Publikationer av Adnan Ploskic
Refereegranskade
Artiklar
[1]
A. Behzadi et al., "Application to novel smart techniques for decarbonization of commercial building heating and cooling through optimal energy management," Applied Energy, vol. 376, 2024.
[2]
A. Causevic et al., "Analyzing development finance flows in the Western Balkans’ energy sector: a 2008–2020 perspective," Energy, Sustainability and Society, vol. 13, no. 1, 2023.
[3]
H. Pieskä, A. Ploskic och Q. Wang, "Life-cycle assessment of a radiant high-temperature cooling system in the Mediterranean climate," Building and Environment, vol. 245, 2023.
[4]
H. Pieskä et al., "Performance Analysis of a Geothermal Radiant Cooling System Supported by Dehumidification," Energies, vol. 15, no. 8, 2022.
[5]
H. Pieskä et al., "Thermodynamic and thermal comfort performance evaluation of two geothermal high-temperature cooling systems in the mediterranean climate," Journal of Building Engineering, vol. 56, s. 104738-104738, 2022.
[6]
C. Wang et al., "Evaluating the cooling potential of a geothermal-assisted ventilation systemfor multi-family dwellings in the Scandinavian climate," Building and Environment, vol. 204, 2021.
[7]
H. Pieskä, A. Ploskic och Q. Wang, "Design requirements for condensation-free operation of high-temperature cooling systems in mediterranean climate," Building and Environment, vol. 185, s. 1-12, 2020.
[8]
B. Nourozi et al., "Heat transfer model for energy-active windows – An evaluation of efficient reuse of waste heat in buildings," Renewable energy, vol. 162, s. 2318-2329, 2020.
[9]
A. Ploskic, Q. Wang och S. Sadrizadeh, "A holistic performance evaluation of ventilation radiators – An assessment according to EN 442-2 using numerical simulations," Journal of Building Engineering, vol. 25, 2019.
[10]
B. Nourozi, Q. Wang och A. Ploskic, "Energy and defrosting contributions of preheating cold supply air in buildings with balanced ventilation," Applied Thermal Engineering, vol. 146, s. 180-189, 2019.
[11]
B. Nourozi, Q. Wang och A. Ploskic, "Maximizing thermal performance of building ventilation using geothermal and wastewater heat," Resources, Conservation and Recycling, vol. 143, s. 90-98, 2019.
[12]
A. Ploskic och Q. Wang, "Reducing the defrosting needs of air-handling units by using heat from wastewater in apartment buildings in cold climates," Applied Thermal Engineering, vol. 157, 2019.
[13]
A. Ploskic och Q. Wang, "Evaluating the potential of reducing peak heating load of a multi-family house using novel heat recovery system," Applied Thermal Engineering, vol. 130, s. 1182-1190, 2018.
[14]
A. Ploskic, Q. Wang och S. Sadrizadeh, "Mapping Relevant Parameters for Efficient Operation of Low-Temperature Heating Systems in Nordic Single-Family Dwellings," Applied Sciences, vol. 8, no. 10, 2018.
[15]
Q. Wang, A. Ploskic och S. Holmberg, "Low-temperature heating in existing Swedish multi-family houses : An assessment of the significance of radiator design and geometry," Science and Technology for the Built Environment, vol. 23, no. 3, s. 500-511, 2017.
[16]
Q. Wang et al., "Ventilation heat recovery jointed low-temperature heating in retrofitting : An investigation of energy conservation, environmental impacts and indoor air quality in Swedish multifamily houses," Energy and Buildings, vol. 121, s. 250-264, 2016.
[17]
A. Hesaraki et al., "Experimental study of energy performance in low-temperature hydronic heating systems," Energy and Buildings, vol. 109, s. 108-114, 2015.
[18]
A. Hesaraki, A. Ploskic och S. Holmberg, "Integrating Low-temperature Heating Systems into Energy Efficient Buildings," Energy Procedia, vol. 78, s. 3043-3048, 2015.
[19]
Q. Wang, A. Ploskić och S. Holmberg, "Retrofitting with low-temperature heating to achieve energy-demand savings and thermal comfort," Energy and Buildings, vol. 109, s. 217-229, 2015.
[20]
A. Ploskić och S. Holmberg, "Performance evaluation of radiant baseboards (skirtings) for room heating - An analytical and experimental approach," Applied Thermal Engineering, vol. 62, no. 2, s. 382-389, 2014.
[21]
A. Ploskić och S. Holmberg, "Low-temperature ventilation pre-heater in combination with conventional room heaters," Energy and Buildings, vol. 65, s. 248-259, 2013.
[22]
A. Ploskic och S. Holmberg, "Low-temperature baseboard heaters with integrated air supply - An analytical and numerical investigation," Building and Environment, vol. 46, no. 1, s. 176-186, 2011.
[23]
A. Ploskic och S. Holmberg, "Heat emission from thermal skirting boards," Building and Environment, vol. 45, no. 5, s. 1123-1133, 2010.
Konferensbidrag
[24]
B. Nourozi, S. Sadrizadeh och A. Ploskic, "Condensation and Frost Onset of Air-to-Air Heat Exchangers : A Detailed Heat Transfer Analysis," i Proceedings of the 5th International Conference on Building Energy and Environment, 2023, s. 355-361.
