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21 pages, 865 KB  
Review
When the Clock Shifts: A Comprehensive Review of Daylight-Saving Time (DST), Circadian Disruption, and Neuropsychological Risk in Chronic Mental Illness
by Liahm Blank, Joshua Khorsandi, Elizabeth England-Kennedy, Srikanta Banerjee, Karen Kopera-Frye, Roberto Sagaribay, Jagdish Khubchandani and Kavita Batra
Brain Sci. 2026, 16(5), 522; https://doi.org/10.3390/brainsci16050522 - 14 May 2026
Viewed by 1565
Abstract
Daylight Saving Time (DST) creates abrupt, externally imposed circadian disruptions that can impair sleep regulation, hormonal balance, cognitive performance, and emotional stability. Although these effects are known in the general population, individuals with chronic mental illness, whose circadian systems are often intrinsically dysregulated, [...] Read more.
Daylight Saving Time (DST) creates abrupt, externally imposed circadian disruptions that can impair sleep regulation, hormonal balance, cognitive performance, and emotional stability. Although these effects are known in the general population, individuals with chronic mental illness, whose circadian systems are often intrinsically dysregulated, may face increased neuropsychological consequences. This comprehensive review synthesizes evidence from chronobiology, psychiatry, neuroscience, and population health to examine how DST-related circadian misalignment impacts cognitive functioning, mood regulation, suicidality risk, and symptom exacerbation across psychological disorders such as depression, anxiety disorders, bipolar disorder, post-traumatic stress disorder, attention-deficit/hyperactivity disorder, and psychotic disorders. Following the Scale for the Assessment of Narrative Review Articles (SANRA) guidelines, a search of PubMed, PsycINFO, Scopus, and Google Scholar was conducted to identify studies published from 2000–2026 examining DST, circadian rhythm disruption, neuropsychological outcomes, and chronic mental illness. Empirical, theoretical, and mechanistic studies were included to ensure comprehensive synthesis. Across conditions, DST, particularly spring forward transitions, is associated with increased sleep disturbance, impaired executive functioning, reduced attention and working memory, heightened emotional reactivity, increased depressive symptoms, elevated risk of manic episodes, and short-term increases in suicidality. Neurobiological mechanisms include altered melatonin secretion, cortisol dysregulation, Hypothalamus Pituitary Axis (HPA-axis) activation, and clock-gene desynchrony. DST may function as a modifiable negative environmental influence capable of affecting neuropsychological functioning in vulnerable populations. These findings underscore the need for clinical awareness, preventive strategies, and policy reconsiderations, including calls to eliminate seasonal time changes. Standardizing DST-related research outcomes and expanding longitudinal, multi-site studies will be essential for advancing this emerging field. Full article
(This article belongs to the Section Neuropsychology)
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13 pages, 282 KB  
Opinion
Sleepless in Society: Introducing the Concept of Public Sleep
by Tony J. Cunningham, Shengzi Zeng and Seo Ho Song
Clocks & Sleep 2026, 8(2), 18; https://doi.org/10.3390/clockssleep8020018 - 9 Apr 2026
Viewed by 1641
Abstract
Major social, cultural, and sociopolitical events routinely disrupt daily life, yet their effects on sleep are rarely conceptualized at the population level beyond anecdotal sharing. The purpose of this Opinion piece is to initiate a preliminary discussion of “public sleep” as a novel [...] Read more.
