quarter of 2011.

"We are delighted that Enbridge Offshore Facilities, LLC has selected Foster Wheeler Upstream's Houston-based team for this project and we look forward to delivering a high quality service which fully satisfies our client," said Clive Vaughan, chief executive officer, Foster Wheeler Upstream. "We have performed the detail design of essentially all of the deepwater pipelines in the Gulf of Mexico. Upstream remains a top growth priority for Foster Wheeler, and the award of the three deepwater gas and oil pipelines contained in this WRGS and BGF project confirms our strategy and commitment to the upstream oil and gas market sector."

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