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Calibration and validation of a model for simulating thermal and electric performance of an internal combustion engine-based micro-cogeneration device

机译:校准和验证用于模拟基于内燃机的微型热电联产设备的热电性能的模型

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摘要

The growing worldwide demand for more efficient and less polluting forms of energy production has led to a renewed interest in the use of micro-cogeneration technologies in the residential. Among the others technologies, internal combustion engine-based micro-cogeneration devices are a market-ready technology gaining an increasing appeal thanks to their high efficiency, fuel flexibility, low emissions, low noise and vibration. In order to explore and assess the feasibility of using internal combustion engine-based cogeneration systems in the residential sector, an accurate and practical simulation model that can be used to conduct sensitivity and what-if analyses is needed. A residential cogeneration device model has been developed within IEA/ECBCS Annex 42 and implemented into a number of building simulation programs. This model is potentially able to accurately predict the thermal and electrical outputs of the residential cogeneration devices, but it relies almost entirely on empirical data because the model specification uses experimental measurements contained within a performance map to represent the device specific performance characteristics coupled with thermally massive elements to characterize the device's dynamic thermal performance. At the Built Environment Control Laboratory of Seconda Universita degli studi di Napoli, an AISIN SEIKI micro-cogeneration device based on natural gas fuelled reciprocating internal combustion engine is available. This unit has been intensively tested in order to calibrate and validate the Annex 42 model. This paper shows in detail the series of experiments conducted for the calibration activity and examines the validity of this model by contrasting simulation predictions to measurements derived by operating the system in electric load following control strategy. The statistical comparison was made both for the whole database and the segregated data by system mode operation. The good agreement found in the predictions of net electric power production, useful thermal output and primary power consumption allowed to conclude that the Annex 42 model can be used to carry out a detailed performance assessment in order to examine the applicability of the AISIN SEIKI unit for supplying building electrical and thermal energy requirements according to different load profiles during annual or multi-year operation.
机译:全球范围内对更高效,污染更少的能源生产形式的需求不断增长,这引起了人们对在住宅中使用微型热电联产技术的新兴趣。在其他技术中,基于内燃机的微型热电联产设备由于其高效率,燃料灵活性,低排放,低噪音和振动等优点,已成为市场认可的技术。为了探索和评估在住宅部门中使用基于内燃机的热电联产系统的可行性,需要一种准确而实用的仿真模型,该模型可用于进行敏感性分析和假设分析。在IEA / ECBCS附件42中已经开发了住宅热电联产设备模型,并将其实施到许多建筑物模拟程序中。该模型可能能够准确预测住宅热电联产设备的热和电输出,但是它几乎完全依赖于经验数据,因为该模型规范使用性能图中包含的实验测量值来表示设备特定的性能特征以及热质量。元素来表征设备的动态热性能。在那不勒斯第二大学的建筑环境控制实验室,可以使用基于天然气燃料的往复式内燃机的爱信精机微型热电联产设备。为了校准和验证附件42模型,该设备已经过大量测试。本文详细显示了针对校准活动进行的一系列实验,并通过将模拟预测与通过遵循控制策略在电负载下运行系统得出的测量结果进行对比,从而检验了该模型的有效性。通过系统模式操作对整个数据库和隔离的数据进行统计比较。在对净发电量,有用的热输出和一次能源消耗的预测中找到了良好的协议,可以得出结论,可以使用附件42模型进行详细的性能评估,以检查爱信精机机组在以下方面的适用性:在年度或多年运营期间,根据不同的负载曲线来提供建筑物的电能和热能需求。

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