Jelenlegi hely

Kalmár Ferenc

Név: Kalmár Ferenc
További profilok: MTMT
Fokozat
  • PhD, BME (2005)
  • Habilitáció, BME (2019)
  • MTA Doktora, MTA (2019)
Szakterület: gépészmérnök

Teljes publikációs lista

A lista áttöltése az MTMT rendszerébe
Hiányzó közlemények feltöltése
Hitelesített Publikációs Lista igénylése
OA letöltési statisztika megtekintése
Feltöltött közlemény:
224
DEA-ban:
221
OA:
23
Publikációs időszak:
1998-2022
2022
  1. Kalmár, T., Szodrai, F., Kalmár, F.: Experimental study of local effectiveness in the case of balanced mechanical ventilation in small offices.
    Energy. 244 (PartA), 1-15, 2022.
    Folyóirat-mutatók:
    D1 Building and Construction (2021)
    D1 Civil and Structural Engineering (2021)
    D1 Electrical and Electronic Engineering (2021)
    D1 Energy Engineering and Power Technology (2021)
    Q1 Energy (miscellaneous) (2021)
    D1 Fuel Technology (2021)
    D1 Industrial and Manufacturing Engineering (2021)
    D1 Management, Monitoring, Policy and Law (2021)
    D1 Mechanical Engineering (2021)
    D1 Modeling and Simulation (2021)
    D1 Pollution (2021)
    D1 Renewable Energy, Sustainability and the Environment (2021)
  2. Kalmár, F., Kalmár, T.: Lakóépület fűtési energiafogyasztásának csökkentése passzív módszerekkel.
    In: Műszaki tudomány az észak-kelet magyarországi régióban 2022 : konferencia előadások kivonatai. Szerk.: Kocsis Imre, Dezső Gergely, MTA TABT Debreceni Területi Bizottság Titkársága, Nyíregyháza, 25, 2022. ISBN: 9786156032508
  3. Kalmár, T., Szodrai, F., Kalmár, F.: Local ventilation effectiveness dependence on the airflow pattern and temperature in the case of isothermal balanced ventilation.
    Journal of Building Engineering. 61 1-21, 2022.
    Folyóirat-mutatók:
    D1 Architecture (2021)
    Q1 Building and Construction (2021)
    Q1 Civil and Structural Engineering (2021)
    Q1 Mechanics of Materials (2021)
    Q1 Safety, Risk, Reliability and Quality (2021)
2021
  1. Kalmár, T., Kalmár, F.: Investigation of natural aeration in home offices during the heating season: case study.
    J. Build. Engineer. 35 1-25, 2021.
    Folyóirat-mutatók:
    D1 Architecture
    Q1 Building and Construction
    Q1 Civil and Structural Engineering
    Q1 Mechanics of Materials
    Q1 Safety, Risk, Reliability and Quality
2020
  1. Kalmár, F., Kalmár, T.: Thermal Comfort Aspects of Solar Gains during the Heating Season.
    Energies. 13 (7), 1-15, 2020.
    Folyóirat-mutatók:
    Q2 Control and Optimization
    Q2 Electrical and Electronic Engineering
    Q2 Energy Engineering and Power Technology
    Q2 Energy (miscellaneous)
    Q2 Fuel Technology
    Q2 Renewable Energy, Sustainability and the Environment
2019
  1. Szabó, G., Kalmár, F.: Investigation of energy and exergy performances of radiant cooling systems in buildings: a design approach.
    Energy. 185 449-462, 2019.
    Folyóirat-mutatók:
    D1 Building and Construction
    D1 Civil and Structural Engineering
    D1 Electrical and Electronic Engineering
    D1 Energy Engineering and Power Technology
    D1 Energy (miscellaneous)
    D1 Fuel Technology
    D1 Industrial and Manufacturing Engineering
    D1 Management, Monitoring, Policy and Law
    D1 Mechanical Engineering
    D1 Modeling and Simulation
    D1 Pollution
    D1 Renewable Energy, Sustainability and the Environment
  2. Menyhárt, J., Kalmár, F.: Investigation of Thermal Comfort Responses with Fuzzy Logic.
    Energies. 12 1-13, 2019.
    Folyóirat-mutatók:
    Q2 Control and Optimization
    Q2 Electrical and Electronic Engineering
    Q2 Energy Engineering and Power Technology
    Q2 Energy (miscellaneous)
    Q2 Fuel Technology
    Q2 Renewable Energy, Sustainability and the Environment
  3. Lakatos, Á., Kalmár, F., Csáky, I.: Material selection in order to minimize the heat loss of piping based on measurements and calculations.
    In: AIP Conference Proceedings : ICCMSE 2019 : 15th International Conference of Computational Methods in Sciences and Engineering : volume 2186, [s.n.], [s.l.], 1-4, 2019.
