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A novel scheme for precise diagnostics and effective stabilization of currents in a fuel cell stack
(2010)
A novel scheme for detecting inhomogeneous internal currents in a fuel cell stack is presented. In this paper the scheme is investigated for the case that the flow field plates consist of graphite. Then plates of high conductivity, e.g. aluminium between the flow field plates together with small slits in these plates have three effects: (a) Whenever a local inhomogeneity of the electric current occurs at a particular cell in the stack, this will induce a surface current close to that cell perpendicular to the averaged current. This current can be detected. (b) The plates of high conductivity completely prevent the inhomogeneities from spreading to neighbouring cells. (c) Even at the particular cell the inhomogeneity is suppressed as far as possible. Thus this scheme leads to much better diagnostic possibilities and at the same time reduces electric instabilities to an extent, where they probably become harmless. This scheme will first be explained for a simple model to clarify the idea. However, very precise three dimensional computations using realistic parameters are presented, corroborating the results of the simple model.
A novel tomographic scheme for analysing the state of any single membrane electrode assembly (MEA) in a stack is suggested. Plates of very high conductivity placed between every fuel cell and slitted in an appropriate manner cause surface currents at well-defined locations of the stack. We show that knowing these surface currents, information about anomalies of the currents in a MEA can be obtained using the methods of tomography. The results are mathematically not unique. However, when assuming plausible defect structures, one can exclude improbable deficiencies by applying a special form of simulated annealing. We present numerical calculations of typical examples demonstrating that the essential defects of the MEA in any single cell of the stack can be detected and their extent can be determined.
Unter Energieeffizienz wird verstanden, dass ein definiertes Ziel mit möglichst wenig Energie erreicht wird. Im Beitrag wird zunächst eine Formel zur Berechnung der Gesamtenergieeffizienz eines Gebäudes angegeben. Darauf aufbauend wird ein 3-Säulen-Modell zur Energieeinsparung vorgeschlagen. Es beinhaltet vereinfachte Verfahren zur Berechnung der Betriebseigenschaften von Heizanlagen, raumlufttechnischen Anlagen und Kühl- und Kaltwasseranlagen. Am Beispiel einer RLT-Anlage wird die Vorgehensweise der Bewertung näher erläutert. Zusammenfassend wird festgestellt, dass das vereinfachte Verfahren eine schnelle und sichere energetische Bewertung der genannten Anlagen erlaubt,, zu Präsenzwissen führt, die Haupteinflussgrößen aufzeigt und eine Anlagenbewertung ohne Gebäudebewertung gewährleistet. Das vereinfachte Verfahren wird im Frühjahr 2011 verfügbar sein. Es soll Bestandteil der DIN V 18599 werden, und die EnEV 2012 soll darauf Bezug nehmen.
Normative Regulations
(2010)
Following the success of PET/CT during the last decade and the recent increasing proliferation of SPECT/CT, another hybrid imaging instrument has been gaining more and more interest: MR-PET. First combined, simultaneous PET and MR studies carried out in small animals demonstrated the feasibility of the new approach. Concurrently, some prototypes of an MR-PET scanner for simultaneous human brain studies have been built, their performance is being tested and preliminary applications have already been shown. Through this pioneering work, it has become clear that advances in the detector design are necessary for further optimization.
Recently, the different issues related to the present state and future prospects of MR-PET were presented and discussed during an international 2-day workshop at the Forschungszentrum Jülich, Germany, held after, and in conjunction with, the 2008 IEEE Nuclear Science Symposium and Medical Imaging Conference in Dresden, Germany on October 27–28, 2008. The topics ranged from small animal MR-PET imaging to human MR-BrainPET imaging, new detector developments, challenges/opportunities for ultra-high field MR-PET imaging and considerations of possible future research and clinical applications. This report presents a critical summary of the contributions made to the workshop.