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    VGB PowerTech

    EST. 1920
    14论文总数
    148引用总数

    论文量&引用量时间轴

    机构学者

    排序
    Jirina Vitazkova
    Jirina Vitazkova
    Slovak University of Technology in Bratislava
    论文:2引用:0H-index:0
    A. Rydl
    A. Rydl
    Department of Radiopharmaceuticals, Nuclear Research Institute
    论文:2引用:0H-index:0
    ulrich langnickel
    ulrich langnickel
    VGB PowerTech EV
    论文:2引用:0H-index:0
    T. Routamo
    T. Routamo
    Fortum Nuclear Services
    论文:2引用:0H-index:0
    G. Lajtha
    G. Lajtha
    NUBIKI
    论文:2引用:0H-index:0
    S. Guentay
    S. Guentay
    Paul Scherrer Inst
    论文:2引用:0H-index:0
    Ahmed Bentaib
    Ahmed Bentaib
    Institut de Radioprotection et de Sûreté Nucléaire (IRSN), France
    论文:1引用:0H-index:0
    Jurgen Dersch
    Jurgen Dersch
    German Aerospace Center (DLR)
    论文:1引用:0H-index:0
    Oliver Lammel
    Oliver Lammel
    Institute of Combustion Technology, German Aerospace Center (DLR)
    论文:1引用:0H-index:0

    论文(14)

    年份
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    1Die Rolle Klassischer Erzeugungstechnologien Im Energiesystem Der Zukunft
    Oliver Then
    2019e+i Elektrotechnik und Informationstechnik(2019)
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    248th Annual Meeting on Nuclear Technology (AMNT 2017) Key Topic | Enhanced Safety & Operation Excellence and Nuclear Energy Campus
    Ludger Mohrbach

    Report on The Key Topic Enhanced Safety & Operation Excellence: Focus Session: International Operational Experience and the Nuclear Energy Campus of the 48th Annual Meeting on Nuclear Technology (AMNT 2017) held in Berlin, 16 to 17 May 2017.

    2017ATW-INTERNATIONAL JOURNAL FOR NUCLEAR POWER(2017)
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    3Hybrid High Solar Share Gas Turbine Systems with Innovative Gas Turbine Cycles
    M. Puppe,S. Giuliano, M. Krueger,O. Lammel,R. Buck,S. Boje, K. Saidi,U. Gampe,C. Felsmann,M. Freimark,U. Langnickel

    In this paper results from an ongoing research project(HYGATE) are presented, which is performed to reduce the levelized cost of electricity (LCOE) and to increase the CO2 reduction potential of the solar-hybrid gas turbine plant concept (SHGT). Key improvements are the integration of thermal energy storage and the reduction of the operating temperature of the gas turbine to 950 °C. As a result the solar receiver can provide the necessary temperature for solar-only operation of the plant at design point - without using the auxiliary burner.Annual performance calculations and an economic analysis of four different plant concepts were performed. Those concepts were analyzed using innovative power block processes. In general,such systems offer reliable and dispatchable power with low specific CO2 emissions.A substantial decrease of CO2 emissions has been achieved all along the four variants compared to results of a previous project [1]. Compared to the defined reference molten salt solar tower the solar-hybrid gas turbine plants as of now yield higher plant efficiencies, but have a slightly lower potential for CO2 reduction. Among the SHGT plants the variants including a bottoming Organic Rankine Cycle (SHORCC and SHORCC-R) achieve the highest efficiencies but have significantly higher LCOE, caused by the high costs of the ORC components which are not yet commercially available in the requireddimensions. The solar-hybrid combined cycle plant (SHCC)and solar-hybrid gas turbine plant with quasi isothermal compression and recuperation (SHGT-ICR) perform best among the SHGT plants in terms of LCOE, and can be considered an interesting alternative to molten salt tower plants. Taking into account other factors, such as plant complexity and water consumption, an isothermal solar gas turbine plant shows the most potential advantages. However, theSHCC has the highest technological maturity and is a likely candidate for a future demonstration plant.

    2015INTERNATIONAL CONFERENCE ON CONCENTRATING SOLAR POWER AND CHEMICAL ENERGY SYSTEMS, SOLARPACES 2014(2015)引用:16
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    4Best-practices Guidelines for L2PSA Development and Applications. Volume 2 - Best Practices for the Gen II PWR, Gen II BWR L2PSAs. Extension to Gen III Reactors
    E. Raimond, T. Durin,Nadia Rahni, Renaud Meignen,M. Cranga, F. Pichereau,Ahmed Bentaïb,Yves Guigueno, H. Loeffler, O. Mildenberger,G. Lajtha, C.S. Santamaria,
    2010
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    5Best-practices Guidelines for L2PSA Development and Applications. Volume 1 - General
    E. Raimond, F. Pichereau, T. Durin, Nadia Rahni, H. Loeffler, O. Roesch,G. Lajtha, C.S. Santamaria, J. Dienstbier,A. Rýdl, Jan‐Erik Holmberg, I. Lindholm,
    2010
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    合作机构(22)

    保罗谢尔研究所合作论文 3
    RWE Inc.合作论文 3
    FIT Consulting (Italy)合作论文 2
    Nuclear Research and Consultancy Group合作论文 2
    Tractebel合作论文 2
    Radiation and Nuclear Safety Authority合作论文 2
    伊比德羅拉合作论文 2
    VTT 技术研究中心 of Finland合作论文 2
    Gesellschaft für Anlagen und Reaktorsicherheit合作论文 2
    Nuclear Research Institute Rez (Czechia)合作论文 2

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