echemi logo
Product
  • Product
  • Supplier
  • Inquiry
    Home > Chemicals Industry > Chemical Technology > Siemens will drive the development of next-generation HL-class gas turbine technology

    Siemens will drive the development of next-generation HL-class gas turbine technology

    • Last Update: 2022-11-24
    • Source: Internet
    • Author: User
    Search more information of high quality chemicals, good prices and reliable suppliers, visit www.echemi.com

    Siemens recently announced that it will advance the development of next-generation HL-class gas turbine technology and selected a site for the Duke Energy Lincoln County plant in North Carolina to validate its HL-class technology
    .
    According to Siemens' description, the HL class is a more advanced technology
    than the H-class gas turbine.

    Siemens said the more advanced HL-class gas turbines will combine a range of new but tested and proven technology and design features with higher power generation efficiency and better performance
    .
    At present, the combined cycle power generation efficiency of HL-class gas turbines will reach 63%, and the medium-term target is 65%.

    In addition, Siemens said it is transferring many of its newly developed key technologies to
    its entire gas turbine product range.
    In the near future, all customers will be able to enjoy further efficiency and performance improvements in Siemens gas turbine products, an approach that will also help Siemens customers compete
    in a rapidly changing market.
    And Siemens has also promised that the new gas turbine units will be significantly reduced in production and construction time
    through modularization and standardization.

    Siemens notes that the latest HL-class heavy-duty gas turbines can also be connected to MindSphere, a cloud-based Siemens Internet of Things
    .
    MindSphere provides Siemens and its partners with powerful analytics capabilities that benefit customers through intuitive engine operation and decision support
    .
    To minimize post-rollout business risks, Siemens is conducting extensive and comprehensive validation and testing
    .
    Component testing and prototype testing
    in Siemens-owned plants.

    Siemens recently announced that it will advance the development of next-generation HL-class gas turbine technology and selected a site for the Duke Energy Lincoln County plant in North Carolina to validate its HL-class technology
    .
    According to Siemens' description, the HL class is a more advanced technology
    than the H-class gas turbine.

    gas turbine

    Siemens said the more advanced HL-class gas turbines will combine a range of new but tested and proven technology and design features with higher power generation efficiency and better performance
    .
    At present, the combined cycle power generation efficiency of HL-class gas turbines will reach 63%, and the medium-term target is 65%.

    In addition, Siemens said it is transferring many of its newly developed key technologies to
    its entire gas turbine product range.
    In the near future, all customers will be able to enjoy further efficiency and performance improvements in Siemens gas turbine products, an approach that will also help Siemens customers compete
    in a rapidly changing market.
    And Siemens has also promised that the new gas turbine units will be significantly reduced in production and construction time
    through modularization and standardization.

    Siemens notes that the latest HL-class heavy-duty gas turbines can also be connected to MindSphere, a cloud-based Siemens Internet of Things
    .
    MindSphere provides Siemens and its partners with powerful analytics capabilities that benefit customers through intuitive engine operation and decision support
    .
    To minimize post-rollout business risks, Siemens is conducting extensive and comprehensive validation and testing
    .
    Component testing and prototype testing
    in Siemens-owned plants.

    This article is an English version of an article which is originally in the Chinese language on echemi.com and is provided for information purposes only. This website makes no representation or warranty of any kind, either expressed or implied, as to the accuracy, completeness ownership or reliability of the article or any translations thereof. If you have any concerns or complaints relating to the article, please send an email, providing a detailed description of the concern or complaint, to service@echemi.com. A staff member will contact you within 5 working days. Once verified, infringing content will be removed immediately.

    Contact Us

    The source of this page with content of products and services is from Internet, which doesn't represent ECHEMI's opinion. If you have any queries, please write to service@echemi.com. It will be replied within 5 days.

    Moreover, if you find any instances of plagiarism from the page, please send email to service@echemi.com with relevant evidence.