Major social, cultural, and sociopolitical events routinely disrupt daily life, yet their effects on sleep are rarely conceptualized at the population level beyond anecdotal sharing. The purpose of this Opinion piece is to initiate a preliminary discussion of “public sleep” as a novel construct describing systematic, event-related changes in sleep timing, duration, and quality that emerge coherently within communities in response to shared social experiences. Drawing on similarities with the well-established concept of public mood, we posit that sleep can be shaped by social environments in which shared attention, emotional climate, and coordinated schedules exert systematic influence. In support of this claim, we describe preliminary evidence from diverse domains demonstrating population-level sleep disruption following major events, including the transition to Daylight Saving Time, national elections, prolonged crises such as the COVID-19 pandemic and armed conflicts, and highly salient cultural activities such as major sporting events. These reports from disparate fields provide an initial indication that public sleep disruptions can be acute or prolonged, geographically localized or global, and may be shaped by the duration, emotional intensity, and perceived importance of the associated event. We further highlight the potential public health, safety, social, and economic consequences of collective sleep loss, underscoring its relevance beyond individual well-being. Finally, we outline key directions for future research, emphasizing the need for systematic reviews, mechanistic studies, longitudinal designs, and policy-relevant recommendations. Recognizing public sleep as a measurable population phenomenon would provide a foundation for anticipating, monitoring, and mitigating sleep disruption during periods of collective strain, with implications for both individual health and societal resilience. Full article
(This article belongs to the Section Disorders)
18 pages, 2700 KB  
Article
Optimization of the Performance of Double-Skin Façades Across Six Climates: Effects of Orientation, Blinds, and Overhangs on Energy Efficiency and Carbon Emissions
by Niloufar Ziasistani, Andrés Meana-Fernández and Antonio José Gutiérrez-Trashorras
Thermo 2025, 5(4), 53; https://doi.org/10.3390/thermo5040053 - 13 Nov 2025
Cited by 2 | Viewed by 2584
Abstract
The building sector accounts for nearly 40% of global energy consumption and over one-third of energy-related carbon emissions. Therefore, it is vital to adopt low-carbon design strategies. Double-Skin Façades (DSFs) offer significant potential to improve energy efficiency through the dynamic control of heat [...] Read more.
The building sector accounts for nearly 40% of global energy consumption and over one-third of energy-related carbon emissions. Therefore, it is vital to adopt low-carbon design strategies. Double-Skin Façades (DSFs) offer significant potential to improve energy efficiency through the dynamic control of heat and daylight. This study evaluates the combined effects of building orientation, fixed shading devices, and adjustable blinds on the performance of DSFs across six cities representing diverse climate types: Phoenix, Stockholm, Kuala Lumpur, London, Cape Town, and Tokyo. Using a model developed in DesignBuilder, 852 scenarios were simulated with 5-min time steps over a full year. The results show that optimal orientation depends on the climate and that cooling load may be reduced up to 59%, with CO2 emission savings up to 11.7% compared to a base south-facing configuration. External blinds outperformed internal blinds in reducing the cooling demand, reaching reductions of up to 27.7% in hot climates, though often increasing the heating load in cold climates. Combining overhangs and external blinds provided additional cooling savings in some cases but was generally less effective than external blinds alone. The findings highlight the importance of climate-specific DSF designs, with orientation and external blinds being the most effective strategies for reducing operational energy use and emissions. Full article
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19 pages, 7617 KB  
Article
Retrofitting for Energy Efficiency Improvement Using Kinetic Façades in Residential Buildings: A Case Study from Saudi Arabia
by Taufiq I. Ismail, Godman O. Agbo, Omar S. Asfour, Ahmed Abd El Fattah and Ziad Ashour
Eng 2025, 6(11), 292; https://doi.org/10.3390/eng6110292 - 31 Oct 2025
Cited by 1 | Viewed by 2660
Abstract
Kinetic façades represent a climate-responsive design solution that improves building adaptability by responding to seasonal needs such as daylighting and shading. They offer an attractive retrofit strategy that improves both the esthetics and environmental performance of buildings. This study investigated the integration of [...] Read more.
