WO2014036934A1 - 节能开水器 - Google Patents

节能开水器 Download PDF

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Publication number
WO2014036934A1
WO2014036934A1 PCT/CN2013/082889 CN2013082889W WO2014036934A1 WO 2014036934 A1 WO2014036934 A1 WO 2014036934A1 CN 2013082889 W CN2013082889 W CN 2013082889W WO 2014036934 A1 WO2014036934 A1 WO 2014036934A1
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Prior art keywords
water
bucket
cooling
boiling
tank
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PCT/CN2013/082889
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English (en)
French (fr)
Inventor
冯林
Original Assignee
Feng Lin
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Filing date
Publication date
Application filed by Feng Lin filed Critical Feng Lin
Priority to CN201380034755.7A priority Critical patent/CN104508392A/zh
Publication of WO2014036934A1 publication Critical patent/WO2014036934A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H1/00Water heaters, e.g. boilers, continuous-flow heaters or water-storage heaters
    • F24H1/0018Water heaters, e.g. boilers, continuous-flow heaters or water-storage heaters using electric energy supply

Definitions

  • the invention relates to a water heater, in particular to an energy-saving water heater. Background technique
  • the existing water heaters can only provide boiling water, and cannot provide water at the same time, which cannot meet the needs of people who are eager to drink water, especially children. Summary of the invention
  • the object of the present invention is to overcome the deficiencies of the prior art and to provide an energy-saving water boiler for providing boiled water and boiled water at the same time to meet the demand of people eager to drink water.
  • the energy-saving water boiler comprises a boiling water pot, a water bucket, a water bucket, a cooling pipe, a cooling bucket and a water inlet tank; the water inlet tank is connected with the cooling pipe, the cooling pipe is connected with the boiling water pot, and the water boiling pot is connected The water bucket and the water bucket are connected; the water bucket and the cooling pipe are located in the cooling bucket, the cooling bucket is provided with cooling water, the water bucket and the water bucket are located at the lower part of the boiling water pot, and the boiling water pot is located at the lower part of the water inlet tank.
  • the tap water When in use, the tap water enters the boiling water pot through the cooling pipe through the water inlet tank. After the tap water is boiled in the boiling water pot, the boiling water is opened by the boiling water pot through the open water pipe into the boiling water bucket and the water bucket; the boiling water entering the water bucket is cooled by the cooling water of the water bucket. The heat of the boiling water is transferred to the cooling water to provide the people with boiling water; the tap water enters the cooling pipe from the inlet tank, and the cooling pipe absorbs the heat of the cooling water, thereby increasing the temperature of the tap water entering the boiling water pot, thereby achieving the purpose of saving electric energy.
  • the utility model has the beneficial effects that: the energy-saving water boiler is provided with a water-opening bucket, a water bucket and a cooling bucket, and the cooling water is used to cool the hot water, so that the hot water is turned into a boiled water, and the hot boiling water and the boiled water are simultaneously provided for the people;
  • the cooling tube is used to recover the heat of the cooling water, reduce the loss of thermal energy, and save energy.
  • FIG. 1 is a schematic view showing the structure of an energy-saving water boiler. detailed description
  • the energy-saving water heater includes a boiling water pot 1, a water bucket 2, a water bucket 3, a cooling pipe 4, a cooling bucket 5, and a water inlet tank 6; a water inlet tank 6 and a cooling pipe 4 Connected, the cooling pipe 4 is connected to the boiling water pot 1, the boiling water pot 1 is connected with the boiling water tank 2 and the water tank 3; the water tank 3 and the cooling pipe 4 are located in the cooling tank 5, and the cooling water tank 5 is provided with cooling water 7, so that the water tank 3
