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Csáki Imre ; Csáki I; Csáki E; Csáky Imre; Csáky I
Csáki Imre ; Csáki I; Csáki E; Csáky Imre; Csáky I
Egyetemi docens, Debreceni Egyetem Műszaki Kar, Épülegépészeti és Létesítménymérnöki Tanszék
Подтвержден адрес электронной почты в домене eng.unideb.hu
Название
Процитировано
Процитировано
Год
Thermal conductivity measurements with different methods: a procedure for the estimation of the retardation time
Á Lakatos, I Csáky, F Kalmár
Materials and Structures 48, 1343-1353, 2015
402015
Effects of thermal mass, ventilation, and glazing orientation on indoor air temperature in buildings
I Csáky, F Kalmár
Journal of Building Physics 39 (2), 189-204, 2015
292015
Effects of solar radiation asymmetry on buildings’ cooling energy needs
I Csáky, F Kalmár
Journal of Building Physics 40 (1), 35-54, 2016
182016
Investigation of the relationship between the allowable transparent area, thermal mass and air change rate in buildings
I Csáky, F Kalmár
Journal of Building Engineering 12, 1-7, 2017
162017
Investigation of ventilation systems to improve air quality in the occupied zone in office buildings
S Szekeres, A Kostyák, F Szodrai, I Csáky
Buildings 12 (4), 493, 2022
152022
Simulation of the internal temperature in the PASSOL Laboratory, University of Debrecen
I Csáky, F Kalmár
International Review of Applied Sciences and Engineering 3 (1), 63-73, 2012
112012
Balance point temperature for heating as a function of glazing orientation and room time constant
Z Verbai, I Csáky, F Kalmár
Energy and Buildings 135, 1-9, 2017
102017
Operation testing of an advanced personalized ventilation system
I Csáky, T Kalmár, F Kalmár
Energies 12 (9), 1596, 2019
92019
Hydraulic aspects of scaling in geothermal energy systems.
I Csáki, F Kalmár
Environmental Engineering & Management Journal (EEMJ) 10 (8), 2011
82011
Interrelation between ACH and air temperature distribution in a room
F Kalmár, T Kalmár, I Csáki, G Husi, K Kwang-Woo
Kwang-Woo K (szerk.) ROOMVENT, 911-917, 2009
82009
Analysis of daily energy demand for cooling in buildings with different comfort categories—Case study
I Csáky
Energies 14 (15), 4694, 2021
62021
Air terminal devices developed for personal ventilation systems
I Csáky
Energies 13 (7), 1688, 2020
52020
Analysis of degree day and cooling energy demand in educational buildings
I Csáky, T Kalmár
Environmental Engineering and Management Journal 13 (11), 2765-2770, 2014
52014
„Interrelation between ACH and air temperature distribution in a room,” 2009: Proceedings of the 11th International ROOMVENT Conference
F Kalmár, T Kalmár, I Csáki, G Husi
Busan, Dél-Korea, 24-2009.05, 2009
52009
Material selection in order to minimize the heat loss of piping based on measurements and calculations
Á Lakatos, F Kalmár, I Csáky
AIP Conference Proceedings 2186 (1), 2019
42019
Influence of transparent surfaces on summer thermal comfort in buildings
I Csáky
Proceedings of 16th Building Services, Mechanical and Building Industry Days …, 2010
22010
Buffer Tank Discharge Strategies in the Case of a Centrifugal Water Chiller
A Kostyák, C Béres, S Szekeres, I Csáky
Energies 16 (1), 188, 2022
12022
Simulation and measurement of the internal air temperature in private offices
I Csáky
11th International Symposium on Exploitation of Renewable Energy Sources and …, 2019
12019
Analysis of Capture Velocity in the Case of Local Exhaust Ventilation
S Szekeres, A Kostyák, I Csáky
Journal of Architectural Engineering 30 (2), 05024004, 2024
2024
Investigation of Sensible Cooling Performance in the Case of an Air Handling Unit System with Indirect Evaporative Cooling: Indirect Evaporative Cooling Effects for the …
A Kostyák, S Szekeres, I Csáky
Buildings 13 (7), 1800, 2023
2023
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Статьи 1–20