Super integrated security and air cleansing systems (sisacs)
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Solution Overview
Problem
Existing air conditioning and heating systems fail to effectively remove stale air pollution and maintain optimal temperature balance in enclosed spaces, leading to health issues and increased energy consumption.
Innovation Solution
The Super Integrated Security and Air Cleansing System (SISACS) uses a combination of induction and extraction systems controlled by a Central Electronic Control Unit (CECM) to introduce clean air and remove polluted air, while balancing roof cavity temperatures, incorporating filtration systems and kinetic energy recovery to produce electricity.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Temperature
If air conditioning and heating systems pump cold or hot air into enclosed areas, then temperature control is achieved, but stale air pollution accumulates and circulates causing health issues
Solution Approach 1:
The patent extracts and removes polluted air from enclosed spaces using dedicated extraction systems that actively pull stale air out through ceiling cavities and exhaust it outside, separating the air removal function from traditional air conditioning systems that only recirculate air
Solution Approach 2:
The system segments air handling into distinct functions: fresh air intake through wall units, air extraction through ceiling cavities, and temperature control through separate heating/cooling units, allowing each component to optimize its specific function without compromising overall air quality
2Loss of energy
If ceiling insulation products are used to reflect heat or prevent cold air transmission, then energy loss is reduced, but trapped air in ceiling cavities still causes temperature transfer to living areas
Solution Approach 1:
The system continuously extracts air from ceiling cavities through dedicated extraction units that operate constantly or periodically, preventing heat accumulation and maintaining temperature balance between ceiling spaces and living areas below
Solution Approach 2:
The ceiling cavity extraction system acts as an intermediary between the external environment and living spaces, actively managing air temperature in the ceiling cavity to prevent unwanted heat transfer to occupied areas
3Temperature
If standard air conditioning feeds cold air through ceiling vents, then cooling is provided, but energy efficiency is reduced due to improper air stratification
Solution Approach 1:
The system inverts traditional air distribution by introducing cool air at low level through wall units rather than from ceiling vents, and extracting warm air from the ceiling cavity, aligning with natural convection patterns where cool air sinks and warm air rises
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
This approach creates a healthier indoor environment by continuously refreshing air, reducing energy consumption, and providing stable temperatures, thereby improving indoor air quality and efficiency.
Implementation Method 1
The extraction unit creates suction within the roof cavity that in turn draws air up through the vents from the interior of the premises
Implementation Method 2
The SISACS system adheres to the principal of cool air always located below warm air and so the introduction of cool low into an interior environmental zone and hot air being extracted at the top has proven to be many more times efficient
Implementation Method 3
a turbine or other kinetic energy recovery system may be incorporated into the extraction unit to generate electricity from the kinetic energy of the air being expelled
Data Source
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AI summary
The present invention provides an air cleansing system that removes the polluted air and controls the air temperature. This system may be optionally integrated with other systems including security, surveillance, smoke alarms and the like.