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The empirical probability of integrating CSP and its cost optimal configuration in a low carbon energy system of EUMENA

机译:在EUMENA的低碳能源系统中整合CSP及其成本最优配置的经验概率

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Ongoing cost reduction of low carbon energies allows an increasing implementation of such technologies for climate protection targets. How decreasing cost develop in the future is high-grade uncertain. Thus cost sensitivities analyses of an expert based cost-range are needed to show if specific technologies can be cost advantageous for an energy system. In this paper a low carbon and cost-optimal energy system of Europe, Middle East and North Africa (EUMENA) in the year 2050 is analysed with regard to concentrating solar power (CSP). Cost sensitivity analyses show how frequently an integration of CSP in the energy system is. This frequency is defined as empirical probability of technological integration (EPTI). An energy system model allows a suitable analysis framework with tangible competitive technologies such as renewable energies, nuclear power plants and carbon capture and storage (CCS). As a highlight the EPTI of an export of CSP from MENA to EU via point-to-point high voltage direct current (HVDC) transmission lines is analysed. Such CSP-HVDC power plants show an EPTI of up to 66%. CSP in MENA and southern EU show an average EPTI of 85%, nuclear power plants of 32% and CCS of 50%. The cost sensitivity analysis shows additionally the cost optimal configuration of CSP and CSP-HVDC. This clarifies the role of CSP and CSP-HVDC for the energy system as a dispatchable base and medium load power plant depending on the region inside EUMENA.
机译:持续降低低碳能源的成本可以使这种技术越来越多地用于气候保护目标。未来如何降低成本发展是高度不确定的。因此,需要对基于专家的成本范围进行成本敏感性分析,以显示特定技术对于能源系统而言是否具有成本优势。本文针对聚光太阳能(CSP),分析了2050年欧洲,中东和北非(EUMENA)的低碳且成本最优的能源系统。成本敏感性分析显示了CSP在能源系统中集成的频率。该频率定义为技术集成的经验概率(EPTI)。能源系统模型可提供具有切实竞争技术的合适分析框架,例如可再生能源,核电站和碳捕集与封存(CCS)。作为重点,分析了通过点对点高压直流(HVDC)传输线将CSP从MENA出口到EU的EPTI。这种CSP-HVDC发电厂的EPTI高达66%。中东和北非和欧盟南部的CSP显示平均EPTI为85%,核电厂为32%,CCS为50%。成本敏感性分析还显示了CSP和CSP-HVDC的成本最优配置。这阐明了CSP和CSP-HVDC在能源系统中作为EUMENA内部区域的可调度基础和中等负荷发电厂的作用。

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