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  • English  (10)
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  • 1
    Publication Date: 2023-07-18
    Description: This is the second version of CSP.guru produced during the openCSP project. The Noor Energy 1 project and Dubai and Cerro Dominador in Chile were updated to reflect recent developments. Both projects were checked for the role of colocated PV on their economics, and expected generation was deleted to reflect the fact that CSP-only generation is unknown. The GPS locations were converted to decimal for better handling. Additional data on the Chinese CSP stations was included based on information from Chuncheng Zang and Alina Gilmanova.
    Language: English
    Type: info:eu-repo/semantics/annotation
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  • 2
    Publication Date: 2023-07-18
    Description: This article draws lessons from experiences of developing the photovoltaic (PV) and onshore wind power sectors in China for the development of Chinese Concentrated Solar Power (CSP) into an internationally competitive industry. We analyze the sectoral development with a framework that expands on the concept of lead markets, identifying factors that determine whether domestic industrial development paths may or may not generate export success. We find that the Chinese CSP sector has good potential for becoming internationally competitive because of a strong Chinese knowledge base, a clear eye for product quality, standard-setting, and a focus on the high-efficiency and large-storage technological routes most likely to see growing demand in future international markets. Chinese solar towers are already cheaper than international competitors and so far, appear reliable. However, continued and stable deployment support for CSP, designed to reward dispatchable solar power generation, enabling continued domestic learning-by-doing and -interacting is likely required to realize this export potential. To date, Chinese CSP policy has done many things right and, if the domestic market is maintained through renewed support, has put the Chinese industry well on the path to international competitiveness.
    Language: English
    Type: info:eu-repo/semantics/article
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  • 3
    Publication Date: 2023-07-18
    Description: This is the third version of CSP.guru produced during the openCSP project and reflects the state of play at the beginning of 2021.
    Language: English
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  • 4
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    Publication Date: 2024-01-09
    Description: This version of CSP.guru has been compiled by Richard Thonig and Alina Gilmanova in collaboration with the SolarPACES secretariat and reflects the CSP market in the middle of 2023. The Chinese market continues to develops favorably with many new projects tendering being developed and 1 GW now under construction. To reflect the economics' of these Chinese hybrid projects new columns on hybrid economics have been included. Outside China some plants in Italy and a the third generation CSP pilots G3P3 have been added.
    Language: English
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  • 5
    Publication Date: 2024-01-09
    Description: This is the fourth version of CSP.guru produced during the openCSP project and reflects the state of play in the middle of 2021. As requested by CSP.guru users, we include for the first time a Microsoft Excel ".xlsx" for quick analysis, but also retain the data-package for machine readability.
    Language: English
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  • 6
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    Publication Date: 2023-07-18
    Description: This version of CSP.guru has been compiled by Richard Thonig and Alina Gilmanova in collaboration with the SolarPACES secretariat and reflects the CSP market in the beginning of 2023. The Chinese market continues to develops favorably with many new projects tendering being developed. Staying conservative, we only include those projects that are reported as under construction.
    Language: English
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  • 7
    Publication Date: 2023-07-18
    Description: We analyse the potential for industry entry and catching up by latecomer countries or firms in formative sectors, by deriving a framework that builds on the concept of windows of opportunity for catching up. This framework highlights differences in technological, market, and institutional characteristics between formative and mature sectors, and elaborates how this may affect opportunities for catching up. We apply this framework to the global Concentrated Solar Power sector, in which China has rapidly narrowed the gap to the global forefront in terms of technological capabilities and market competitiveness. We find that the formative nature of the sector resulted in turbulent development of the technological, market, and institutional dimensions, making it more difficult for early leaders to retain leadership, and therefore easier for latecomer firms or countries to catch up. This signals an increased role in early-stage technology development in the next phase of the energy transition.
    Language: English
    Type: info:eu-repo/semantics/article
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  • 8
    Publication Date: 2023-07-18
    Description: This is the first version of openCSP. It has been produced by merging the 2019-09-01 version of the csp.guru dataset with the data contained in the NREL/Solarpaces database by Johan Lilliestam and Richard Thonig. Moreover, the data on all Chinese CSP stations was checked and improved by Chuncheng Zang and Alina Gilmanova of the Chinese Academy of Sciences.
    Language: English
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  • 9
    Publication Date: 2024-05-06
    Description: Concentrating solar power (CSP) is one of the few scalable technologies capable of delivering dispatchable renewable power. Therefore, many expect it to shoulder a significant share of system balancing in a renewable electricity future powered by cheap, intermittent PV and wind power: the IEA, for example, projects 73 GW CSP by 2030 and several hundred GW by 2050 in its Net-Zero by 2050 pathway. In this paper, we assess how fast CSP can be expected to scale up and how long time it would take to get new, high-efficiency CSP technologies to market, based on observed trends and historical patterns. We find that to meaningfully contribute to net-zero pathways the CSP sector needs to reach and exceed the maximum historical annual growth rate of 30%/year last seen between 2010-2014 and maintain it for at least two decades. Any CSP deployment in the 2020s will rely mostly on mature existing technologies, namely parabolic trough and molten-salt towers, but likely with adapted business models such as hybrid CSP-PV stations, combining the advantages of higher-cost dispatchable and low-cost intermittent power. New third-generation CSP designs are unlikely to play a role in markets during the 2020s, as they are still at or before the pilot stage and, judging from past pilot-to-market cycles for CSP, they will likely not be ready for market deployment before 2030. CSP can contribute to low-cost zero-emission energy systems by 2050, but to make that happen, at the scale foreseen in current energy models, ambitious technology-specific policy support is necessary, as soon as possible and in several countries.
    Language: English
    Type: info:eu-repo/semantics/article
    Format: application/pdf
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  • 10
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    In:  AIP conference proceedings
    Publication Date: 2024-05-07
    Description: For three consecutive five-year plans since 2006, China has worked on building up an internationally competitive CSP industry and value chain. One big milestone in commercializing proprietary Chinese CSP technology was the 2016 demonstration program of 20 commercial-scale projects. China sought to increase and demonstrate capacities for domestic CSP technology development and deployment. At the end of the 13th five-year period, we take stock of the demonstrated progress of the Chinese CSP industry towards delivering internationally competitive CSP projects. We find that in January 2021, eight commercial-scale projects, in total 500 MW, have been completed and three others were under construction in China. In addition, Chinese EPC’s have participated in three international CSP projects, although proprietary Chinese CSP designs have not been applied outside China. The largest progress has been made in molten-salt tower technology, with several projects by different companies completed and operating successfully: here, the aims were met, and Chinese companies are now at the global forefront of this segment. Further efforts for large-scale demonstration are needed, however, for other CSP technologies, including parabolic trough - with additional demonstration hindered by a lack of further deployment policies. In the near future, Chinese companies seek to employ the demonstrated capabilities in the tower segment abroad and are developing projects using Chinese technology, financing, and components in several overseas markets. If successful, this will likely lead to increasing competition and further cost reductions for the global CSP sector.
    Language: English
    Type: info:eu-repo/semantics/article
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