Home January 2018

January 2018

Drone Offers A Variety Of Inspection Options

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UAV inspection of valuable assets can yield significant cost savings, improve worker safety and extend the life of the asset. Whether it is inspection of solar panels, communication towers, antennas, wind turbines, or other valuable infrastructure, the H520 can provide the capabilities and flexibility to get the job done.

The H520 sUAS offers multiple payload options such as the CGOET dual thermal/RGB camera, which is ideal for solar inspections, or the E50, medium focal length camera, which is optimized for vertical tower inspections. Obtain clean and accurate images more frequently than from manned inspections. At the same time, periodic comparable data may be generated, allowing for aging analysis, maintenance projections, and overall knowledge of the object being inspected.

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Highlights of the Yuneec H520 include:

  • Hot-swap payload options: Significantly saves time and provides consistence of data-storage.
  • Memory cards can be swapped from device to device.

E90 camera:

  • Wide–angle, high-res, gimbal stabilized.
  • 20 MP 2-inch sensor, H2 high speed image processing chip.
  • Scenarios: law enforcement, search and rescue, 3D mapping/modeling, broadcast, and professional production.
  • Adaptor ring allows mounting of standard, high performance third-party filters.

E50 camera:

  • Medium focal length, high-res, gimbal stabilized.
  • High aperture 1/2.3 inch CMOS imager capable of 12 MP stills.
  • Inspection (cell towers, wind turbines, oil & gas, platforms, and other vertical assets), broadcast and cinema.
  • Adaptor ring allows mounting of standard, high performance third-party filters.

CGOET camera:

  • Thermal imaging with dual-imaging solution.
  • Simultaneously records two separate video files for each lens.
  • Low-light scenarios with ability to see 20x better than human eye.

Data pilot:

  • Efficiently and consistently create orthomaps, 3D scans, drop data imagery, in the field or on the desktop for repeatable, callable, aerial flight paths, without requiring expensive third party software.

Software developer kit:

  • Enables developers to tap into Yuneec hardware and software tools and create applications for H520.

YES! commercial extended service program:

  • Four repair service package options ranging from $399 to $2,499.

Source: Yuneec

For more information, go to us.yuneec.com

New Turbine Models Will Increase Annual Energy Production By 20 Percent

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Siemens Gamesa Renewable Energy (SGRE) has combined the experience of two strong players, building on the merger that took place in early 2017. Thanks to this process, the company is now launching the new geared turbine SG 4.2-145, as part of the new geared turbine platform Siemens Gamesa 4.X. The model SG 4.2-145 offers best-in-class LCOE at medium wind sites in the 4-MW segment and marks the start of a next-generation product platform for high performance geared onshore wind turbines. This new turbine for onshore will increase the annual energy production by 21 percent.

Additionally, SGRE launches the new direct drive offshore wind turbine SG 8.0-167 DD, with a rotor diameter of 167 meters. Its B82 blades will allow for an 18 percent greater swept area and up to 20 percent higher annual energy production than its predecessor, the SWT-7.0-154. As part of the proven offshore direct drive platform, the SG 8.0-167 DD uses known technology, combined with its rotor upgrade, to offer customers reliable revenue streams with reduced cost of energy and mitigated risk.

Both product launches are part of SGRE`s new “One Segment/One Technology” philosophy announced in early November. By 2020, the company will have one technology per business segment. In onshore, SGRE will streamline its technology approach and focus on geared solutions. In offshore, SGRE opts for the direct-drive platform only.

“The single platform strategy helps the company to transition to a more focused offer in the medium-term by utilizing economies of scale throughout the supply chain. This is how we will deliver lasting value to our customers,” said CEO Markus Tacke.

Recently launched models based on the proven product platforms of Siemens Gamesa will help to bridge into the coming years when the new geared platform goes into serial production.

Geared SG 4.2-145 turbine

The onshore model SG 4.2-145 is rated at 4.2 MW and features a 145-meter rotor. Its medium wind design will cover a broad range of sites. The technology is based on proven concepts such as a three-stage gearbox and a double fed induction generator (DFIG). The new turbine incorporates the experience and expertise of both companies, who together have an installed global onshore wind fleet of nearly 72 GW. Based on the Siemens Gamesa 4.X platform, further models for high- and low-wind sites with rotor diameters from 132 meters to above 150 meters are under development.

