Łapka Piotr
Łapka Piotr
Institute of Heat Engineering, Warsaw University of Technology
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Cited by
Cited by
Numerical modelling and experimental studies of thermal behaviour of building integrated thermal energy storage unit in a form of a ceiling panel
M Jaworski, P Łapka, P Furmański
Applied Energy 113, 548-557, 2014
Fixed Cartesian grid based numerical model for solidification process of semi-transparent materials I: modelling and verification
P Łapka, P Furmański
International Journal of Heat and Mass Transfer 55 (19-20), 4941-4952, 2012
Influence of Hemp Shives Size on Hygro-Thermal and Mechanical Properties of a Hemp-Lime Composite
P Brzyski, M Gładecki, M Rumińska, K Pietrak, M Kubiś, P Łapka
Materials 13 (23), 5383, 2020
Numerical simulation of the solar thermal energy storage system for domestic hot water supply located in south Spain
J Torres Ledesma, P Łapka, R Domański, FS Casares
Thermal Science 17 (2), 431-442, 2013
Experimental study and numerical modeling of micro-channel cooler with micro-pipes for high-power diode laser arrays
A Kozłowska, P Łapka, M Seredyński, M Teodorczyk, ...
Applied Thermal Engineering 91, 279-287, 2015
Numerical modelling of solidification processes of semitransparent materials using the enthalpy and the finite volume methods
P Łapka, P Furmański
Heat and mass transfer 44 (8), 937-957, 2008
On the anisotropy of thermal conductivity in ceramic bricks
M Kubiś, K Pietrak, Ł Cieślikiewicz, P Furmański, M Wasik, M Seredyński, ...
Journal of Building Engineering 31, 101418, 2020
Numerical modelling of transient heat and moisture transport in protective clothing
P Łapka, P Furmański, TS Wisniewski
Journal of Physics: Conference Series 676 (1), 012014, 2016
Fixed Cartesian grid based numerical model for solidification process of semi-transparent materials II: Reflection and refraction or transmission of the thermal radiation at …
P Łapka, P Furmański
International Journal of Heat and Mass Transfer 55 (19-20), 4953-4964, 2012
Fixed grid simulation of radiation-conduction dominated solidification process
P Łapka, P Furmański
Journal of Heat Transfer - Transactions of The Asme 132 (2), 1-10, 2010
Evaluation of a human skin surface temperature for the protective clothing–Skin system based on the protective clothing–skin imitating material results
P Furmański, P Łapka
International Journal of Heat and Mass Transfer 114, 1331-1340, 2017
Simplified thermo-fluid model of an engine cowling in a small airplane
P Łapka, M Seredyński, P Furmański, A Dziubiński, J Banaszek
Aircraft Engineering and Aerospace Technology: An International Journal 86 …, 2014
Optimization of a microchannel heat sink using entropy minimization and genetic aggregation algorithm
M Mieczkowski, P Furmański, P Łapka
Applied Thermal Engineering 191, 116840, 2021
Preliminary mathematical and numerical transient models of convective heating and drying of a brick
P Łapka, M Wasik, P Furmański, M Seredyński, Ł Cieślikiewicz, K Pietrak, ...
MATEC Web of Conferences 240, 01022, 2018
Front tracking method in modeling transport phenomena accompanying liquid–solid phase transition in binary alloys and semitransparent media
M Seredyński, P Łapka, J Banaszek, P Furmański
International Journal of Heat and Mass Transfer 90, 790-799, 2015
Analysis of Non-Equilibrium and Equilibrium Models of Heat and Moisture Transfer in a Wet Porous Building Material
M Seredyński, M Wasik, P Łapka, P Furmański, Ł Cieślikiewicz, K Pietrak, ...
Energies 13 (1), 214, 2020
Initial credibility analysis of a numerical model of heat and moisture transfer in porous building materials
M Wasik, Ł Cieślikiewicz, P Łapka, P Furmański, M Kubiś, M Seredyński, ...
AIP Conference Proceedings 2078 (1), 020106, 2019
Comparison of 1D and 3D thermal models of the nacelle ventilation system in a small airplane
P Łapka, M Bakker, P Furmański, H van Tongeren
Aircraft Engineering and Aerospace Technology 90 (1), 114-125, 2018
Assessment of thermal performance of protective garments: The advanced numerical model
P Lapka, P Furmanski, T Wisniewski
International Journal of Numerical Methods for Heat & Fluid Flow 27 (5 …, 2017
Development of the experimental stand for investigation of heating and drying phenomena in the porous building materials with one surface of the sample exposed to the flowing air
Ł Cieślikiewicz, P Łapka, M Wasik, M Kubiś, K Pietrak, TS Wiśniewski, ...
E3S Web of Conferences 70, 03003, 2018
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