This paper presents a review of previous studies onenergyefficiency andbuildingsafety forhigh-riseventilation, including naturalventilation, mechanicalventilationand hybridventilation. Statistical analysis was conducted on the research methods, number of literature review sources, and topics. The research gap was also discussed.
Ensuring proper indoor air quality inhigh-riseapartmentbuildingsis a crucial challenge, particularly when upgradingventilationsystems during deepenergyrenovation of existingbuildings. This study evaluates the condition of existingventilationsystems and assesses the performance, cost, andenergyefficiency of different mechanicalventilationsolutions with heat recovery, including ...
High-risebuildingsoften use mechanical systems to assistventilationto maintain the stability of their internal environments, and theenergyconsumption of mechanicalventilationposes a great challenge to urban environments andenergysystems. ...

How does demand-controlledventilationimproveenergyefficiency inhigh-risebuildings? Demand-controlledventilationadapts airflow based on occupancy and CO2 levels, reducing wastedenergyand ensuring sufficient fresh air during peak times.
Due to advancements in technology, the design ofhigh-risebuildingshas come across various changes with large glass openings, sealed windows, and deep plans which increase the dependency on air conditioning systems (HVAC) thus increasing the demand for moreenergyconsumption inside thebuildingdue to me-chanicalventilationand air ...

The results indicate that while centralized and decentralized mechanicalventilationwith heat recovery enhancesenergyefficiency and indoor air quality inhigh-risemultifamily apartment ...
RTM delivers innovative designs that improve airflow balancing andenergyefficiency inhigh-risebuildingsto achieve requiredventilation. Factors that affect consistentventilationwithin abuildinginclude variance of indoor and outdoor temperature (i.e. stack effect), wind, and opening a door in a stairwell.