This kind of energy conservation might be meaningfully reached in high-rise building design. In order to evaluate high-rise buildings in terms of solar energy use, the author analyzes the case studies from both passive solar strategies and active solar technologies’ aspects.
Finally, high-rise buildings have great potential to gain solar radiations because of their vast facades. Analyzing case studies illustrate that applying solar passive strategies in high-rise buildings have a meaningful effect on reducing the total annual cooling and heating energy demand.
Therefore, by considering the use of solar passive strategies and active technologies as an alternative in high-rise buildings, this study tries to fill some of the current gaps as much as possible and its proposed fundamental message is changing architects’ and construction builders’ view in dealing with the subject. 1.1. Research methodology
This affects the power quality of the grid. If the grid tied solar inverter is made smart in terms of supplying reactive power in addition to active power, the reactive power requirement from the grid will reduce as the grid has to supply lesser reactive power.
Because the simulation taking to the account the interdependency of the building as a whole system, energy simulation results are useful to keep score as the work to reduce the building energy use.
Therefore, it can benefit from most solar radiations and winds in all directions. Meanwhile, each facade contains vast transparent windows that can provide better air ventilation and help to achieve maximum daylighting. Fig. 5. Temperature differentiation, Sunpath and Wind Rose for the Pinnacle Tower .
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