  4. Csáky, I., Kalmár, T., Kalmár, F.: Operation Testing of an Advanced Personalized Ventilation System.
    Energies. 12 1-13, 2019.
    Folyóirat-mutatók:
    Q2 Control and Optimization
    Q2 Electrical and Electronic Engineering
    Q2 Energy Engineering and Power Technology
    Q2 Energy (miscellaneous)
    Q2 Fuel Technology
    Q2 Renewable Energy, Sustainability and the Environment
  5. Szodrai, F., Kalmár, F.: Simulation of Temperature Distribution on the Face Skin in Case of Advanced Personalized Ventilation System.
    Energies. 12 (7), 1-11, 2019.
    Folyóirat-mutatók:
    Q2 Control and Optimization
    Q2 Electrical and Electronic Engineering
    Q2 Energy Engineering and Power Technology
    Q2 Energy (miscellaneous)
    Q2 Fuel Technology
    Q2 Renewable Energy, Sustainability and the Environment
2018
  1. Kalmár, F.: Energy flows in buildings.
    Debreceni Egyetem Műszaki Kar, Debrecen, 69 p., 2018. ISBN: 9789634900023
  2. Kalmár, F.: Impact of elevated air velocity on subjective thermal comfort sensation under asymmetric radiation and variable airflow direction.
    J. Building Physics. 42 (2), 173-193, 2018.
    Folyóirat-mutatók:
    Q2 Building and Construction
    Q2 Materials Science (miscellaneous)
  3. Kalmár, F., Kalmár, T.: Numerical evaluation of thermal discomfort in conditions of surface heating and asymmetric radiation.
    In: Book of Abstracts of the 13th International enviBUILD 2018 Conference, 27-28 September 2018. Eds.: Ferenc Kalmár, Ákos Lakatos, University of Debrecen, Debrecen, 11, 2018. ISBN: 9789634900269
  4. Kalmár, F., Kalmár, T.: Numerical evaluation of thermal discomfort in conditions of surface heating and asymmetric radiation.
    International Review of Applied Sciences and Engineering. 9 (2), 175-179, 2018.
    Folyóirat-mutatók:
    Q3 Engineering (miscellaneous)
    Q4 Environmental Engineering
    Q4 Information Systems
    Q4 Management Science and Operations Research
    Q4 Materials Science (miscellaneous)
  5. Szabó, G., Kalmár, F.: Parametric Analysis of Buildings' Heat Load Depending on Glazing: Hungarian Case Study.
    Energies. 11 (12), 1-17, 2018.
    Folyóirat-mutatók:
    Q2 Control and Optimization
    Q1 Electrical and Electronic Engineering
    Q2 Energy Engineering and Power Technology
    Q2 Energy (miscellaneous)
    Q2 Renewable Energy, Sustainability and the Environment
  6. Kalmár, F., Kalmár, T.: Study of human response in conditions of surface heating, asymmetric radiation and variable air jet direction.
    Energy Build. 179 133-143, 2018.
    Folyóirat-mutatók:
    D1 Building and Construction
    D1 Civil and Structural Engineering
    D1 Electrical and Electronic Engineering
    D1 Mechanical Engineering
2017
  1. Kalmár, F.: An indoor environment evaluation by gender and age using an advanced personalized ventilation system.
    Building Serv. Eng. Res. Technol. 38 (5), 505-521, 2017.
    Folyóirat-mutatók:
    Q2 Building and Construction
  2. Verbai, Z., Kalmár, F., Csáky, I.: Balance point temperature for heating as a function of glazing orientation and room time constant.
    Energy Build. 135 1-9, 2017.
    Folyóirat-mutatók:
    D1 Building and Construction
    D1 Civil and Structural Engineering
    D1 Electrical and Electronic Engineering
    D1 Mechanical Engineering
  3. Kalmár, F.: Energy Aspects of Gravitational Ventilation in the Heating Season.
    Appl. Mech. and Material. 861 175-182, 2017.
    Folyóirat-mutatók:
    Q4 Engineering (miscellaneous)
  4. Csáky, I., Kalmár, F.: Investigation of the relationship between the allowable transparent area, thermal mass and air change rate in buildings.
    J. build. engineer. 12 1-7, 2017.
    Folyóirat-mutatók:
    D1 Architecture
    Q2 Building and Construction
    Q2 Civil and Structural Engineering
    Q2 Mechanics of Materials
    Q2 Safety, Risk, Reliability and Quality
2016
Mindet mutasd
frissítve: 2023-02-05, 02:08

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Q4 3 (3.2%)
n.a. 52 (55.9%)
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