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Titlebook: High Performance Computing in Fluid Dynamics; Proceedings of the S P. Wesseling Conference proceedings 1996 Kluwer Academic Publishers 1996

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M. Strengprioritize the user in making a decision and ultimately calculates a steering direction that avoids obstacles. An extensible mathematical model is devised by relying on lidar and ultrasonic sensors. Simulations have been carried out, confirming the effectiveness of this proof-of-concept.
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Data-Parallel Solution of the Incompressible Navier-Stokes Equations, convective and diffusive terms are treated explicitly. Nevertheless, the data-parallel methods that are used in the two applications are not the same. In particular, the methods for solving the pressure from a Poisson equation differ, and yet both methods are efficient within the context of their own application.
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High Performance Computing: Trends and Expectations,e some insight in to-be-expected hardware and software. All aspects that together constitute HPC will be discussed: processors, memory, architectures, parallelism, message-passing, cache coherency, compilers, etc. Also developments in the area of Computational Fluid Dynamics will be touched upon, in relation to HPC.
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D. R. Emerson the system is also able to measure fuel’s consumption, instantaneous engine speed of rotation and air-fuel ratio, showing all the running parameters both on a local LCD display and on a PC based graphical user interface.
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P. H. Michielseer, a low power implementation of Pan and Tompkins algorithm for QRS extraction is proposed. Results show that an appropriate hardware implementation significantly reduces the DSP portion power consumption of the algorithm compared with other implementation proposed in literature.
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