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Efficient Simulation of Nonlinear Heat Transfer during Thermal Spraying of Complex Workpieces
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作者 Rolf Berthelsen Thomas Wiederkehr +2 位作者 Ralf Denzer andreas menzel Heinrich Müller 《World Journal of Mechanics》 2014年第9期289-301,共13页
The quality of coatings, produced by thermal spraying processes, considerably decreases with the occurrence of higher residual stresses, which are especially pronounced for complex workpiece geometries. To understand ... The quality of coatings, produced by thermal spraying processes, considerably decreases with the occurrence of higher residual stresses, which are especially pronounced for complex workpiece geometries. To understand the occurring effects and to aid in the planning of coating processes, simulations of the highly transient energy flux of the HVOF spray gun into the substrate are of great value. In this article, a software framework for the simulation of nonlinear heat transfer during (HVOF) thermal spraying is presented. One part of this framework employs an efficient GPU-based simulation algorithm to compute the time-dependent input boundary conditions for a spray gun that moves along a complex workpiece of arbitrary shape. The other part employs a finite-element model for a rigid heat conductor adhering to the computed boundary conditions. The model is derived from the fundamental equations of continuum thermodynamics where nonlinear temperature-depending heat conduction is assumed. 展开更多
关键词 NONLINEAR HEAT Conduction CONTINUUM THERMODYNAMICS GPU COMPUTING
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Field-effect passivation on silicon nanowire solar cells 被引量:5
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作者 Anna Dalmau Mallorqui Esther Alarcon-Llado +6 位作者 Ignasi Canales Mundet Amirreza Kiani Benedicte Demaurex Stefaan De Wolf andreas menzel Margrit Zacharias Anna Fontcuberta i Morra 《Nano Research》 SCIE EI CAS CSCD 2015年第2期673-681,共9页
Surface recombination represents a handicap for high-efficiency solar cells. This is especially important for nanowire array solar cells, where the surface-to-volume ratio is greatly enhanced. Here, the effect of diff... Surface recombination represents a handicap for high-efficiency solar cells. This is especially important for nanowire array solar cells, where the surface-to-volume ratio is greatly enhanced. Here, the effect of different passivation materials on the effective recombination and on the device performance is experimentally analyzed. Our solar cells are large area top-down axial n-p junction silicon nanowires fabricated by means of Near-Field Phase-Shift Lithography (NF-PSL). We report an efficiency of 9.9% for the best cell, passivated with a SiO2/SiNx stack. The impact of the presence of a surface fixed charge density at the silicon/oxide interface is studied. 展开更多
关键词 FIELD-EFFECT PASSIVATION NANOWIRE surface recombination solar cell
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