A dynamic energy performance engine, based on EN ISO 52016-1:2017 standard and completed with a heat exchanger model, is implemented, and its outputs are used to calculate thermal comfort indicators throughout the heating season.Next Article in Journal A Comprehensive Health Indicator Integrated by the Dynamic Risk Profile from Condition Monitoring Data and the Function of Financial Losses.
Next Article in Special Issue Support Decision Tool for Sustainable Energy Requalification the Existing Residential Building Stock. Previous Article in Journal Cyber-Security of Smart Microgrids: A Survey. Previous Article in Special Issue A New Generation of Thermal Energy Benchmarks for University Buildings. ![]() European Journal of Investigation in Health, Psychology and Education (EJIHPE). International Journal of Environmental Research and Public Health (IJERPH). International Journal of Turbomachinery, Propulsion and Power (IJTPP). Journal of Open Innovation: Technology, Market, and Complexity (JOItmC). Journal of Otorhinolaryngology, Hearing and Balance Medicine (OHBM). Journal of Theoretical and Applied Electronic Commerce Research (JTAER). Find support for a specific problem in the support section of our website. Please let us know what you think of our products and services. Visit our dedicated information section to learn more about MDPI. Dynamic Approach to Evaluate the Effect of Reducing District Heating Temperature on Indoor Thermal Comfort. Received: 27 November 2020 Revised: 14 December 2020 Accepted: 17 December 2020 Published: 23 December 2020. Discomfort periods are indicated by the hatched area (old building) and the gray area (new building). Gray area: standard deviation of the PMVs for the different building types. To reduce energy consumption for space heating, a coordinated action on energy supply, building fabric and occupant behavior is required to realize sustainable improvements. A reduction in district heating supply temperature is an interesting option to allow the incorporation of renewable energy sources and reduce distribution losses, but its impact on the final users must be considered. This aspect is especially critical as most European countries feature an old building stock, with poor insulation and heating systems designed for high-temperature operation. In this study, a complete methodology is devised to evaluate the effect of district heating temperature reduction on the end users by modeling all the stages of the system, from the primary heat exchanger to the indoor environment.
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