Kinetic façades represent a climate-responsive design solution that improves building adaptability by responding to seasonal needs such as daylighting and shading. They offer an attractive retrofit strategy that improves both the esthetics and environmental performance of buildings. This study investigated the integration of an origami-inspired kinetic façade into a student dormitory building located in Dhahran, Saudi Arabia. Using numerical simulations, 35 façade configurations were analyzed under varying conditions of façade orientations, closure ratios (from 5% to 95%), and cavity depths (from 20 cm to 100 cm). The findings highlight the critical impact of kinetic façade design characteristics on daylight availability and solar exposure and the required trade-off between these two variables. In this context, this study observed that at higher façade closure ratios, increasing cavity depth could effectively mitigate daylight reduction by promoting reflected daylight penetration inside the cavity. As for heat gains and cooling load reduction, mid-range façade closure, 50 cm in this study, achieved balanced performance across the three examined orientations. However, the southern façade showed slightly higher efficiency compared to the eastern and western façades, which achieved lower cooling reductions and showed a similar UDI compromise. Thus, a dynamic façade operation is recommended, where higher closure ratios could be applied during peak solar hours on the east in the morning and the west in the afternoon to maximize cooling savings, while moderate closure ratios can be maintained on the south to preserve daylight. Future work should incorporate real-time climatic data and smart control technologies to further optimize kinetic façade performance. Full article
(This article belongs to the Section Chemical, Civil and Environmental Engineering)
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20 pages, 2473 KB  
Article
Approaching Challenges in Representations of Date–Time Ambiguities
by Amer Harb, Kamilla Klonowska and Daniel Einarson
Computers 2025, 14(11), 461; https://doi.org/10.3390/computers14110461 - 24 Oct 2025
Viewed by 1170
Abstract
Inconsistencies in Earth’s spinning, changes in calendar systems, etc., necessitate time being represented correspondingly. Date–time handling in programming involves specific challenges, including conflicts between calendars, time zone discrepancies, daylight savings, and leap second adjustments—issues that other data types like numbers and text do [...] Read more.
Inconsistencies in Earth’s spinning, changes in calendar systems, etc., necessitate time being represented correspondingly. Date–time handling in programming involves specific challenges, including conflicts between calendars, time zone discrepancies, daylight savings, and leap second adjustments—issues that other data types like numbers and text do not encounter. This article identifies these challenges and investigates existing approaches to date–time representation. Limitations in current systems, including how leap seconds, time zone variations, and inconsistent calendar representations complicate date–time handling, is examined. Inconsistent date–time representations imply significant challenges, especially when considering the interplay of leap seconds and time zone shifts. This study highlights the need for a new approach to date–time data types addressing these problems effectively. The article reviews existing date–time data types and explores their shortcomings, proposing a theoretical framework for a more robust solution. The study suggests that an improved date–time data type could enhance time resolution, support leap seconds, and offer greater flexibility in handling time zone shifts. Such a solution would provide a more reliable alternative to current systems. By addressing issues like leap second handling and time zone shifts, the proposed framework demonstrates the feasibility of a new date–time data type, with potential for broader adoption in future systems. Full article
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21 pages, 1435 KB  
Article
Spatiotemporal Context for Daylight Saving Time-Safety Interactions in the Contiguous United States
by Edmund Zolnik and Patrick Baxter
Future Transp. 2025, 5(3), 102; https://doi.org/10.3390/futuretransp5030102 - 4 Aug 2025
Viewed by 968
Abstract
Motor vehicle crashes are a persistent cause of unintentional deaths in the United States. Scholarship on how manmade interventions and natural phenomena interact to effectuate such calamitous outcomes is longstanding. One manmade intervention of interest in the literature is daylight saving time (DST). [...] Read more.
Motor vehicle crashes are a persistent cause of unintentional deaths in the United States. Scholarship on how manmade interventions and natural phenomena interact to effectuate such calamitous outcomes is longstanding. One manmade intervention of interest in the literature is daylight saving time (DST). Unfortunately, results on how the natural phenomena attributable to DST interact with driver behavior are inconsistent. To advance knowledge on DST-safety interactions, this study adopts a multilevel model approach to fatal motor vehicle crash outcomes in the contiguous United States. Results from a national analysis contextualize results from zonal analyses to unmask within- and between-time zone differences in DST-safety interactions. In the national analysis, motor vehicle crash fatalities decrease somewhat during DST (−0.10%). In the zonal analyses, motor vehicle crash fatalities decrease more so in the Central and Eastern time zones (−2.00% and −2.00%, respectively), but increase somewhat in the Pacific and Mountain time zones (+0.30%) during DST. The spatiotemporal context of the national analysis highlights specific policy implications from the zonal analyses to decrease the lethality of motor vehicle crashes. Specifically, interdictions to target alcohol and/or drug involvement in the northern latitudes of the Pacific and Mountain time zones during DST, the Central time zone at dawn or dusk before or after DST, and the northern latitudes in the Eastern time zone before or after DST are important. Generally, national DST-safety benefits mask zonal DST-safety costs in the Pacific and Mountain time zones. Full article
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38 pages, 8985 KB  
Article
Impact of Daylight Saving Time on Energy Consumption in Higher Education Institutions: A Case Study of Portugal and Spain
by Ivo Araújo, João Garcia and António Curado
Energies 2025, 18(12), 3157; https://doi.org/10.3390/en18123157 - 16 Jun 2025
Cited by 2 | Viewed by 4609
Abstract
Daylight Saving Time (DST), involving clock shifts forward in spring and backward in autumn, was introduced to promote energy savings. However, its effectiveness remains controversial, especially in buildings with temporary occupancy like academic institutions, which have high daytime use but low summer occupancy. [...] Read more.