  • the heat can be transferred to the cooling water 7, and the cooling pipe 4 can absorb the heat of the cooling water 7; the boiling water tank 2 and the water bucket 3 are located at the lower portion of the boiling water pot 1, and the boiling water pot 1 is located at the lower portion of the water inlet tank 6, so that the water inlet tank 6
  • the water can automatically flow into the boiling water pot 1, and the boiling water of the boiling water pot 1 can automatically flow into the boiling water tank 2 and the water tank 3; the boiling
  • the inlet tank 6 is provided with a water inlet float valve 9, and the water float ball valve 9 is connected with the water pipe, and the tap water enters the water inlet tank 6 from the inlet water float valve 9, and the water level is set.
  • the inlet float valve 9 is automatically closed.
  • the inlet float valve 9 automatically opens the inlet water.
  • a water filter 10 is disposed at a lower portion of the water inlet tank 6, and a water inlet 11 of the water filter 10 communicates with the water inlet tank 6, and a water outlet 12 of the water filter 10 communicates with the cooling pipe 4, and the cooling pipe 4 and the cooling pipe 4
  • the water inlet joint 13 of the boiling water pot 1 is connected.
  • the water filter 10 includes a casing 22 and a filter element 23, and the filter element 23 is connected to the casing 22 by threads.
  • the mounting port 24 of the filter element 23 is located in the water inlet tank 6, opens the cover plate 25 of the water inlet tank 6, and rotates the filter element 23, The filter element 23 is replaced.
  • the water outlet joint 14 of the water heater 1 is connected to the water pipe 8
  • the water pipe 8 is connected to the three-way joint 15, the three-way joint 15 and the water tank 2 and the water-repellent water are unidirectional.
  • the valve 16 is connected, the water-repellent check valve 16 is connected to the water tank 3, and the direction of the water-repellent check valve 16 is directed by the three-way joint 15 to the water tank 3, and the boiling water of the water boiling pot 1 is entered into the water tank 3 by the water-repellent check valve 16.
  • the boiling water of the bucket 3 cannot be returned to the boiling water pot 1.
  • the cooling bucket 5 In order to use the inlet tank 6 to supply tap water to the cooling tub 5 while preventing the cooling water 7 of the cooling tub 5 from flowing back to the inlet tank 6, the cooling bucket 5 is provided with a cold water check valve 17, and the inlet and the inlet of the cold water check valve 17 The water tank 6 is connected, and the outlet of the cold water check valve 17 is in communication with the cooling bucket 5; the direction of the cold water check valve 17 is directed from the inlet tank 6 to the cooling bucket 5, and the tap water flows from the inlet tank 6 through the cold water check valve 17 into the cooling bucket. 5, the water in the cooling bucket 5 cannot flow into the water inlet tank 6; the cooling bucket 5 is provided with a water discharge joint 21 for periodically cleaning the cooling bucket 5, and replacing the water in the cooling bucket 5.
  • the boiling water pot 1 and the water tank 2 are provided with a heat insulating layer 18 for reducing the loss of heat energy and maintaining the temperature of boiling water of the water tank 2.
  • Open bucket 2, ⁇ bucket 3 The lower part is provided with a storage box 26 for storing items such as water cups.
  • the water tank 3 and the cooling pipe 4 are made of a heat conductive material, and the heat conductive material includes a stainless steel material, so that the heat of the water tank 3 can be transferred to the cooling water 7, and the heat of the cooling water 7 can be transferred to the cooling pipe 4.
  • the working principle of the energy-saving water heater is: tap water enters the boiling water pot 1 from the water inlet tank 6 through the cooling pipe 4, after the tap water is boiled in the boiling water pot 1, the boiling water is opened from the boiling water pot 1 through the open water pipe 8 into the boiling water tank 2 and the water bucket 3;
  • the boiling water entering the crucible 3 is cooled by the cooling water 7 of the crucible 3, and the heat of the boiling water is transferred to the cooling water 7 to provide the boiled water;
  • the tap water enters the cooling duct 4 from the inlet tank 6, and the cooling water is absorbed by the cooling duct 4. 7 heat, increase the temperature of the tap water into the boiling water pot, in order to save energy.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Cookers (AREA)

