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of the EPSRC CDT in Developing National Capability for Materials 4.0, with the Henry Royce Institute. ‘Agent-based’ modelling (ABM) simulates large numbers of autonomous yet interacting entities and in Sheffield
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activity concerns the development, implementation, and analysis of continuous stochastic mesoscale models for the description of phase change processes, such as evaporation, condensation, and nucleation. In
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will focus on diffuse interface models based on the Navier–Stokes–Korteweg equations. Activities include the study of droplet and bubble dynamics in multiphase flows. Numerical simulations will be
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simulations and thermal comfort analyses by developing fast parametric algorithms and data-driven surrogate modelling approaches capable of predicting dynamic outdoor thermal comfort with high accuracy
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models developed as surrogates for the computationally expensive KMC simulations. The existing workflow will be extended to include the additional photo(electro)chemical variables. Where to apply Website
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Associação do Instituto Superior Técnico para a Investigação e Desenvolvimento _IST-ID | Portugal | about 1 hour ago
- Generalisation of laser plasma models for different instabilities; synthesis of radiation diagnostics Translated with https://laratranslate.com (Present a resume of the activities to carry out, the objectives
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droplets and produce polar stratospheric clouds. Model the impacts of Al-containing particles on stratospheric ozone by activating the HCl reservoir and changing the frequency of PSC formation. Simulate with
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simulations provide a gold standard method for quantifying radiation exposure, offering precise modeling of particle interactions with matter. Through this approach, it is possible to characterize exposure
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geometry modelling, finite element simulation, optimisation, and will explore the opportunities for AI to enhance the digital design process. The role holders will carry out analyses, critical evaluations
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to carry out high-performance numerical simulations using our in-house CFD code, extract physical insights from simplified flow models, and characterise synchronisation thresholds and the robustness