发明名称 Water energy conversion system
摘要 A water energy conversion system includes a control unit, a first gas-water energy conversion device, a second gas-water energy conversion device, a water supply device, a storage tank and a heat source unit. Water for different purposes is supplied by the water supply device that collects and transmits various kinds of water resources. Operations of the storage tank as well as the first and second gas-water energy conversion devices are based on water as the basis and a carrier of energy conversion to provide effective energy conversion and recycling. By further employing the heat source unit, high-efficiency cooling, heat dissipation or heat absorption can be achieved with minimal power and water consumption. Thus, the water energy conversion system is applicable for energy conversion, energy regulation and supply for air of indoors and outdoors of a building to realize effects of water storage and supply, anti-flooding, and energy saving and storage.
申请公布号 US9021826(B1) 申请公布日期 2015.05.05
申请号 US201414205330 申请日期 2014.03.11
申请人 Her Jiu Technology Co., Ltd. 发明人 Weng Kuo-Liang;Weng Chien-Lun;Weng Ling-Hua;Weng Ching-Ju
分类号 F28D5/00;F03B13/06;F24F1/00 主分类号 F28D5/00
代理机构 Guice Patents PLLC 代理人 Guice Patents PLLC
主权项 1. A water energy conversion system, at least comprising: a control unit, configured to operations of the entire system, connected to a power supply system; a first gas-water energy conversion device, comprising: a housing, being a hollow cylindrical body, comprising an internal accommodating chamber, a wind outlet at a top portion thereof and at least one wind inlet at a periphery thereof; a cooling fan, disposed at the wind outlet of the housing, controlled by the control unit; a main tube bank, disposed below the cooling fan, formed by at least one coil, the coil having a water entrance end connected to a first water discharging pipe and a water exit end connected to a first water receiving pipe; an air pre-cooling water tube bank, disposed at one side below the main tube bank, formed by at least one coil, the coil having a water entrance end connected to a main connecting pipe and a water exit end connected to a water sprinkling pipe; a water vaporizer, installed right below the main tube bank, being a mist cooling device that generates an endothermic effect through water vaporization, having at least one side located at a water sprinkling region of the water sprinkling pipe, provided with a water collecting pan below, the water collecting pan being connected to a water collecting connecting pipe; and a water collecting chamber, disposed below the water vaporizer, being an enclosed chamber and being in communication with the water collecting pan via the water collecting connecting pipe, connected to the main connecting pipe via a water delivering connecting pipe provided with a fifth water pump, the fifth water pump being connected to and controlled by the control unit; a second gas-water energy conversion device, comprising: a wind discharging channel and a wind receiving channel, the wind discharging channel having one side provided with a wind outlet and one other side provided with a wind inlet, the wind discharging channel internally provided with a first fan motor group, the wind receiving channel having one side provided with a wind inlet and one other side provided with a wind outlet, the wind receiving channel being provided with a second fan motor group; a first air heat exchanger, disposed at one side of the wind receiving channel, being a heat exchanging device formed by a coil, having a water entrance end and a water exit end, the water entrance end being connected to a first water discharging branch pipe provided with a seventh control valve, the water exit end being connected to a first water receiving branch pipe; a water vaporizing device, installed at one side of the wind discharging channel, being mist cooling device that generates an endothermic effect through water vaporization, having a top portion receive water sprinkled from a plurality of water holes at an end section of a water supply connecting pipe, the water supply connecting pipe being provided with a fourth water pump, the water vaporizing device being provided with a water collecting pan below, the water collecting pan being connected to the water discharging pipe, the water discharging pipe having one other connected to the first water receiving branch pipe; and a second air heat exchanger, disposed at one side of the wind discharging channel, being a heat exchanging device formed by a coil, having a water entrance end and a water exit end, the water entrance end being connected to a second water discharging pipe provided with a third water pump and a sixth control valve, the water exit end being connected to a second water receiving pipe; a water supply device, configured to collect water sources and to categorize the collected water for different usage purposes, all of the water sources entering the water supply device via at least one water feeding connecting pipe and delivered to a storage tank via a third water receiving pipe, the water supply device further configured to deliver the water stored in the storage tank to the water supply device via a third water discharging pipe provided with a first water pump and a second control valve, the water supply device further being connected to at least one water supply pipe for supplying water of different needs; the storage tank, being an enclosed chamber, comprising a plurality of water pick outlets, the plurality of water pick outlet comprising a first water pick outlet, a second water pick outlet, a third water pick outlet, a fourth water pick outlet, a fifth water pick outlet, and a sixth water pick outlet, the first water pick outlet being connected to the third water receiving pipe, the second water pick outlet being connected to the third water discharging pipe, the third water pick outlet being connected to the first water receiving pipe that is branch connected to the first water receiving branch pipe, the fourth water pick outlet being connected to the first water discharging pipe, the first water discharging pipe being provided with a second water pump and an eighth control valve and branch connected to the first water discharging branch pipe, the first water discharging branch pipe being provided with a seventh control valve, the fifth water pick outlet being connected to the second water receiving pipe, the sixth water pick outlet being connected to the second water discharging pipe; and a heat source unit, being a direct expansion heat source unit, controlled by the control unit, comprising: a heat source device, serving as a power source of refrigerant transmission, configured to provide a heat source; a first heat exchanger, disposed in the wind receiving channel, configured to perform heat exchange of heat absorption or heat dissipation on air passing therein, a first access end of the first heat exchanger being connected to the heat source device via a third refrigerant pipe and receiving an input of the heat source, a second access end of the first heat exchanger being connected to the heat source device via a fourth refrigerant pipe; and a second heat exchanger, disposed in the wind discharging channel, configured to perform heat exchange of heat dissipation or heat absorption on air passing therein, a third access end of the second heat exchanger being connected to the heat source device via a first refrigerant pipe and receiving an input of the heat source, the fourth access end of the second heat exchanger being connected to the heat source device via a second refrigerant pipe.
地址 Taichung TW