The present work is focused on electric generation for stationary applications. The dynamic behavior of a PEMFC-based system has been investigated at both constant and variable load conditions from an experimental point of view. An analysis of efficiency as a function of time has been proposed to summarize the dynamic performance; moreover, current intensity and voltage have been considered as main parameters of interest from the electric point of view. In addition, other energetic and thermodynamic parameters have been studied in this work. The experimental campaign has been carried out over four test typologies: constant load; increasing and decreasing load; random load. These tests have been planned to challenge the system with a variety of load-based cycles, in the frame of a thorough simulation of real-load conditions.
Fuel cell systems and traditional Technologies. Part II: Experimental study on dynamic behavior of PEMFC in stationary power generation / Venturelli, Lucia; Santangelo, Paolo Emilio; Tartarini, Paolo. - In: APPLIED THERMAL ENGINEERING. - ISSN 1359-4311. - STAMPA. - 29:17-18(2009), pp. 3469-3475. [10.1016/j.applthermaleng.2009.05.023]
Fuel cell systems and traditional Technologies. Part II: Experimental study on dynamic behavior of PEMFC in stationary power generation
Venturelli, Lucia;Santangelo, Paolo Emilio
;Tartarini, Paolo
2009
Abstract
The present work is focused on electric generation for stationary applications. The dynamic behavior of a PEMFC-based system has been investigated at both constant and variable load conditions from an experimental point of view. An analysis of efficiency as a function of time has been proposed to summarize the dynamic performance; moreover, current intensity and voltage have been considered as main parameters of interest from the electric point of view. In addition, other energetic and thermodynamic parameters have been studied in this work. The experimental campaign has been carried out over four test typologies: constant load; increasing and decreasing load; random load. These tests have been planned to challenge the system with a variety of load-based cycles, in the frame of a thorough simulation of real-load conditions.Pubblicazioni consigliate
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