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TESTING AND PRELIMINARY MODELLING OF A 2.5 KW MICRO-CHP SOFC UNIT

机译:2.5 KW微型CHP SOFC单元的测试和初步建模

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The experimental activities, carried out at the Laboratory of Micro-Cogeneration (LMC) of the Department of Energy at Politecnico di Milano are hereby outlined in relation to the testing of four 2.5 kWel AC SOFC-based micro-CHP units developed by SOLIDpower S.p.a. The novelty of the work consists in carrying out a complete thermodynamic and environmental performance characterisation of the studied commercial system in a third-party laboratory. The main objectives of the experimental campaign have been the investigation and assessment of the electric and heat recovery performances in different cogeneration thermal power demand loads. The generator has been tested in five different thermal loads, whilst operated at full electric load, in order to simulate the coupling with thermal appliances of diverse nature. The cogeneration water inlet temperature has been varied from 20°C (as in more complex cogeneration systems which may envisage a thermal storage and additional pre-heating section) to 50°C (as for district heating purposes or heating of sanitary water). Each measurement has been acquired with a redundant approach for statistical purposes aiming to the reduction of uncertainty and to guarantee procedure robustness. Moreover, the design point experimental characterisation has been supported by an overall process calibration and simulation performed by means of an in-house software (GS), developed at the Department of Energy. Each component has been modelled using a 0D approach, such that the required mass and energy balances of the plant can be compared with those obtained from the experimental activity. In conclusion, the overall performances have met the expectations, being characterised by a net electric efficiency of approximately 39% and a total efficiency which may overcome 95%.
机译:兹概述了在米兰理工大学能源系的微型热电联产实验室(LMC)进行的实验活动,该实验活动与测试由SOLIDpower S.p.a开发的四个基于2.5 kWel AC SOFC的微型CHP装置有关。这项工作的新颖性在于在第三方实验室中对所研究的商业系统进行完整的热力学和环境性能表征。实验活动的主要目标是调查和评估不同热电联产热力需求负荷下的电和热回收性能。该发电机已在五种不同的热负荷下进行了测试,同时在全电负荷下运行,以模拟与多种性质的热电偶的耦合。热电联产水的入口温度从20°C(如在更复杂的热电联产系统中,可能会设想蓄热和附加的预热部分)到50°C(如用于区域供热或卫生水的加热)之间变化。出于统计目的,已使用冗余方法获取了每个度量,目的是减少不确定性并保证过程的鲁棒性。此外,通过在能源部开发的内部软件(GS)进行的总体过程校准和仿真,为设计点的实验表征提供了支持。每个组件都已使用0D方法建模,因此可以将所需的植物质量和能量平衡与通过实验活动获得的平衡进行比较。总之,总体性能达到了预期,其特点是净电效率约为39%,总效率可以超过95%。

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