- Barkanov E.; Dumitrescu A.; Parinov I. Non-destructive Testing and Repair of Pipelines; Springer: Cham, Switzerland, 2018.
Paper not yet in RePEc: Add citation now
- Benonysson A. Dynamic Modeling and Operational Optimization of District Heating Systems. Ph.D. Thesis; Technical University of Denmark: Lynby, Denmark, 1991.
Paper not yet in RePEc: Add citation now
Bordin C.; Gordini A.; Vigo D. An optimization approach for district heating strategic network design. Eur. J. Oper. Res. 2016, 252, 296-307.
Buffa S.; Cozzini M.; D’Antoni M.; Baratieri M.; Fedrizzi R. 5th generation district heating and cooling systems: A review of existing cases in Europe. Renew. Sustain. Energy Rev. 2019, 104, 504-522.
- Chorzelski M.; Wojdyga K. Investigation of leak tightness and water losses in heat engineering plants. Ciepłownictwo Ogrzewnictwo Wentylacja 2006, 37, 11-15.
Paper not yet in RePEc: Add citation now
Colmenar-Santos A.; Rosales-Asensio E.; Borge-Diez D.; Blanes-Peiró J.J. District heating and cogeneration in the EU-28: Current situation, potential and proposed energy strategy for its generalisation. Renew. Sustain. Energy Rev. 2016, 62, 621-639.
Doračić B.; Novosel T.; Pukšec T.; Duić N. Evaluation of Excess Heat Utilization in District Heating Systems by Implementing Levelized Cost of Excess Heat. Energies 2018, 11.
- EN 13941-1:2019 District Heating Pipes—Design and Installation of Thermal Insulated Bonded Single and Twin Pipe Systems for Directly Buried Hot Water Networks Part 1: Design—Annex D. Delphi XE8 Documentation.
Paper not yet in RePEc: Add citation now
- Fahmy M.; Moselhi O. Detecting and locating leaks in Underground Water Mains Using Thermography. Proceedings of the 26th International Symposium on Automation and Robotics in Construction (ISARC 2009), Austin, TX, USA, 24–27 June 2009, ; pp. 61-67.
Paper not yet in RePEc: Add citation now
- Filippini E.; Ongari M. Method for the quantification of a leakage in a district heating network. Proceedings of the 14th International Symposium on District Heating and Cooling, Stockholm, Sweden, 6–10 September 2014, .
Paper not yet in RePEc: Add citation now
- Fu Y.; Zhao L.; Han C. The analysis of leakage condition for heating network. Proceedings of the 2016 International Conference on Civil, Transportation and Environment; Atlantis Press: Paris, France, 2016.
Paper not yet in RePEc: Add citation now
- Gabrielaitiene I.; Bøhm B.; Sunden B. Modelling temperature dynamics of a district heating system in Naestved, Denmark-A case study. Energy Convers. Manag. 2007, 48, 78-86.
Paper not yet in RePEc: Add citation now
- Grosswig S.; Hurtig E.; Luebbecke S.; Vogel B. Pipeline leakage detection using distributed fibre optical temperature sensing. Proceedings of the SPIE 5855, 17th International Conference on Optical Fibre Sensors, Bruges, Belgium, 23 May 2005, .
Paper not yet in RePEc: Add citation now
Guelpa E.; Toro C.; Sciacovelli A.; Melli R.; Sciubba E.; Verda V. Optimal operation of large district heating networks through fast fluid-dynamic simulation. Energy 2016, 102, 586-595.
- Johansson C.; Wernstedt F. Dynamic simulation of district heating systems. Proceedings of the 2005 European Simulation and Modelling Conference, ESM 2005, Porto, Portugal, 24–26 October 2005, ; pp. 396-400.
Paper not yet in RePEc: Add citation now
- Kim S. Holistic diagnosis of pipeline system with impedance method. Procedia Eng. 2014, 70, 924-933.
Paper not yet in RePEc: Add citation now
- Koczergo K.; Niemyjski O. Is District Heating Part of Sustainable Construction Policy? On the Example of SEC Szczecin District Heating Company. Instal 2018, 9, 14-18.
Paper not yet in RePEc: Add citation now
Lund H.; Werner S.; Wiltshire R.; Svendsen S.; Thorsen J.E.; Hvelplund F.; Mathiesen B.V. 4th Generation District Heating (4GDH): Integrating smart thermal grids into future sustainable energy systems. Energy 2014, 68, 1-11.
Millar M.A.; Elrick B.; Jones G.; Yu Z.; Burnside N.M. Roadblocks to Low Temperature District Heating. Energies 2020, 13.
- Na W.; You S.; Zheng W.; Zhang H.; Zheng X.; Ye T. A Simple Thermal Dynamics Model and Parameter Identification of District Heating Network. Procedia Eng. 2017, 205, 329-336.
Paper not yet in RePEc: Add citation now
- Niemyjski O. Modelling of Thermo-Hydraulic Processes in District Heating Networks. Ph.D. Thesis; Warsaw University of Technology: Warsaw, Poland, 2000.