Daylight Saving Time (DST), involving clock shifts forward in spring and backward in autumn, was introduced to promote energy savings. However, its effectiveness remains controversial, especially in buildings with temporary occupancy like academic institutions, which have high daytime use but low summer occupancy. This study investigates the impact of DST transitions on energy consumption across seven campuses of two higher education institutions (HEIs) in northern Portugal and Spain, located in different time zones, using measured data from 2023. The analysis accounted for the structural and operational characteristics of each campus to contextualize consumption patterns. Weekly electricity consumption before and after DST changes were compared using independent samples t-tests to assess statistical significance. Results show that the spring transition to DST led to an average energy saving of 1.7%, while the autumn return to standard time caused an average increase of 1.2%. Significant differences (p < 0.05) were found in five of the seven campuses. Descriptive statistics and confidence intervals indicated that only sites with intervals excluding zero exhibited consistent changes. Seasonal energy demand appeared more influenced by academic schedules and thermal comfort needs—particularly heating—than by DST alone. Higher consumption coincided with periods of intense academic activity and extreme temperatures, while lower demand aligned with holidays and longer daylight months. Although DST yielded modest energy savings, its overall impact on academic campus energy use is limited and highly dependent on local conditions. The findings highlight the need to consider regional climate, institutional policies, user behavior, and smart technology integration in future energy efficiency analyses in academic settings. Full article
(This article belongs to the Section B: Energy and Environment)
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28 pages, 3498 KB  
Review
The Impact of Daylight Saving Time on the Energy Efficiency of Buildings: A Bibliometric and General Review
by Ivo Araújo, Leonel J. R. Nunes, David Patíño Vilas and António Curado
Energies 2025, 18(8), 2088; https://doi.org/10.3390/en18082088 - 18 Apr 2025
Cited by 1 | Viewed by 6921
Abstract
The absence of standardized time zones has profound implications, influencing social, economic, and energy dynamics. It also disrupts personal aspects, such as sleep patterns and family routines. One specific dimension of this issue is the transition to daylight saving time (DST), which entails [...] Read more.
The absence of standardized time zones has profound implications, influencing social, economic, and energy dynamics. It also disrupts personal aspects, such as sleep patterns and family routines. One specific dimension of this issue is the transition to daylight saving time (DST), which entails shifting between standard time (winter) and daylight saving time (summer). This practice has sparked global debates due to its varying impacts across regions and sectors. Although DST primarily aims to optimize energy consumption by leveraging natural daylight, much attention has focused on its broader societal effects. However, the energy performance of commercial buildings under DST remains an underexplored yet equally significant area. This article presents a literature review to critically evaluate the effects of the winter-to-summer time shift on commercial buildings, concentrating on three key factors: energy consumption, where seasonal variations in lighting, heating, and cooling demands may alter anticipated energy savings; occupant thermal comfort, as time changes can disrupt the circadian rhythms of building occupants, impacting productivity and well-being; and operational considerations, as building systems like HVAC and automated controls must adjust to shifting daylight schedules. Accordingly, this review seeks to offer a comprehensive understanding of how the winter–summer time transition affects commercial buildings by analyzing energy consumption patterns, occupant comfort levels, and operational challenges. In doing so, it contributes to optimizing building management practices under varying daylight conditions to enhance energy efficiency and occupant satisfaction. Full article
(This article belongs to the Section G: Energy and Buildings)
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13 pages, 4471 KB  
Article
The Impact of Biseasonal Time Changes on Migraine
by Carl H. Göbel, Katja Heinze-Kuhn, Axel Heinze, Anna Cirkel and Hartmut Göbel
Neurol. Int. 2025, 17(3), 40; https://doi.org/10.3390/neurolint17030040 - 5 Mar 2025
Cited by 5 | Viewed by 4364
Abstract
Background: Changes in the daily rhythm can trigger migraine attacks. The sensitivity for triggering attacks is closely linked to the regulation of biological rhythms controlled by the hypothalamus. In over 70 countries around the world, the time is changed between daylight savings [...] Read more.
