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Hybrid Solar Heat Generation Modelling and Cases

机译:混合太阳能热发电模型与实例

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Renewable thermal energy systems (RTES) harness renewable energy sources to provide services for space heating and cooling, district heating, domestic hot water, and industrial process heat (IPH). The use of low-pressure steam generated by the combustion of fossil fuels is common today to provide process heat for industrial facilities. Solar IPH (S1PH) technologies could economically replace the steam or heat needs at many industrial sites by providing high-temperature pressurized hot water, a heat transfer fluid (HTF) such as synthetic-oil, or direct steam (Kurup and Turchi, 2015). RTES could be hybridized with technology options or combined with the existing heat supply (e.g. fuels), to give options for targeted IPH application and the reduction of fuel consumption This work has tested hybrid system modelling approaches. Initial results show when a natural gas (NG) burner that feeds an IPH application of 300°C, has both air and NG streams pre-heated with a solar field/RTES exit temperature of 180°C (via an HTF). a 13% NG offset is possible. NG offsets reach up to 26%, when the RTES exit temperatures are at 300°C for a given annual capacity factor of 24%. This can be even higher with addition of thermal energy storage (TES).
机译:可再生热能系统(RTE)利用可再生能源为空间供暖和制冷、区域供暖、生活热水和工业过程供暖(IPH)提供服务。如今,利用化石燃料燃烧产生的低压蒸汽为工业设施提供工艺热量是很常见的。太阳能IPH(S1PH)技术可以通过提供高温加压热水、合成油等传热流体(HTF)或直接蒸汽(Kurup and Turchi,2015)经济地替代许多工业场所的蒸汽或热量需求。RTE可与技术选项混合,或与现有供热(如燃料)结合,为目标IPH应用提供选项,并降低燃料消耗。这项工作已测试了混合系统建模方法。初步结果表明,当为300°C的IPH应用提供燃料的天然气(NG)燃烧器将空气和NG气流预热到180°C的太阳能场/RTES出口温度时(通过HTF)。13%NG的偏移量是可能的。当RTE出口温度为300°C时,在24%的年容量因数下,NG偏移量达到26%。如果增加热能存储(TES),这一点可能会更高。

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