Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Claudio Poggiani is active.

Publication


Featured researches published by Claudio Poggiani.


THE INTERNATIONAL JOURNAL OF COMPUTATIONAL METHODS AND EXPERIMENTAL MEASUREMENTS | 2016

Numerical Study Of The Separation Efficiency And Heat Exchange Performance In A Complex Gas–solid Separator

Francesco Mariani; Francesco Risi; Claudio Poggiani

This work presents a study on a gas–solid cyclone separator used in a complex cement production plant. The main objective of the study is based on the performance evaluation and optimization of the cyclone separator in terms of particle separation and heat transfer efficiencies, while keeping pressure losses under control. The thermal interaction is between two gas–solid mixtures, one at 850°C and the other at 600°C, respectively. The solid phase consists mostly of calcium carbonate subsequently intended to the so-called baking process for the production of clinker and ultimately cement. A first model has been setup using experimental data as boundary conditions to assess the physical model behavior and the CFD solver parameters. After that, five additional models with different geometries have been analyzed to evaluate the influence of the vortex finder (vf) length on the separation efficiency and on the heat exchange performance. By increasing the length of the vf, the results show a global improvement in the separation efficiency of up to 5% if compared to the geometry without the vf. Further, the increase in the vf length determines a monotonic decrease of temperature at the exit but a monotonic increase of pressure losses. In the second part of this work, using one of the previous models with vf, a study of the influence of the particle diameter on the separation efficiency has been performed. The increase of particle diameter causes an increase of the separation and thermal exchange performance, decreasing at the same time the pressure drop. The numerical approach for all the cases is based on implicit unsteady simulations using the Eulerian Multiphase model.


SAE International journal of engines | 2015

Prediction of the Nozzle Flow and Jet Characteristics at Start and End of Injection: Transient Behaviors

Michele Battistoni; Claudio Poggiani; Sibendu Som


SAE 2015 World Congress & Exhibition | 2015

An Integrated Simulation Methodology of Thermal Management Systems for the CO 2 Reduction after Engine Cold Start

Carlo N. Grimaldi; Claudio Poggiani; Alessandro Cimarello; Matteo De Cesare; Giovanni Osbat


Energy Procedia | 2015

Combustion CFD modeling of a spark ignited optical access engine fueled with gasoline and ethanol

Michele Battistoni; Francesco Mariani; Francesco Risi; Claudio Poggiani


SAE 2016 World Congress and Exhibition | 2016

Optical Investigations on a Multiple Spark Ignition System for Lean Engine Operation

Claudio Poggiani; Alessandro Cimarello; Michele Battistoni; Carlo N. Grimaldi; Massimo Dal Re; Matteo De Cesare


Energy Procedia | 2015

Experimental Characterization of a Multiple Spark Ignition System

Claudio Poggiani; Michele Battistoni; Carlo N. Grimaldi; Adriano Magherini


SAE 2013 World Congress & Exhibition | 2013

Experimental Investigation of a Port Fuel Injected Spark Ignition Engine Fuelled with Variable Mixtures of Hydrogen and Methane

Michele Battistoni; Claudio Poggiani; Carlo N. Grimaldi


Energy Procedia | 2014

Combustion Analysis in an Optical Access Engine

Giovanni Donadio; Claudio Poggiani; Lorenzo Rondoni; Carlo N. Grimaldi; Matteo De Cesare; Nazario Bellato


Energy Procedia | 2015

Heat Exchange and Separation Efficiency in a Cluster of Gas-solid Separators in a Complex Cement Production Plant☆

Francesco Risi; Claudio Poggiani


Energy Procedia | 2015

Formula-SAE Racing Car: Experimental and Numerical Analysis of the External Aerodynamics

Francesco Mariani; Claudio Poggiani; Francesco Risi; Lorenzo Scappaticci

Collaboration


Dive into the Claudio Poggiani's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Sibendu Som

Argonne National Laboratory

View shared research outputs
Researchain Logo
Decentralizing Knowledge