Background: Changes in the daily rhythm can trigger migraine attacks. The sensitivity for triggering attacks is closely linked to the regulation of biological rhythms controlled by the hypothalamus. In over 70 countries around the world, the time is changed between daylight savings time and standard time twice a year due to legal regulations. The aim of this study was to investigate whether the time change has an influence on migraine. Methods: In this retrospective study, the headache frequency of patients with episodic or chronic migraine at a tertiary headache center in the years 2020, 2021, and 2022 was evaluated. The primary outcome measure was the frequency of migraine occurrence on either Sunday or Monday of the time change weekend compared to Sunday or Monday before or Sunday or Monday after the time change. Results: Data from 258 patients were analyzed (86.8% women; average age: 51.5 years; average headache frequency: 7.7 days/month; 83.3% episodic migraine). Our results showed a significant increase of 6.4% in migraine frequency on the Sunday and/or Monday in the week after the time change in spring compared to the week before the change. In autumn, conversely, there was a significant reduction of 5.5% in migraine frequency on the Sunday and/or Monday one week after the time change compared to the week before the change. The factor responsible for the significant changes was the increase in migraines on Monday one week after the time change in spring and the decrease in migraines on Sunday one week after the time change in autumn. Conclusions: When switching from standard time to daylight savings time in the spring, the frequency of migraines increases significantly one week after the time change. In autumn, in comparison, there is an inverse trend with a reduction in migraine frequency. These data suggest that synchronization is disturbed when switching to daylight savings time. Conversely, synchronization normalizes in autumn. In view of the high prevalence of migraines, this can have extensive individual and social consequences. Full article
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17 pages, 248 KB  
Review
Sustainable Architecture and Human Health: A Case for Effective Circadian Daylighting Metrics
by Bhaswati Mukherjee and Mohamed Boubekri
Buildings 2025, 15(3), 315; https://doi.org/10.3390/buildings15030315 - 21 Jan 2025
Cited by 6 | Viewed by 7923
Abstract
The development of the fluorescent lamp and the air-conditioning system resulted in buildings being lit inexpensively without having to rely on daylighting to save energy, as was the case during the incandescent lamp era. Consequently, architects were able to design buildings with deep [...] Read more.
The development of the fluorescent lamp and the air-conditioning system resulted in buildings being lit inexpensively without having to rely on daylighting to save energy, as was the case during the incandescent lamp era. Consequently, architects were able to design buildings with deep floor plates for maximum occupancy, placing workstations far away from windows since daylighting was no longer a necessity. Floor-to-ceiling heights became lower to minimize the inhabitable volumes that needed to be cooled or heated. With the rising costs of land in some major American cities such as New York City and Chicago at the beginning of the twentieth century, developers sought to optimize their investments by erecting tall structures, giving rise to densely inhabited city centers with massive street canyons that limit sunlight access in the streets. Today, there is growing awareness in terms of the impact of the built environment on people’s health especially in terms of the health benefits of natural light. The fact that buildings, through their shapes and envelope, filter a large amount of daylight, which may impact building occupants’ health and well-being, should cause architects and building developers to take this issue seriously. The amount and quality of light we receive daily impacts many of our bodily functions and consequently several aspects of our health and well-being. The human circadian rhythm is entrained by intrinsically photosensitive retinal