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Application of an exergy-based thermo characterization approach to diagnose the operation of a biomass-fueled gasifier

机译:基于能值的热表征方法在诊断生物质燃料气化炉运行中的应用

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In this paper the exergy-based thermocharacterization method is used to optimize a small scale downdraft gasifier. The optimization model is based on a Beta-parameter that is used to estimate the variation of exergy change in a component due to either intrinsic or induced malfunctions. As a novelty, the proposed method performs two analyses independently: one to find the variation of efficiency with respect to the change of the system enthalpy and another with respect to the change of the system entropy. This permits to characterize the thermodynamic performance of any gasifier by means of parametric maps. Hence thermo-characterization premises are deeply revised and adapted to the gasifier. To assess the system performance and determine the irreversibilities of the components, a plant simulator is constructed and a parametric study is performed. According to results, the exergy efficiency of the gasifier can be improved from 49.64% to 57.52%.
机译:在本文中,基于火用的热表征方法被用于优化小型下浮式气化炉。优化模型基于Beta参数,该参数用于估算由于固有故障或诱发故障而导致的组件火用变化的变化。作为一种新颖性,所提出的方法独立地进行了两种分析:一种是关于系统焓的变化来发现效率的变化,另一种是关于系统熵的变化来发现效率的变化。这允许通过参数图表征任何气化炉的热力学性能。因此,热表征场所已进行了深刻的修改,并适合气化炉。为了评估系统性能并确定组件的不可逆性,构建了工厂模拟器并执行了参数研究。根据结果​​,气化炉的火用效率可以从49.64%提高到57.52%。

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