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The new turbine offers maximum flexibility regarding a power range that can be adjusted between 4 and 4.4 MW and to different tower configurations that allow for hub heights of 107.5 meters, 127.5 meters, and 157.5 meters. Two converter options help to comply even with enhanced demands in grid performance. The new 71-meter blades offer a risk-reduced design in terms of airfoil polar curves through wind tunnel test validation. Due to a high absolute thickness at its root sections, the new 71-meter blade achieves reduced mass at minimized cost. Chord alleviations in the mid-sections reduce maximum loads while optimized tips mitigate noise: At full load, the turbine’s noise level is 106.9 dB. Compared to the model G132-3.465 MW, the new SG 4.2-145 offers an increased swept area of 21 percent, resulting in an enhanced AEP by more than 21 percent. The prototype installation is planned for autumn 2018, while certification is expected for 2019. Start of production will be in early 2019.

“With our new geared onshore Siemens Gamesa 4.X platform, we offer even more technology options to our customers, helping to make their projects a profitable and sustainable asset,” said Ricardo Chocarro, CEO Onshore at SGRE. “With the combined expertise in our merged company, we offer a best-in-class solution in the market for turbines over 4 MW for a wide range of medium wind sites. For low wind sites, we will soon launch a rotor option with a diameter above 150 meters. For high wind sites, the turbine will be available with the proven 132 meter rotor.”

8-megawatt direct-drive offshore turbine

The latest turbine on the Offshore DD platform, the SG 8.0-167 DD, offers a rotor diameter of 167 meters. It will use proven technology and allow a short time to market by re-using all other components from its predecessor, the SWT-7.0-154. In January 2017, the first prototype in the 8MW class was installed and commissioned according to plan in Østerild, Denmark. While a testing program with focus on the electrical system is performed on this prototype, an additional SG 8.0-167 DD prototype will be installed in Østerild in 2018. With a larger rotor, it will be used mainly for blade tests. The SG 8.0-167 DD is expected to be market-ready in 2020. To accelerate time-to-market, Siemens Gamesa is collaborating with Fraunhofer IWES in Bremerhaven, Germany. In addition to in-house testing and prototype operation, the nacelle of the 8 MW turbine will perform laboratory tests in the institute’s cutting edge Dynamic Nacelle Testing Laboratory (DyNaLab). The comprehensive program, including load simulations and grid compliance tests, will start in spring and will be completed by the end of 2018.

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“The introduction of the SG 8.0-167 DD shows our continued dedication to industrializing the offshore market,” said Andreas Nauen, CEO Offshore at SGRE. “With the rotor upgrade, we offer our customers even higher energy yields at lower wind speeds. The flexibility of the offshore direct drive platform helps to reduce the levelized cost of energy (LCOE) and at the same time mitigate risks.”

Similar to the upgrade from 7 to 8 MW, the technology on the offshore direct drive platform allows for re-using most components. Only the rotor will be upgraded. Through technology improvements in the blades’ structural components, SGRE engineers have managed to design the 81.5-meter long B82 blade with less than a 20 percent increase in mass compared to the B75. Both blade types are manufactured as fiberglass components, cast in one piece using SGRE’s patented integral blade process.

Source: Siemens Gamesa

For more information, go to www.siemensgamesa.com

VertAx Signs C-Gen Agreement With University of Edinburgh

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VertAx Wind Ltd and the University of Edinburgh have signed the first commercial licensing agreement for the C-Gen Permanent Magnet Generator developed at the university.

The worldwide agreement enables VertAx to build the technology into its multi-megawatt vertical axis wind turbine under development.

“This allows us to take the next step as we develop our turbine to compete in the expanding offshore market,” said VertAx Chairman Peter Hunter. “The C-Gen concept is the right generator design for our large-scale vertical-axis turbine, and we look forward to successful collaboration and further development of this advanced permanent magnet generator.”

“I’m very pleased VertAx has chosen the C-Gen technology,” said Markus Mueller, professor of Electrical Generation Systems at the University of Edinburgh. “The partnership with VertAx will enable further advancement of the technology leading to full commercialisation.”

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C-Gen is an air-cored, lightweight, “no cogging” design. Its development started in 2005 under the Scottish Enterprise Proof of Concept Programme, and it has since been demonstrated at various scales up to 1 MW. The design has proven highly scalable and is suitable for tidal- and wave-energy applications as well as wind.

“This technology has great potential, and it’s always wonderful to see the university’s expertise and innovation meeting industrial and societal needs,” said Dr. John Jeffrey, business development manager at Edinburgh Innovations, the innovations management service of the University of Edinburgh.

Edinburgh Innovations has supported C-Gen’s development at every stage, from early progression of the technology and identification of funding opportunities through to commercialization, which includes managing the intellectual property and licensing.

VertAx, based in Guildford, Surrey, was established in 2007. Its vertical axis wind-turbine design contrasts with the horizontal axis turbines that currently dominate wind power globally.

The company’s aim is to further reduce the cost of offshore wind energy while re-establishing wind-turbine manufacturing in the U.K.

Source: VertAx Wind Ltd

For more information, go to vertaxwind.com/