Improving Energy Effciency of Thermal Processes in Healthcare Institutions: A Review on the Latest Sustainable Energy Management Strategies

dc.contributor.authorHohne, Percy, Andrew
dc.contributor.authorKusakana, Kanzumba
dc.contributor.authorNumbi, Bubele, Papy
dc.date.accessioned2023-04-18T05:43:14Z
dc.date.available2023-04-18T05:43:14Z
dc.date.issued2020-01-24
dc.descriptionArticleen_US
dc.description.abstractHealthcare institutions consume large amounts of energy, ranking the second highest energy-intensive buildings in the commercial sector. Within developed countries, the energy consumption of healthcare institutions may account for up to 18% of the overall energy usage in commercial sectors. Within developing countries, such as South Africa, the energy consumption of healthcare institutions is observed to be a close second to the food service sector. Energy consumption of healthcare institutions per bed typically range from 43–92 kWh per day. In this paper, the largest energy consumers in South African healthcare institutions are identified and appropriate energy-e ciency (EE) initiatives are proposed, in terms of performance, operation, equipment and technology e ciency (POET). Two main thermal energy consumers are identified as heating, ventilation and air conditioning (HVAC) and water-heating systems. These systems are critical to patient health and may be classified as non-deferrable loads. Therefore, several initiatives are suggested to improve the energy e ciency and demand-side management capability of these systems. These initiatives are subdivided into di erent levels: the conceptual level, active level, technical and further improvement level, as defined in the POET framework. At each level, energy-e ciency initiatives are introduced based on potential energy savings and the e ort required to achieve these savings. In addition, model predictive control (MPC) approaches are discussed and reviewed as part of the further improvement section. Average possible energy savings ranged from 50%–70% at the conceptual level, while energy savings of 15%–30% may be expected for energy-e ciency initiatives at the active level. EE activities at the technical level and the further improvement level may result in savings of 50%–70% and 5%–10%, respectively.en_US
dc.identifier.other10.3390/en13030569
dc.identifier.urihttp://hdl.handle.net/11462/2423
dc.language.isoenen_US
dc.publisherEnergies 2020, 13, 569en_US
dc.relation.ispartofseriesEnergies;2020, 13, 569
dc.subjectEnergy efficiencyen_US
dc.subjectEnergy managementen_US
dc.subjectHealthcareen_US
dc.subjectModellingen_US
dc.subjectOptimizationen_US
dc.subjectRenewable energyen_US
dc.titleImproving Energy Effciency of Thermal Processes in Healthcare Institutions: A Review on the Latest Sustainable Energy Management Strategiesen_US
dc.typeArticleen_US

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