By Maria da Graca Carvalho, Naim Hamdia Afgan (eds.)
New and renewable strength platforms will play an enormous function within the sustainable improvement of a destiny power procedure. contemporary improvement during this box has proved that the digital power approach together with new and renewable power assets is possible. The promoting of renewable resources of power is a excessive precedence, for protection and diversification of power offer, environmental safety, and social and fiscal harmony. This quantity discusses the most recent learn on new and renewable strength assets and their usage, emphasizing the current cutting-edge within the box and power destiny improvement.
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Schematic of the MH/TEG interface. Table 1. Specification for the TEG-unit. 3 6-9 25 Vdc Adc Nl/min kg Comment Bismuth-telluride @AT = 80°C @ AT = 80°C @ AT = 80°C J. Erihen et al, 44 Table 2. Specification for the MH-storage. Parameter Hydride alloy Nominal H2-capacity Hydride amount Volume, MH canister Volume, water canister Max. pressure, H2 Max. pressure, water Max. 75 10 6 80 Unit Nm3 kg 1 1 bar, bar, "C Comment AB2-type hydride Approximate value Approximate value Approximate value Approximate value 4.
Load duration curves for diesel generators. 9. Results for 100% Hourly Penetration: Cases 2 , 4 and 6 Cases 2 , 4 and 6 differ in technologies installed, regarding both generation and possibility of storage of surplus energy, but they all allow for 100% penetration of intermittent renewable sources. Also, Cases 4 and 6 represent 100% Renewable Scenaria for electricity generation. Fig. 10 shows the equipment power and storage capacity that should be installed for each scenarium, in 2010: Energy Planning for the Penetration ofRES .
System of Reference In order to identify the potential for such integrated MH/TEG-units, a TEG-model has been developed that is currently being verified based on laboratory experiments and consequent modelling runs. The TEG of reference to this work, a C16 Thennator, was obtained from Varmaraf ehf  and integrated into an existing test-bench facility for R&D in hydrogen energy technology at IFE . In addition to the TEG-unit, the testbench setup includes a MH-storage, photovoltaics, a proton exchange membrane (PEM) fuel cell (FC), secondary batteries, and an electronic load connected such that each component can be operated individually, at subsystem level, or at system level, Fig.