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Computational Fluid Dynamics for urban physics: Importance, scales, possibilities, limitations and ten tips and tricks towards accurate and reliable simulations [PDF]

open access: yesBuilding and Environment, 2015
Urban physics is the science and engineering of physical processes in urban areas. It basically refers to the transfer of heat and mass in the outdoor and indoor urban environment, and its interaction with humans, fauna, flora and materials.
Bert Blocken
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The Physics of computing and computing with Physics

2022
Abstract This Chapter shows that any physical system performs some type of computation, with the observers providing meaning (semantics) to such a computation. It then introduces an equivalence principle between physical (semantic) information and computation. Finally, it discusses the general criteria shared by all MemComputing machines.
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Physical computation

Concurrency: Practice and Experience, 1991
AbstractPhysical computation embraces a variety of physical analogies used to tackle non‐traditional problems. We describe Monte Carlo and deterministic methods, including simulated annealing and neural networks. Applications include economic change in Eastern Europe, the travelling salesman problem, vehicle navigation, track finding, and parallel ...
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The Physics of Quantum Computation

International Journal of Quantum Information, 2014
Quantum computation has emerged in the past decades as a consequence of down-scaling of electronic devices to the mesoscopic regime and of advances in the ability of controlling and measuring microscopic quantum systems. Quantum computation has many interdisciplinary aspects, ranging from physics and chemistry to mathematics and computer science.
FALCI, Giuseppe, PALADINO, ELISABETTA
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Computational physics with PetaFlops computers

Computer Physics Communications, 2009
Abstract Driven by technology, Scientific Computing is rapidly entering the PetaFlops era. The Julich Supercomputing Centre (JSC), one of three German national supercomputing centres, is focusing on the IBM Blue Gene architecture to provide computer resources of this class to its users, the majority of whom are computational physicists.
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The physical basis of computability

Computing in Science & Engineering, 2002
Simulations work in practice because they exploit higher-level organizing principles in nature. Good code writing requires faithfulness to these principles and the discipline not to exceed their limits of validity. An important exception is the use of simulation to search for new kinds of emergence.
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Computational physics: a perspective

Philosophical Transactions of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences, 2002
Computing comprises three distinct strands: hardware, software and the ways they are used in real or imagined worlds. Its use in research is more than writing or running code. Having something significant to compute and deploying judgement in what is attempted and achieved are especially challenging. In science or engineering, one must define a central
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