ganglion cells (ipRGCs) in our eyes that are responsible for non-visual responses due to the presence of a short-wavelength sensitive pigment called melanopsin. The entrainment of the circadian rhythm depends on several factors such as the intensity, wavelength, timing, and duration of light exposure. Recently, this field of research has gained popularity, and several researchers have tried to create metrics to quantify photopic light, which is the standard way of measuring visual light, into a measure of circadian effective lighting. This paper discusses the relationship between different parameters of daylighting and their non-visual effects on the human body. It also summarizes the existing metrics of daylighting, especially those focusing on its effects on the human circadian rhythm and its shortcomings. Finally, it discusses areas of future research that can address these shortcomings and potentially pave the way for a universally acceptable standardized metric. Full article
(This article belongs to the Section Architectural Design, Urban Science, and Real Estate)
29 pages, 7662 KB  
Review
Advancements in MEMS Micromirror and Microshutter Arrays for Light Transmission Through a Substrate
by Shilby Baby, Mustaqim Siddi Que Iskhandar, Md Kamrul Hasan, Steffen Liebermann, Jiahao Chen, Hasnain Qasim, Shujie Liu, Eslam Farrag, Dennis Löber, Naureen Ahmed, Guilin Xu and Hartmut Hillmer
Micromachines 2025, 16(1), 103; https://doi.org/10.3390/mi16010103 - 16 Jan 2025
Cited by 14 | Viewed by 3771
Abstract
This paper reviews and compares electrostatically actuated MEMS (micro-electro-mechanical system) arrays for light modulation and light steering in which transmission through the substrate is required. A comprehensive comparison of the technical achievements of micromirror arrays and microshutter arrays is provided. The main focus [...] Read more.
This paper reviews and compares electrostatically actuated MEMS (micro-electro-mechanical system) arrays for light modulation and light steering in which transmission through the substrate is required. A comprehensive comparison of the technical achievements of micromirror arrays and microshutter arrays is provided. The main focus of this paper is MEMS micromirror arrays for smart glass in building windows and façades. This technology utilizes millions of miniaturized and actuatable micromirrors on transparent substrates, enabling use with transmissive substrates such as smart windows for personalized daylight steering, energy saving, and heat management in buildings. For the first time, subfield-addressable MEMS micromirror arrays with an area of nearly 1 m2 are presented. The recent advancements in MEMS smart glass technology for daylight steering are discussed, focusing on aspects like the switching speed, scalability, transmission, lifetime study, and reliability of micromirror arrays. Finally, simulations demonstrating the potential yearly energy savings for investments in MEMS smart glazing are presented, including a comparison to traditional automated external blind systems in a model office room with definite user interactions throughout the year. Additionally, this platform technology with planarized MEMS elements can be used for laser safety goggles to shield pilots, tram, and bus drivers as well as security personal from laser threats, and is also presented in this paper. Full article
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44 pages, 6347 KB  
Systematic Review
Exploring the Synergy of Advanced Lighting Controls, Building Information Modelling and Internet of Things for Sustainable and Energy-Efficient Buildings: A Systematic Literature Review
by Gabriele Zocchi, Morteza Hosseini and Georgios Triantafyllidis
Sustainability 2024, 16(24), 10937; https://doi.org/10.3390/su162410937 - 13 Dec 2024
Cited by 31 | Viewed by 8790
Abstract
Buildings are responsible for approximately 40% of global energy consumption, putting pressure on the construction industry to mitigate its environmental impact. Therefore, there is an urgent need for innovative solutions to reduce power consumption, particularly in lighting systems. This study’s primary objective was [...] Read more.
