Nishad, Kaushal 1980-
Nishad, Kaushal Prasad 1980-
Kaushal Nishad researcher
VIAF ID: 301735073 (Personal)
Permalink: http://viaf.org/viaf/301735073
Preferred Forms
- 100 0 _ ‡a Kaushal Nishad ‡c researcher
- 100 1 _ ‡a Nishad, Kaushal Prasad ‡d 1980-
- 100 1 _ ‡a Nishad, Kaushal ‡d 1980-
4xx's: Alternate Name Forms (3)
5xx's: Related Names (3)
- 551 _ _ ‡a Darmstadt ‡4 ortw ‡4 https://d-nb.info/standards/elementset/gnd#placeOfActivity
- 551 _ _ ‡a Durg ‡g Madhya Pradesh ‡4 ortg ‡4 https://d-nb.info/standards/elementset/gnd#placeOfBirth
- 510 2 _ ‡a Technische Universität Darmstadt ‡b Fachgebiet für Energie- und Kraftwerkstechnik ‡4 affi ‡4 https://d-nb.info/standards/elementset/gnd#affiliation ‡e Affiliation
Works
Title | Sources |
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Database of Near-Wall Turbulent Flow Properties of a Jet Impinging on a Solid Surface under Different Inclination Angles | |
Estimation of Entropy Generation in a SCR-DeNOx System with AdBlue Spray Dynamic Using Large Eddy Simulation | |
Exergy Losses Analysis in Adiabatic Combustion Systems including the Exhaust Gas Exergy | |
Experimental Investigation of AdBlue Film Formation in a Generic SCR Test Bench and Numerical Analysis Using LES | |
Modeling and unsteady simulation of turbulent multi-phase flow including fuel injection in IC-engines | |
Near-Wall Thermal Processes in an Inclined Impinging Jet: Analysis of Heat Transport and Entropy Generation Mechanisms | |
Numerical Investigation of AdBlue Droplet Evaporation and Thermal Decomposition in the Context of NOx-SCR Using a Multi-Component Evaporation Model | |
Numerical Investigation of Flow through a Valve during Charge Intake in a DISI -Engine Using Large Eddy Simulation | |
Prediction of Heat Transfer and Fluid Flow Effects on Entropy Generation in a Monolithic Catalytic Converter Using Large-Eddy Simulation | |
Predictions of Conjugate Heat Transfer in Turbulent Channel Flow Using Advanced Wall-Modeled Large Eddy Simulation Techniques | |
Thermal Decomposition of a Single AdBlue® Droplet Including Wall–Film Formation in Turbulent Cross-Flow in an SCR System |