[25]
H. Pieskä, A. Ploskic och Q. Wang, "Environmental assessment of a ground source heat pump heating system retrofit for a residential building," i Submitted to Energy Trends 2023, 2023.
[26]
H. Pieskä, A. Ploskic och Q. Wang, "Environmental Impact Evaluation of a High-Temperature Cooling System in a Mediterranean Climate," i The 16th Conference of the International Society of Indoor Air Quality & Climate, November 1, 2020., 2020.
[27]
B. Nourozi et al., "Integrated Energy Active Windows with Low-Temperature Heating Systems in Cold Climates," i The 16th Conference of the International Society of Indoor Air Quality & Climate, 2020, s. 1054-1059.
[28]
S. Härer et al., "Frost reduction in mechanical balanced ventilation by efficient means of preheating cold supply air," i IOP Conference Series : Materials Science and Engineering, 2019.
[29]
B. Nourozi, Q. Wang och A. Ploskic, "Identifying frost threshold in a balanced mechanical ventilation system by inlet and exhaust air temperature control," i The 11th International Symposium on Heating, Ventilation and Air Conditioning (ISHVAC2019), 2019.
[30]
B. Nourozi, Q. Wang och A. Ploskic, "Preheating Cold Supply Air to Mechanical Balanced Ventilation using Wastewater or Passive Geothermal Energy," i The 16th International Building Performance Simulation Association (IBPSA), 2-4 September 2019, Rome, Italy, 2019.
[31]
S. Sadrizadeh och A. Ploskic, "On the boundary conditions of numerical particle simulation in indoor environment," i Proceedings of 14th International Conference on Indoor Air Quality and Climate. July 3-8, 2016; Ghent, Belgium, 2016.
[32]
Q. Wang, A. Ploskić och S. Holmberg, "Performance analysis of low temperature heating in retrofitting practice of existing Swedish multifamily houses : An investigation including simulation and measurements," i The 8th International Cold Climate HVAC Conference, Dalian, China, October 20-23, 2015, 2015.
[33]
S. Holmberg, J. A. Myhren och A. Ploskic, "Low-temperature heat emission with integrated ventilation air supply," i Proceedings of International Conference Clima 2010, 2010.
[34]
A. Ploskic och S. Holmberg, "Heat emission from thermal skirting boards : An analytical investigation," i FIFTH INTERNATIONAL WORKSHOP ON ENERGY AND ENVIRONMENT OF RESIDENTIAL BUILDINGS AND THIRD INTERNATIONAL CONFERENCE ON BUILT ENVIRONMENT AND PUBLIC HEALTH, VOL I AND II, PROCEEDINGS, 2009, s. 1354-1361.
Icke refereegranskade
Artiklar
[35]
[36]
B. Nourozi et al., "Life cycle cost analysis of air preheating systems using wastewater and geothermal energy," The REHVA European HVAC Journal, vol. 56, no. 1, s. 47-51, 2019.
Konferensbidrag
[37]
H. Pieskä, A. Ploskic och Q. Wang, "Evaluations of a high-temperature cooling system performance in retrofitting practice of an office building in Mediterranean climate," i 1st Nordic Conference on Zero Emission and Plus Energy Buildings, 2019.
Avhandlingar
[38]
A. Ploskic, "Technical solutions for low-temperature heat emission in buildings," Doktorsavhandling Stockholm : KTH Royal Institute of Technology, 2013.
[39]
A. Ploskic, "Low-Temperature Baseboard Heaters in Built Environments," Licentiatavhandling Stockholm : KTH, TRITA-STH : report, 2010:4, 2010.
Rapporter
[40]
[41]
A. Ploskic, "ENERGISNÅLA RADIATORSYSTEM FÖR EFFEKTIV LÅGTEMPERATURUPPVÄRMNING OCH GOTT INOMHUSKLIMAT I SMÅHUS," Stockholm : SBUF (Svenska Byggbranschens Utvecklingsfond), 2019.
[42]
[43]
[44]
Q. Wang et al., "Indoor Environment and Energy Performance Evaluation of Low Temperature Heating In Retrofitting Existing Swedish Residential Buildings," Stockholm : KTH Royal Institute of Technology, 2016.
Övriga
[45]
[46]
A. Ploskic och L. ROSÉN, "Komplext ventilationssystem ska få bättre styrning," Svensk Byggtjänst, 2020.
[47]
A. Ploskic och L. Rosén, "Värme från spillvatten minskar avfrostningsbehov," Svensk Byggtjänst, 2020.
[48]
H. Pieskä et al., "Comparative study of all-air and radiant high-temperature coolingsystems in an office building," (Manuskript).
[49]
B. Nourozi, S. Sadrizadeh och A. Ploskic, "Critical values for condensation and frost onset in air recuperators : A detailed heat transfer evaluation," (Manuskript).
[50]
H. Pieskä, A. Ploskic och Q. Wang, "Life-cycle assessment of a radiant high-temperature cooling system in the Mediterranean climate," (Manuskript).
[51]
A. Ploskić och Q. Wang, "Low-Temperature Heating with Heat Pumps in Single Family Houses : Design Requirements and Future Perspectives," (Manuskript).
[52]
Q. Wang, A. Ploskić och S. Sadrizadeh, "Low-temperature heating in existing Swedish multifamily houses : an assessment of the significance of radiator design and geometry," (Manuskript).
Senaste synkning med DiVA:
2024-11-19 00:09:23