Disclosed is a multipurpose system for generating multiple outputs, the system comprising: an evaporator consisting of an evaporator coil and first exhaust fan, the evaporator coil being configured to remove unwanted heat from the outside air, via. liquid refrigerant and covert liquid refrigerant into vapour form, the exhaust fan being configured to provide cold air being generated by evaporator coil, the evaporator coil is further configured to cause condensation of water, due to difference in the temperature of coil & air, to release pure water; a compressor being connected to the evaporator through connecting pipe and configured to draw the low-temperature, low-pressure- vapour from the. evaporator and-to compress the. vapour to transform the, vapour from a low-temperature vapour to a high-temperature vapour, in turn increasing the pressure; a condenser being connected to the compressor through the connecting, pipe, and. consisting, of an condenser coil and. second, exhaust fan, the. condenser coil being configured to extract heat from the refrigerant to the outside air to provide hot air, the condenser further configured to cool the high-pressure vapour within the condenser to the point where it becomes a liquid refrigerant once more, whilst retaining some heat; an expansion valve being connected to the condenser and evaporator and configured to receive the high-pressure liquid, having come from the condenser and reduces the pressure of the refrigerant pumped in to the evaporator; a set of sensors to measure temperature of output water, temperature of output cold air and temperature of hot air; and a processing unit being connected to the evaporator, compressor, condenser, expansion valve and set of sensors, the processing unit is configured to control operations of evaporator, compressor, condenser, expansion valve to get desired outputs in respect of temperature of output water, temperature of output cold air and temperature of hot air.
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