Buildings are responsible for approximately 40% of global energy consumption, putting pressure on the construction industry to mitigate its environmental impact. Therefore, there is an urgent need for innovative solutions to reduce power consumption, particularly in lighting systems. This study’s primary objective was to investigate novel integrated lighting solutions that significantly reduce energy use, as well as to explore their enhancement through Building Information Modelling (BIM) and the Internet of Things (IoT) to improve energy efficiency further and reduce the carbon footprint of buildings. Hence, this literature review examined energy-saving actions, retrofitting practices and interventions across a range of multi-use buildings worldwide, focusing on research from 2019 to 2024. The review was conducted using Scopus and Web of Science databases, with inclusion criteria limited to original research. The objective was to diagnose the goals being undertaken and ultimately validate new actions and contributions to minimise energy consumption. After applying eligibility criteria, 48 studies were included in the review. First, daylight harvesting and retrofitting solutions were examined using the latest technologies and external shading. The review indicates a lack of proper coordination between daylight and electrical lighting, resulting in energy inefficiency. Secondly, it reviews how the integration of BIM facilitates the design process, providing a complete overview of all the building variables, thus improving indoor daylight performance and proper lighting with energy analysis. Lastly, the review addresses the role of the Internet of Things (IoT) in providing real-time data from sensor networks, allowing for continuous monitoring of building conditions. This systematic literature review explores the integration of these fields to address the urgent need for innovative strategies and sustainability in the built environment. Furthermore, it thoroughly analyses the current state of the art, identifying best practices, emerging trends and concrete insight for architects, engineers and researchers. The goal is to promote the widespread adoption of low-carbon systems and encourage collaboration among industry professionals and researchers to advance sustainable building design. Ultimately, a new parametric design framework is proposed, consisting of five iterative phases that cover all design stages. This framework is further enhanced by integrating BIM and IoT, which can be used together to plan, reconfigure, and optimise the building’s performance. Full article
(This article belongs to the Section Green Building)
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9 pages, 1126 KB  
Article
The Association Between Daylight Saving Time and Acute Myocardial Infarction in Canada
by Ahmad Al Samarraie, Roger Godbout, Remi Goupil, Catalin Paul Suarasan, Samaya Kanj, Melina Russo, Mathilde Dano, Justine Roy, Laurence Reiher, Guy Rousseau and Maxime Pichette
Hearts 2024, 5(4), 575-583; https://doi.org/10.3390/hearts5040044 - 22 Nov 2024
Cited by 1 | Viewed by 3845
Abstract
Background: Recent studies have suggested an increased risk of acute myocardial infarction (AMI) following daylight saving time (DST) transitions in cohorts of American and European patients. We aim to validate this finding in a Canadian population. Methods: We performed a retrospective cohort study [...] Read more.
Background: Recent studies have suggested an increased risk of acute myocardial infarction (AMI) following daylight saving time (DST) transitions in cohorts of American and European patients. We aim to validate this finding in a Canadian population. Methods: We performed a retrospective cohort study of patients admitted to the Hôpital du Sacré-Coeur de Montréal with a diagnosis of AMI requiring a coronary angiogram from 28 February 2016 to 3 December 2022. The transition period was defined as two weeks following DST, while the control periods were two weeks before and two weeks after the transition period. Patients aged 18 years or older were included. The primary endpoint was the incidence rate ratio (IRR) of AMI following DST transitions while the secondary endpoint was infarct size by biomarkers. A subgroup analysis compared the pre-COVID-19 period (2016–2019) to the post-COVID-19 period (2020–2022). Results: A total of 1058 patients were included (362 in the transition group and 696 in the control group). The baseline clinical characteristics were comparable between both groups. The rate of AMI per day following the DST transitions was 1.85 compared to 1.78 during control periods. The DST transitions were not associated with an increase in AMI (IRR = 1.04, 95% CI 0.91–1.18, p = 0.56) nor with infarct size. In the subgroup analysis, DST was associated with a significant increase in the incidence of AMI only in the pre-COVID-19 period, with a rate of 2.04 AMI per day in the transition group compared to 1.71 in the control group (IRR = 1.19, 95% CI 1.01–1.41, p = 0.041). In contrast, there was a significant increase in the size of AMI following DST in the post-COVID-19 period subgroup, with a creatine phosphokinase-MB (CK-MB) concentration of 137 ± 229 µg/L compared to 93 ± 142 µg/L (p = 0.013). Conclusions: In this Canadian cohort, there was a significant increase in the incidence of AMI in the pre-COVID-19 period, and infarct sizes were significantly larger following the DST transitions in the post-COVID-19 period. No significant associations emerged when pre- and post-COVID-19 periods were pooled. Full article
(This article belongs to the Collection Feature Papers from Hearts Editorial Board Members)
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23 pages, 5191 KB  
Article
Comprehensive Assessment of Economic Efficiency for Energy-Saving Investments in Public Utility Enterprises: Optimizing Consumption and Sustainable Development
by Dariusz Sala, Iryna Bashynska, Kostiantyn Pavlov, Olena Pavlova, Ihor Halytsia and Bohdan Hevko
Sustainability 2024, 16(23), 10163; https://doi.org/10.3390/su162310163 - 21 Nov 2024
Cited by 11 | Viewed by 2828
Abstract
This article presents a comprehensive approach to assessing the economic efficiency of investments in energy-saving measures specifically for public utility enterprises. This study contributes to the theoretical and practical justification for using efficiency evaluation criteria, such as net present value (NPV), return on [...] Read more.
