Kontakt:
- email:
- jcieslin@pg.edu.pl
Zajmowane stanowiska:
Profesor
- miejsce pracy:
- Instytut Energii
Budynek Laboratorium Maszynowego pokój 110
- telefon:
- (58) 347 16 22

Publikacje:
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Publikacja
- M. Fabrykiewicz
- J. Cieśliński
- APPLIED THERMAL ENGINEERING - Rok 2024
This paper deals with thermal energy storage with use of nanoparticle enhanced phase change material in shell-and-multitube unit. The experiments are conducted under atmospheric pressure. Paraffin wax and two different fatty acids are used as base phase change material. Graphite and multi-walled carbon nanotubes serve as nanoparticles. Graphite nanoparticles are tested at the concentrations of 0.1%, 1% and 5% by weight, while multi-walled...
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Publikacja
- J. Cieśliński
- P. Kozak
- ENERGIES - Rok 2023
A comprehensive review of published works dealing with experimental studies of forced convection heat transfer of nanofluids is presented. The survey is limited to straight, smooth, and round tubes. Moreover, only mono nanofluids exhibiting Newtonian behaviour are considered. Works on experimental research of forced convection in tubes are presented in a chronological order in the first part of the article. In this part, attention...
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Publikacja
- J. Cieśliński
- M. Fabrykiewicz
- T. Wiśniewski
- M. Kubiś
- S. Smolen
- A. Eicke
- K. Dutkowski
- M. Głuszek-Czarnecka
- Archives of Thermodynamics - Rok 2023
Although there are many methods and instruments for measuring viscosity, it is still difficult to determine a reliable value of the dynamic viscosity of complex chemicals such as paraffins and fatty acids. This is due to the complex and heterogeneous structure of these compounds in the case of commercial products. On the other hand, the measuring instrument should be selected very carefully, including its measuring principle and...
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Publikacja
- Acta Mechanica et Automatica - Rok 2023
Ensuring the stability is a key issue to be solved for the technical application of nanocomposites. In this work, fatty acid P1801 served as base phase change material (PCM)P1801, and its main ingredients are palmitic acid (58%) and stearic acid (38%). Titania (TiO2) and alumina (Al2O3) with mass concentrations of 1% and 5% were selected as nanoparticles, while polyvinylpyrrolidone (PVP) or oleic acid (OA) with mass concentrations...
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Publikacja
- ENERGIES - Rok 2023
The paper presents a survey of the experimental and numerical studies of shell-and-tube systems in which phase change material (PCM) is used. Due to the multitude of design solutions for shell-and-tube systems, the emphasis is placed on double-tube (DT), triplex-tube (TT), and multitube (MT) units. Additionally, only single-pass systems are considered. Particular attention is paid to the method of heat transfer intensification....
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