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Titlebook: Control of Fuel Cell Power Systems; Principles, Modeling Jay T. Pukrushpan,Anna G. Stefanopoulou,Huei Peng Book 2004 Springer-Verlag London

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楼主: CANTO
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Fuel Cell System Model: Fuel Cell Stack,n models. A block diagram of the stack model is shown in Figure 3.1. A stack thermal submodel can be added in the future when temperature changes are taken into account. The electrochemical reaction happening at the membranes is assumed to occur instantaneously. In this model, the stack temperature
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Fuel Cell System Model: Analysis and Simulation,essure tank, and the humidification of the reactant feeds. In a direct H. system, the PEM fuel cell becomes the main heat source. Due to the low operating temperature in PEMFCs, the dynamics of the stack temperature are considered to be relatively slow and, thus, can be viewed as a separate subsyste
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Air Flow Control for Fuel Cell Cathode Oxygen Reactant,gement [1]. We assume here a perfect air/fuel flow humidifier, and coolers for the incoming air and the stack. These perfect conditions are implemented in the simulation model by either fixing appropriate variables or by employing simple static controllers described in the previous chapter. Moreover
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Natural Gas Fuel Processor System Model,tions, fueling the fuel cell system using natural gas is often preferred because of its wide availability and extended distribution system [36]. Common methods of converting natural gas to hydrogen include steam reforming and partial oxidation. The most common method, steam reforming, which is endot
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Closing Remarks,-designed control system is needed in order to provide fast and consistent transient behavior of the fuel cell system. The overall system for a typical polymer electrolyte membrane fuel cell (PEM-FC) consists of four main subsystems, namely, reactant supply, heat and temperature, water management, a
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Control of Natural Gas Fuel Processor,tarvation or wasted hydrogen [79] and (ii) maintain a desired temperature of the CPDX catalyst bed for high conversion efficiency [91]. Accurate control and coordination of the fuel processor reactant flows can prevent both large deviation of hydrogen concentration in the anode and large excursion of the CPDX catalyst bed temperature.
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Kants ‚höchstes moralisch-physisches Gut‘tial alternative stationary and mobile power source. They complement heat engines and reduce the ubiquitous dependence on fossil fuels and thus have significant environmental and national security implications. As such, they are actively studied for commercial stationary power generation, residentia
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