Paper not yet in RePEc: Add citation now
- Niemyjski O. Simulations of Water Temperature Changes in District Heating Network; Elsevier Mendeley Ltd.: New York, NY, USA, 2021.
Paper not yet in RePEc: Add citation now
Noussan M.; Jarre M.; Poggio A. Real operation data analysis on district heating load patterns. Energy 2017, 129, 70-78.
Sáez Blázquez C.; Farfán Martín A.; Nieto I.M.; González-Aguilera D. Economic and Environmental Analysis of Different District Heating Systems Aided by Geothermal Energy. Energies 2018, 11.
- Schwarz M.B.; Lacarrière B.; Silva C.S.; Haurant P.; Mabrouk M. Dynamic Modeling of Heat Transport in District Heating Networks. Proceedings of the ECOS 2018—31st International Conference on Efficiency, Cost, Optimization, Simulation and Environmental Impact of Energy Systems, Guimaraes, Portugal, 17–21 June 2018, .
Paper not yet in RePEc: Add citation now
- Simonsson J.; Atta K.; Schweiger G.; Birk W. Experiences from City-Scale Simulation of Thermal Grids. Resources 2021, 10.
Paper not yet in RePEc: Add citation now
- Sledz A.; Unger J.; Heipke C. UAV-based thermal anomaly detection for distributed heating networks. Int. Arch. Photogramm. Remote Sens. Spat. Inf. Sci. 2020, XLIII-B1-2020, 499-505.
Paper not yet in RePEc: Add citation now
- Sulzer M.; Werner S.; Mennel S.; Wetter M. Vocabulary for the fourth generation of district heating and cooling. Smart Energy 2021, 1, 100003.
Paper not yet in RePEc: Add citation now
- Talebi B.; Mirzaei P.A.; Bastani A.; Haghighat F. A Review of District Heating Systems: Modeling and Optimization. Front. Built Environ. 2016, 2, 1-14.
Paper not yet in RePEc: Add citation now
Tol H.; Svendsen S. Improving the dimensioning of piping networks and network layouts in low-energy district heating systems connected to low-energy buildings: A case study in Roskilde, Denmark. Energy 2012, 38, 276-290.
- Tsubakizaki S.; Ichihara T.; Kido H. The water treatment system and water quality control in thermal power plants. Sep. Process Eng. 2011, 41.
Paper not yet in RePEc: Add citation now
- Van der Heijde B.; Fuchs M.; Ribas Tugores C.; Schweiger G.; Sartor K.; Basciotti D.; Müller D.; Nytsch-Geusen C.; Wetter M.; Helsen L. Dynamic equation based thermo-hydraulic pipe model for district heating and cooling systems. Energy Convers. Manag. 2017, 151, 158-169.
Paper not yet in RePEc: Add citation now
- Von Jeinsen I. Age of district heating networks causes worries: How leakages do not become incalculable risks. Eur. Power/Fernwarme Int. 2009, 38, 54-56.
Paper not yet in RePEc: Add citation now
- Wang J.; Zhou Z.; Zhao J. A method for the steady-state thermal simulation of district heating systems and model parameters calibration. Energy Convers. Manag. 2016, 120, 294-305.
Paper not yet in RePEc: Add citation now
- Wojdyga K.; Chorzelski M. Chances for Polish district heating systems. Energy Procedia 2017, 116, 106-118.
Paper not yet in RePEc: Add citation now
- Wojdyga K.; Niemyjski O. Hydraulic analysis for a district heating system supplied from two CHP plants. Energy Build. 2012, 54, 81-87.
Paper not yet in RePEc: Add citation now
- Xue P.; Yi J.; Zhou Z.; Xin C.; Fang X.; Liu J. Machine learning-based leakage fault detection for district heating networks. Energy Build. 2020, 223, 110161.
Paper not yet in RePEc: Add citation now
- Zhou S.; O’Neill Z.; O’Neill C. A review of leakage detection methods for district heating networks. Appl. Therm. Eng. 2018, 137, 567-574.
Paper not yet in RePEc: Add citation now
- Zhou S.; Tian M.; Zhao Y.; Guo M. Dynamic modeling of thermal conditions for hot-water district-heating networks. J. Hydrodyn. 2014, 26, 531-537.
Paper not yet in RePEc: Add citation now
- Zhuravska I.; Lernatovych D.; Burenko O. Detection the Places of the Heat Energy Leak on the Underground Thermal Pipelines Using the Computer System. Adv. Sci. Technol. Eng. Syst. J. 2019, 4, 1-9.
Paper not yet in RePEc: Add citation now
- Zwierzchowski R. Characteristics of large thermal energy storage systems in Poland. E3S Web Conf. 2017, 22.
Paper not yet in RePEc: Add citation now
- Zwierzchowski R.; Niemyjski O. Simulation of heat losses of a distribution network with different technical structure and under different operating conditions for a district heating and cooling system. IOP Conf. Ser. Mater. Sci. Eng. 2019, 603, 032091.
Paper not yet in RePEc: Add citation now