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Intensified by Design® for the intensification of processes involving solids handling

Deliverables

Publishable PI case studies

Non-confidential electronic documents that are available for public dissemination and are downloadable from the project website

Training Report

with training materials annexed, and links to online training materials

Interim Communication Report

with all project communication materials annexed.

Review paper of State of the Art in existing PI technologies

paper that will be submitted for peer review

Publishable/Public outputs from WP2

Report that contains the non-confidential information and outputs from the WP that can be available for public dissemination

Publishable/Public outputs from WP3

Report that contains the non-confidential information and outputs from the WP that can be available for public dissemination

Publishable/Public outputs from WP4

Report that contains the non-confidential information and outputs from the WP that can be available for public dissemination

Communication Plan

report with communication materials annexed

Final Communication Report

with all project communication materials annexed.

Project video

short multimedia video that will be viewable from project website, youtube, etc.

Publications

Process control in intensified continuous solids handling

Author(s): Markku Ohenoja, Kamelia Boodhoo, David Reay, Marko Paavola, Kauko Leiviskä
Published in: Chemical Engineering and Processing - Process Intensification, Issue 131, 2018, Page(s) 59-69, ISSN 0255-2701
DOI: 10.1016/j.cep.2018.07.008

Towards process intensification: Remediation of fouling in continuous microscale synthesis of phosphated TiO 2

Author(s): Martin Hochstrasser, Daniel Jussen, Peter Riedlberger
Published in: Chemical Engineering and Processing: Process Intensification, Issue 121, 2017, Page(s) 15-23, ISSN 0255-2701
DOI: 10.1016/j.cep.2017.07.024

A review of process intensification applied to solids handling

Author(s): Haoyu Wang, Ahmad Mustaffar, Anh N. Phan, Vladimir Zivkovic, David Reay, Richard Law, Kamelia Boodhoo
Published in: Chemical Engineering and Processing: Process Intensification, Issue 118, 2017, Page(s) 78-107, ISSN 0255-2701
DOI: 10.1016/j.cep.2017.04.007

Hybrid heat pipe screw dryer: A novel, continuous and highly energy-efficient drying technology

Author(s): Ahmad Mustaffar, Anh Phan, Kamelia Boodhoo
Published in: Chemical Engineering and Processing - Process Intensification, Issue 128, 2018, Page(s) 199-215, ISSN 0255-2701
DOI: 10.1016/j.cep.2018.04.035

Process intensification – Overcoming impediments to heat and mass transfer enhancement when solids are present, via the IbD project

Author(s): Richard Law, Colin Ramshaw, David Reay
Published in: Thermal Science and Engineering Progress, Issue 1, 2017, Page(s) 53-58, ISSN 2451-9049
DOI: 10.1016/j.tsep.2017.02.004

A GPU-based coupled SPH-DEM method for particle-fluid flow with free surfaces

Author(s): Yi He, Andrew E. Bayly, Ali Hassanpour, Frans Muller, Ke Wu, Dongmin Yang
Published in: Powder Technology, Issue 338, 2018, Page(s) 548-562, ISSN 0032-5910
DOI: 10.1016/j.powtec.2018.07.043

Coupling CFD-DEM with dynamic meshing: A new approach for fluid-structure interaction in particle-fluid flows

Author(s): Yi. He, Andrew E. Bayly, Ali Hassanpour
Published in: Powder Technology, Issue 325, 2018, Page(s) 620-631, ISSN 0032-5910
DOI: 10.1016/j.powtec.2017.11.045

Environmental Problems and In-ventive Solution Principles in Process Engineering

Author(s): Livotov, P., Mas’udah, Chandra Sekaran A.P., et al.
Published in: In: Cavallucci, D., de Guio, R., Koziolek, S. (Eds.) Automated Invention for Smart Industries. Proceedings of the 18th International TRIZ Future Conference 2018, Strasbourg, France, October 29-31, 2018, 2018, Page(s) 27-36

Advanced innovation design approach for process engineering

Author(s): Didier Casner, Pavel Livotov
Published in: Proceedings of the 21st International Conference on Engineering Design (ICED17), Vancouver, Canada, 21.-25.08.2017., Issue Vol. 4: Design Methods and Tools, 2017, Page(s) 653-662

High temperature fluidization - influence of inter-particle forces on fluidization behavior

Author(s): Mihajlovic, Milan; Roghair, Ivo; Annaland, Martin van Sint
Published in: Proceedings of the 12 th International Conference on Computational Fluid Dynamics in the Oil & Gas, Metallurgical and Process Industries, 2017

On the Efficiency of TRIZ Application for Process Intensification in Process Engineering

Author(s): Pavel Livotov, Mas’udah, Arun Prasad Chandra Sekaran
Published in: Automated Invention for Smart Industries, 2018, Page(s) 126-140
DOI: 10.1007/978-3-030-02456-7_11

Systematic innovation in process engineering: Linking TRIZ and process intensification

Author(s): Pavel Livotov, Arun Prasad Chandra Sekaran, Richard Law, Mas’udah, David Reay
Published in: Advances in Systematic Chemistry, 2018, Page(s) 27-44

Control Design Tools for Intensified Solids Handling Process Concepts

Author(s): Markku Ohenoja, Marko Paavola, Kauko Leiviskä
Published in: Advances in Systematic Creativity - Creating and Managing Innovations, 2019, Page(s) 167-180
DOI: 10.1007/978-3-319-78075-7_11

Identification of Secondary Problems of New Technologies in Process Engineering by Patent Analysis

Author(s): Pavel Livotov, Mas’udah, Arailym Sarsenova, Arun Prasad Chandra Sekaran
Published in: Advances in Systematic Chemistry, 2018

TRIZ-Based Approach for Process Intensification and Problem Solving in Process Engineering: Concepts and Research Agenda

Author(s): Didier Casner, Pavel Livotov, Mas’udah, Patricia Kely da Silva
Published in: Advances and Impacts of the Theory of Inventive Problem Solving - The TRIZ Methodology, Tools and Case Studies, 2018, Page(s) 217-229
DOI: 10.1007/978-3-319-96532-1_20