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Department of Materials Engineering and Construction Processes

Paweł Niewiadomski

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Paweł Niewiadomski, PhD Eng

pawel.niewiadomski@pwr.edu.pl, office hours for students, building C-7, room 716.
Web pages:
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Education:

  • 2013-2017 Wrocław University of Science and Technology, Faculty of Civil Engineering; PhD studies
  • 2012-2013 Wrocław University of Technology, Faculty of Civil Engineering; Master studies (Building structures)
  • 2011-2012 Universidad de La Laguna (Spain); Erasmus student exchange program
  • 2008-2012 Wrocław University of Technology; Faculty of Civil Engineering; Bachelor engineer studies (Construction Engineering)

Internships:

1. Tutor: prof. Andrzej Ćwirzeń, center: Department of Civil Engineering, Aalto University, Helsinki, Finland, duration of the internship: August 15, 2014 - September 14, 2014

2. Tutor: prof: Andrzej Ćwirzeń, center: Department of Civil, Environmental and Natural Resources Engineering, Luleå University of Technology, Luleå, Sweden, duration of the internship: August 12, 2016 - August 26, 2016


Projects:

1. Project title: Influence of the addition of selected nanoparticles on the properties of self-compacting concrete
Source of financing: funds from the Rector's reserve
Partners: Aalto University, Luleå University of Technology
Implementation period: 10.2014 - 09.2018
Role in the project: manager / contractor
Budget: PLN 50,000

2. Project title: Methods and ways of protection and defense against HPM pulses
Project co-financed by the National Center for Research and Development under the competition No. 1 / PS / 2014 for the implementation of projects under the Strategic Program entitled: "New weapons and defense systems in the field of directed energy"
Partners: Military University of Technology, Warsaw University of Technology, PITRADWAR S.A., Wrocław University of Technology, Air Force Institute of Technology, Radiotechnika Marketing Sp. z o.o., Pol-Spec-Tech-Service
Implementation period: 01.2018 - 09.2020
Role in the project: contractor / assistant
Budget: PLN 400 million (maximum cost of the entire program) - info

3. Project title: Mobile Pro-ecological House of Cardboard - R&D works on the use of cellulose-based materials in architecture
Project financed by the National Center for Research and Development under the LIDER XI program
Partners: EP sp.z o.o., Regioprojekt, Schumacher Packaging, Lądek-Zdrój commune
Implementation period: 05.2021 - 05.2023
Role in the project: constructor - specialist in structural calculations, creation and modification of materials and composites, building mechanics and design
Budget: PLN 1 426 256.51 - info PWr

4. Project title: Preliminary research towards partial substitution of cement in cement composites with waste material from refining processes in the processing of crude oil in the form of spent catalytic cracking catalyst
Project financed by the National Center of Science under the MINIATURA 5 program
Implementation period: 10.2021 – 09.2022
Role in the project: manager
Budget: PLN 14 432,00 - info PWr


Selected articles:

1. Hassan Abdolpour, Paweł Niewiadomski, Łukasz Sadowski, Recycling of steel fibres and spent equilibrium catalyst in ultra-high performance concrete: Literature review, research gaps, and future development. Construction and Building Materials. 2021, vol. 309, nr 125147, s. 1-19.
2. Furqan Farooq, Sławomir Czarnecki, Paweł Niewiadomski, Fahid Aslam, Hisham Alabduljabbar, Krzysztof Adam Ostrowski, Klaudia Śliwa-Wieczorek, Tomasz Nowobilski, Seweryn Malazdrewicz, A Comparative Study for the Prediction of the Compressive Strength of Self-Compacting Concrete Modified with Fly Ash. Materials. 2021, vol. 14, nr 17, art. 4934, s. 1-16.
3. Ayaz Ahmad, Furqan Farooq, Paweł Niewiadomski, Krzysztof Ostrowski, Arslan Akbar, Fahid Aslam, Rayed Alyousef; Prediction of compressive strength of fly ash based concrete using individual and ensemble algorithm. Materials. 2021, vol. 14, nr 4, art. 794, s. 1-21.
4. Paweł Niewiadomski, Jerzy Hoła; Failure process of compressed self-compacting concrete modified with nanoparticles assessed by acoustic emission method. Automation in Construction. 2020, vol. 112, art. 103111, s. 1-8.
5. Paweł Niewiadomski, Damian Stefaniuk; Creep assessment of the cement matrix of self-compacting concrete modified with the addition of nanoparticles using the indentation method. Applied Sciences. 2020, vol. 10, nr 7, art. 2442, s. 1-11.
6. Damian Stefaniuk, Paweł Niewiadomski, Michał P. Musiał, Dariusz Łydżba; Elastic properties of self-compacting concrete modified with nanoparticles : multiscale approach. Archives of Civil and Mechanical Engineering. 2019, vol. 19, nr 4, s. 1150-1162.
7. Paweł Niewiadomski, Jerzy Hoła, Andrzej Ćwirzeń; Study on properties of self-compacting concrete modified with nanoparticles. Archives of Civil and Mechanical Engineering. 2018, vol. 18, nr 3, s. 877-886.

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