Air conditioning operating on heat exchange between water supply system and ground enthalpy
Abstract
An air conditioning system operating on heat exchange between water supply system and ground enthalpy includes a first pipeline, a fan, and a power supply unit. The first pipeline is divided into an input section, a heat exchange section, and an output section in sequence to input water from an outdoor water source. The fan corresponds in position to the heat exchange section. The power supply unit is adapted to supply power to the fan. The air blowing by the fan facilitates the enthalpy in the water source executing sufficient heat exchange with air in a room to lower or elevate beforehand the room temperature so to shorten the startup time of or forthwith substitute the air conditioner.
Claims
exact text as granted — not AI-modified1 . An air conditioning system operating on heat exchange between water supply system and ground enthalpy, comprising:
a first pipeline, the first pipeline having an input section, a heat exchange section, and an output section in sequence to increase contact area in heat exchange, a temperature sensor control valve being provided between the input section and the heat exchange section to control conduction between the input section and the heat exchange section; at least one fan, the fan corresponding in position to the heat exchange section; and a power supply unit, the power supply unit being adapted to supply power to the fan.
2 . The air conditioning system operating on heat exchange between water supply system and ground enthalpy as claimed in claim 1 , wherein the input section is mounted outdoors to input water source; and the output section delivers the water source into a storage area.
3 . The air conditioning system operating on heat exchange between water supply system and ground enthalpy as claimed in claim 1 , wherein the heat exchange section is disposed in a room.
4 . The air conditioning system operating on heat exchange between water supply system and ground enthalpy as claimed in claim 1 , wherein the heat exchange section is made in the form of corrugation, loop, or a plurality of fins provided on an outer edge of the heat exchange section.
5 . The air conditioning system operating on heat exchange between water supply system and ground enthalpy as claimed in claim 1 , wherein the power supply unit is a solar panel with a battery, wind velocity, or hydraulic power generation means.
6 . The air conditioning system operating on heat exchange between water supply system and ground enthalpy as claimed in claim 1 , further comprising a heat supply unit, the heat supply unit being provided with a water pipe connected to the temperature sensor control valve for conduction to the heat exchange section.
7 . The air conditioning system operating on heat exchange between water supply system and ground enthalpy as claimed in claim 6 , wherein the heat supply unit is a solar water heater or a hot water boiler.
8 . The air conditioning system operating on heat exchange between water supply system and ground enthalpy as claimed in claim 1 , further comprising a second pipeline, the second pipeline having an input section, a heat exchange section, and an output section in sequence, the input section and the heat exchange section of the second pipeline being conducted subject to control by the temperature sensor control valve, and the input section and the output section of the second pipeline being jointly connected to a water tank to constitute a circulation loop.
9 . The air conditioning system operating on heat exchange between water supply system and ground enthalpy as claimed in claim 1 , wherein the fan is a cooling fan or electric dipole type of fan.Join the waitlist — get patent alerts
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