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Feasibility study of a low-temperature geothermal power plant for multiple economic scenarios

机译:多种经济情景下的低温地热发电厂的可行性研究

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Deep-geothermal energy is a renewable energy source which provides a constant heat flux to the earth surface. If this heat is used properly, the geothermal power plant might serve as a base-load plant. However, geothermal well drilling costs are high, so the economic feasibility is not always secured. This is especially the case for low brine temperatures, which are common in NW Europe. In this paper, we will investigate the feasibility of a low-temperature geothermal plant for multiple economic scenarios. Whereas, in the literature, the focus is often on the influence of heat source conditions and environmental parameters, we focus on the economic parameter assumptions (electricity price, discount rate, lifetime, availability factor and well drilling costs). The design of the heat exchangers and the air-cooled condenser are optimized together with the operating conditions based on a thermo-economic optimization algorithm. The net present value (NPV) is the objective function. We find that the same geothermal project might be profitable (NPV = 11.63MEUR) or loss-making (NPV = -9.91MEUR), depending on the economic situation. Good economic conditions are an incentive to build a more expensive ORC which generates a high electrical power output, whereas in bad conditions, a cheap ORC must be chosen which produces less electricity. (C) 2018 Elsevier Ltd. All rights reserved.
机译:深层地热能是一种可再生能源,可向地表提供恒定的热通量。如果该热量得到适当利用,则地热发电厂可能会成为基本负荷发电厂。但是,地热井的钻井成本很高,因此不能总是确保经济可行性。盐水温度低时尤其如此,这在欧洲西北部很常见。在本文中,我们将研究低温地热发电厂在多种经济情况下的可行性。而在文献中,重点通常放在热源条件和环境参数的影响上,而我们侧重于经济参数假设(电价,折现率,寿命,可利用率和钻井成本)。基于热经济优化算法,对热交换器和风冷冷凝器的设计以及运行条件进行了优化。净现值(NPV)是目标函数。我们发现,根据经济情况,同一地热项目可能是盈利的(NPV = 11.63MEUR)还是亏损的(NPV = -9.91MEUR)。良好的经济条件是建立更昂贵的ORC的诱因,而ORC会产生高的电力输出,而在恶劣的条件下,必须选择便宜的ORC来产生较少的电力。 (C)2018 Elsevier Ltd.保留所有权利。

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