This article presents a comprehensive approach to assessing the economic efficiency of investments in energy-saving measures specifically for public utility enterprises. This study contributes to the theoretical and practical justification for using efficiency evaluation criteria, such as net present value (NPV), return on investment (ROI), and internal rate of return (IRR) for energy projects. Analysis revealed that the highest electricity consumption occurs in the winter period—approximately 246,923 kWh when using 90 W lamps operating 16 h per day. In the summer period, with an average daylight duration of 8 h, consumption decreases to 31,298 kWh. This difference is due to the influence of temporal and seasonal factors, highlighting the need for a comprehensive assessment of energy-saving measures’ effectiveness across different times of the year. Furthermore, a methodology for calculating and utilizing the payback ratio was proposed, according to which, by reducing lamp wattage from 90 W to 60 W and operating hours from 16 to 8 h, companies can reduce electricity costs to 21,076 kWh in the summer period, demonstrating potential savings of 1.5 to 2 times. This study also proposes specific financing schemes for energy efficiency projects, enabling the more accurate assessment of needs and the optimization of energy consumption under limited budget conditions and high environmental requirements. Full article
(This article belongs to the Section Sustainable Urban and Rural Development)
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33 pages, 22443 KB  
Article
Climate Adaptability Research of Vernacular Dwellings in Jiangxi Based on Numerical Simulation—An Example from Nanfeng County
by Zhiyi Zhou, Yuxuan Xu, Cheng Ouyang, Mengyao Gui, Wanping Jiang, Chunlei Zhou, Kai Ma, Jiaxin Zhang and Jingyong Huang
Buildings 2024, 14(7), 2211; https://doi.org/10.3390/buildings14072211 - 18 Jul 2024
Cited by 6 | Viewed by 2766
Abstract
Energy conservation and carbon reduction in buildings have become important concerns and, at the same time, the value of low-tech approaches employed in indigenous architecture is increasingly acknowledged as a pertinent reference for contemporary design practices. The research on vernacular dwellings in Jiangxi [...] Read more.
Energy conservation and carbon reduction in buildings have become important concerns and, at the same time, the value of low-tech approaches employed in indigenous architecture is increasingly acknowledged as a pertinent reference for contemporary design practices. The research on vernacular dwellings in Jiangxi has many perspectives and fruitful results, but not enough attention has been paid to the research on climate adaptation. This article verifies the vernacular dwellings’ climate adaptation and summarizes the low-tech methods embedded in vernacular dwellings, aiming to provide guidelines for future exploration of energy-saving and carbon-reducing practices in architecture. By selecting different types of vernacular dwellings in Nanfeng County, this article verifies three aspects of the ecological characteristics of vernacular dwellings: the light environment, wind environment, and energy consumption, by comparing them with those of local modern residential buildings. It is concluded that the average daylight factor of the hall area of vernacular dwellings is better than that of the modern residential buildings in rural areas, and the vernacular dwellings regulate the indoor wind environment and maintain indoor comfort through natural ventilation in winter and summer seasons. Also, the annual energy consumption of the vernacular dwellings per unit area per year can be reduced by up to about 32% in comparison with modern residential buildings. Subsequently, the article concludes that patio space has a positive impact on the indoor physical environment through comparative experiments. Vernacular dwellings are well adapted to the local climate in terms of form, structure, and materials, and these low-tech methods should be applied to the design of rural dwellings in the future. Full article
(This article belongs to the Special Issue Advances of Healthy Environment Design in Urban Development)
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