In China, 27.8% of total energy demand is dedicated to the building sector [22] while energy expenditure in residential and commercial buildings stands for about 40% of Europe''s energy
The proposed FIPV façade designs could promisingly cover up to 31%, 40% and 45% of annual residential energy consumption for 11-floor high-rises with large, medium
Passive design strategies (PDS) are a fitting solution to reduce the ever-growing energy cost of residential high-rise buildings in tropical regions. this study investigated the
Façade Optimization of Building Integrated Photovoltaics (BIPV) For Sustainable Energy in High Rise Residential Buildings Aisha Abu Aminu, Stephen N Oluigbo, Joy Joshua Maina Abstract -
The high-rise residential buildings in cities become popular in China, accounting for over 40 % of the newly-built buildings [[13], [14], [15]].The façade spaces of the high-rise residential
5 天之前· UG Hall IX is a high-rise residential building located in Hong Kong, utilized to validate the effectiveness of the proposed method. A specific area on the south facade was identified
Building height-In the Colombo Metropolitan Area in Sri Lanka, 13 floors or above is considered as a high-rise residential building (Urban Development Authority Sri
Cities play a crucial role in addressing global climate change [19].Urban morphology significantly impacts both the energy consumption and the local environment of
A typical high-rise (40-storey) public residential building in Hong Kong was selected as the case building, which has the energy use intensity of 106.6 kWh/m 2 for the
PDF | On Jan 1, 2021, Jibsam F. Andres and others published Energy Equivalent of Rainwater Harvesting for High-Rise Building in the Philippines | Find, read and cite all the research you
The article deals with innovative and promising design of energy-efficient envelopes of high-rise buildings. The aim of the research is to study modern technologies and
In dense, energy-demanding urban areas, the effective utilization of solar energy resources, encompassing building-integrated photovoltaic (BIPV) systems and solar
NZE high rise residential buildings are subjected to additional challenges due to the high energy consumption from central and communal facilities (Troy et al., 2003, Karen,
A total of 30 papers have been accepted for this Special Issue, with authors from 21 countries. The accepted papers address a great variety of issues that can broadly be
Therefore, to maximize the solar energy generation, architects should consider square and round high-rise buildings and ''U'' type podiums for mounting BIPV systems in
In sustainable high rise buildings especially, an integrated process is necessary because of their scale and the fact that green design affects so many different
5 天之前· This study investigated the integration of combined solar facades incorporating opaque FIPV modules and passive solar shading. Through detailed case studies of a high-rise
The building envelope, the most important element in the energy consumption of a building, gains more importance due to the large amount of the surface area of building''s
The energy flexibility of the sophisticated building energy systems with the integration of renewable systems, diversified energy storages, advanced energy conversions
Currently, the construction and operation of buildings are responsible for 36% of global final energy usage and nearly 40% of energy-related carbon dioxide (CO2) emissions.
The urban context is modelled at the building setback for optimum solar access given in Figure 3 (Jayaweera et al., 2021). Optimum solar access is defined as a perimeter
Wind effects on solar panels mounted on façade of high-rise residential building are studied through wind tunnel test. The model with scale ratio of 1:80 is adopted.
The above-mentioned high-rise residential building body shape coefficient and the control range of the window-to-wall ratio of each building''s orientation meet the energy
In addition, the solar potential simulations also showed that for 11-floor residential high-rises with side balconies, the total annual solar energy potentials on facades
Researchers from Spain have simulated the effect building integrated photovoltaics (BIPV) will have on the energy consumption and the economics of high-rise
Building operations account for a large amount of energy use and CO2 emissions, and the morphology of buildings in residential clusters strongly impacts energy efficiency performance. However, little research has
By 2017, it was reported in Building Energy Conservation and Green Building Development in the 13th Five-Year Plan period [22] that the proportion of new-built urban
The proposed methodology in the same context described by [2] for implementing a transformative solar power solution in Hong Kong involves the strategic integration of Flexible
The estimated annual production of the solar installation is more than 150,000 kWh. This equals almost 10% of the total building energy demand and enough to power the equivalent of 75
The building envelope, the most important element in the energy consumption of a building, gains more importance due to the large amount of the surface area of building''s
One area of interest lies in the wider use of solar-energy systems. The worldwide fast development of building-integrated solar technology has prompted the design alternative
Request PDF | Analyzing passive solar strategies in the case of high-rise building | Nowadays, societies are not able to live without energy. After 1970׳s energy crises,
In this study, the optimum solar access is defined for a perimeter zone in a high-rise residential building, achieving 75 sDA (300lx|50) with corresponding annual energy
Urban morphology significantly influences building energy consumption, solar energy potential, and outdoor thermal microclimate.This study seeks to optimize the urban
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