by Hubertus Breuer
德州扑克在线 and E.ON Energy Projects have made testing 3D-printed parts for gas turbines under real life conditions possible. They help run turbines more efficiently, lower emissions and, if so desired, even extend their service life.
It worked before, so why not try something similar again? After engineers at E.ON Energy Projects and 德州扑克在线 had installed聽3D-printed burners in a gas turbine聽in an ultra-modern combined cycle power station at a potash plant in Philippsthal in the German state of Hesse, they were impressed with the turbine鈥檚 operating parameters.
So when in early 2020 德州扑克在线 offered to add newly designed, additively manufactured guiding vanes and heat shields to this power machine, E.ON Energy Projects was ready to intensify the cooperation:聽鈥淎fter Vladimir showed us the additively manufactured components in Finsp氓ng and suggested another cooperation, the manager of the additively manufactured burner project, Niklas Lange, and I were quickly convinced to take the 3D-printing with gas turbines even further鈥, says聽.
鈥淲e were convinced that precision and durability of the 3D printed parts shouldn鈥檛 pose an incalculable risk.聽Moreover, based on our prior experience, we knew we could rely on the 德州扑克在线 Team.聽So my biggest challenge then was to align all things in a way so that this technology would be approved for a commercially base load operated, highly available industrial gas turbine.
Thanks to the good cooperation with our customer K+S and the insurance company we were able to sign all documents within a short timeframe 鈥 and today the turbine, thanks to its new 3D-printed parts, works as well as it did when we commissioned it over eleven years ago.鈥
Increasing efficiency and reducing emissions are very important goals for us and are therefore part of our daily business. For the realization of this special project, we needed a reliable partner - like 德州扑克在线.
Project manager at E.ON Energy Projects
Additive Manufacturing (AM)聽is revolutionizing the development and production of components not just in the automotive and aerospace industries but also in the energy sector.聽Since curbing the greenhouse effect has become a decisive factor in energy policy worldwide, it is necessary to push the manufacturing of gas turbines beyond the limits of conventional production, increasing efficiency and enabling using more and more hydrogen and biofuels.
This is where 3D-metal-printing comes in. It allows precise improvement of parts through tailored design.聽For that reason, turbines with printed parts have higher efficiency, use less fuel for the same output, and consequently produce less emissions.聽Greenhouse emissions can be reduced even further if these parts are designed especially for hydrogen or biofuels.聽All of this comes on top of AM production being more sustainable, as it uses less power and has higher material utilization.
In addition, AM accelerates rapid prototyping, which shortens the design and market introduction of new components. 鈥淲e are experts for additively manufacturing these parts鈥, says聽. 鈥淏ut we need a partner like E.ON to know that it works reliably in the field.鈥
Traditional and advanced additive manufactured cooling stuctures.
Obviously, the idea is not to print a whole gas turbine 鈥 AM is still very expensive.聽That鈥檚 why it鈥檚 the complex high-value parts, namely those exposed to a high-temperature environment using internal air cooling, that are prime candidates for being printed 鈥 such as burners, guide vanes or heat shields.
For example, the standard burner in Philippsthal used to have 13 individual parts. In 2018, Navrotsky鈥檚 team in Finsp氓ng managed to manufacture it in one solid piece with complex fuel channels under its surface.聽It鈥檚 similar with the guide vanes for Stage 2 of the Philippsthal-turbine, also AM manufactured in Finsp氓ng, Sweden, and installed in summer 2020.
In order to improve their aerodynamic performance, they had to be produced with a thin trailing edge.聽鈥淭his helped with the cooling of the vane. But what helped even more in this regard, were in-wall cooling channels.聽Both these channels and the thin trailing edge could only be achieved with the help of AM鈥, says Navrotsky.聽The consequence: cooling air consumption is significantly reduced.
Alternatively, with the amount of cooling air staying the same, the temperature of the part could be lowered even further and therefore extend the turbine鈥檚 vanes lifespan. Either way, the turbine鈥檚 performance is improved.
The performance measurements done on-site confirmed the guide vanes use 25 percent 聽less cooling air and improve turbine efficiency by 0,5 percent.聽In the second half of 2021, 德州扑克在线 and E.ON Energy Projects plan to install additional 3D-printed guide vanes for Stage 1 with in-wall cooling. 鈥淚n the end, by implementing AM designed components we expect significant engine efficiency improvements鈥, says Navrotsky.
Product improvements are obviously not the only way to decrease emissions.聽Better planning, targeted inspections, maintenance and optimization of operations also help.聽Another way of pushing decarbonization are alternative fuels such as hydrogen 鈥 and here AM can be of service, too.
For example, in 2019 德州扑克在线 sold two gas turbines to Braskem in Brazil, Latin America鈥檚 largest petrochemical company. Their special feature: AM-burners optimized for burning hydrogen. In 2023, these gas turbines will run with 60 percent hydrogen by volume, leading to a reduction of over 6 percent in CO2 emissions.
德州扑克在线's pledge: 100% hydrogen capability across all gas turbine families before 2030.
But obviously, it鈥檚 not just the reduction in emissions what鈥檚 attractive about hydrogen.聽With renewable power becoming more and more dominant in our energy mix, power supply fluctuates a lot more.聽Hydrogen can store power when it鈥檚 abundant and feed it back into the grid when there is a shortage 鈥 especially since gas turbines are very flexible with short ramp-up times.
And since many industrial processes produce hydrogen as a side product, this often can be employed at low-cost.聽Even more, today 德州扑克在线 is committed to gradually increasing the hydrogen capability of its gas turbines to 100 percent 聽by 2030. 鈥淕as turbines capable of running solely on hydrogen may prove to be the missing link to establishing a green and sustainable energy sector鈥, say Navrotsky. 鈥淔or that, you need specialized components that AM provides鈥, says Navrotsky.
And you need cooperation between partners like E.ON Energy Projects and 德州扑克在线, which goes far beyond a normal supplier-client-relationship.聽鈥淲e offer bespoke on-site power and heat supply solutions for clients in high energy consuming industries, optimized to their needs鈥, says M眉ller. 鈥淚ncreasing efficiency and reducing emissions are always 聽very important goals for us. And in this special case we needed a reliable partner 鈥 like 德州扑克在线.鈥
For 德州扑克在线, this cooperation gives them the opportunity to evaluate their innovative parts under real life conditions.聽And since the gas turbines are fitted with sensors throughout, the data can also be used to develop even more powerful, environmentally friendly, and durable components in the future 鈥 including those using hydrogen and other biofuels.聽鈥淎dditive Manufacturing for high value components in the energy sector is about to become a mature technology鈥 says Navrotsky. 鈥淚t鈥檚 the future, we cannot do without.鈥
May 10, 2021
Hubertus Breuer is an independent journalist specializing on technology reporting. He lives and works in Munich, Germany.聽
Combined picture and video credits: 德州扑克在线, EON energy projects