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of computational fluid dynamics (CFD) models describing thermochemical conversion processes of biomass and waste-derived fuels, including combustion, pyrolysis, and gasification. The successful candidate will
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mechanics, inert, anisothermal and reactive fluids, to effects related to complementary physical properties of thermal, combustion and detonation. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre
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physical properties of thermal, combustion and detonation. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UPR3346-NADMAA-157/Candidater.aspx Requirements Research FieldEngineeringEducation
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mechanics, inert, anisothermal and reactive fluids, to effects related to complementary physical properties of thermal, combustion and detonation. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre
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to complementary physical properties of thermal, combustion and detonation. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UPR3346-NADMAA-156/Candidater.aspx Requirements Research
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geometry and injection strategies, thereby overcoming ammonia's naturally poor combustion properties Where to apply Website https://www.upv.es/entidades/vinv/programas-de-apoyo-a-la-idi-recursos-humanos
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postdoctoral researchers Current activities in the host team: physicochemical analyses using mass spectrometry and optical spectroscopy (secondary organic aerosols, combustion, microplastics, photodegradation
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Qualification Type: PhD Location: Brunel University of London Award duration: 4 years Start Date: Latest start date 1 October 2026 Food processing currently relies heavily on the combustion
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understanding how ozone and secondary aerosols form and evolve as plumes age and disperse. Identifying the key controlling factors, such as vegetation type and moisture, combustion intensity and phase, injection
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cooling" on near-wall flame propagation and incomplete combustion emissions. The research outcomes will provide fundamental theoretical support for the advancement of high-pressure direct-injection methanol