Abstract

节能开水器,包括:开水锅(1)、开水桶(2)、暖水桶(3)、冷却管(4)、冷却桶(5)以及进水箱(6),进水箱(6)与冷却管(4)连接,冷却管(4)与开水锅(1)连接,开水锅(1)与开水桶(2)以及暖水桶(3)连接,暖水桶(3)以及冷却管(4)位于冷却桶(5)内,冷却桶(5)内设有冷却水(7),开水桶(2)以及暖水桶(3)位于开水锅(1)的下部,开水锅(1)位于进水箱(6)的下部。该节能开水器利用冷却水冷却热开水,使热开水变为暖开水,同时利用冷却管回收冷却水的热量,从而减少热能损失。

Description

节能开水器
技术领域
本发明涉及一种开水器, 特别是一种节能开水器。 背景技术
现有的开水器, 只能提供开水, 不能同时提供暧开水水, 不能满足人 们时常急于喝水的需求, 特别是儿童。 发明内容
本发明的目的是克服现有技术的不足, 提供一种节能开水器, 为人们 同时提供开水以及暧开水, 满足人们急于喝水的需求。
本发明所采取的技术方案是: 节能开水器包括有开水锅、 开水桶、 暧 水桶、 冷却管、 冷却桶以及进水箱; 进水箱与冷却管连接, 冷却管与开水 锅连接, 开水锅与开水桶以及暧水桶连接; 暧水桶以及冷却管位于冷却桶 内, 冷却桶设有冷却水, 开水桶以及暧水桶位于开水锅的下部, 开水锅位 于进水箱的下部。
使用时, 自来水由进水箱经冷却管进入开水锅, 自来水在开水锅煮开 后, 开水由开水锅经开水管进入开水桶以及暧水桶; 进入暧水桶的开水被 暧水桶的冷却水冷却, 将开水的热量传递到冷却水, 为人们提供暧开水; 自来水由进水箱进入冷却管, 利用冷却管吸收冷却水的热量, 提高进入开 水锅自来水的温度, 以达到节省电能的目的。
本发明的有益效果是: 节能开水器, 设有开水桶以、 暧水桶以及冷 却桶, 利用冷却水来冷却热开水, 使热开水变为暧开水, 为人们同时提供 热开水以及暧开水; 同时利用冷却管来回收冷却水的热量, 减少热能的损 失, 节省电能。 附图说明
图 1是节能开水器的结构示意图。 具体实施方式
下面根据附图与具体实施例对本发明进行进一步的说明:
图 1所示的节能开水器的结构示意图, 节能开水器包括有开水锅 1、 开水桶 2、 暧水桶 3、 冷却管 4、 冷却桶 5以及进水箱 6; 进水箱 6与冷却 管 4连接, 冷却管 4与开水锅 1连接, 开水锅 1与开水桶 2以及暧水桶 3 连接; 暧水桶 3以及冷却管 4位于冷却桶 5内, 冷却桶 5设有冷却水 7, 使暧水桶 3可以将热量传递给冷却水 7, 冷却管 4可以吸收冷却水 7的热 量; 开水桶 2以及暧水桶 3位于开水锅 1的下部, 开水锅 1位于进水箱 6 的下部, 使进水箱 6的水可以自动流入开水锅 1, 开水锅 1的开水可以自 动流入开水桶 2以及暧水桶 3; 开水锅 1设有控制器 19以及控制开关 20, 用于开水锅 1的工作。
为了达到利用进水箱 6自动进水的目的,进水箱 6设有进水浮球阀 9, 水浮球阀 9与自来水管连接, 自来水由进水浮球阀 9进入进水箱 6, 水位 达到设定的位置时, 进水浮球阀 9自动关闭, 水位低于设定的位置时, 进 水浮球阀 9自动打开进水。
为了净化自来水, 进水箱 6的下部设有滤水器 10, 滤水器 10的入水 口 11与进水箱 6连通, 滤水器 10的出水口 12与冷却管 4连通, 冷却管 4 与开水锅 1的进水接头 13连接。 滤水器 10包括有外壳 22以及滤芯 23, 滤芯 23通过螺紋与外壳 22连接, 滤芯 23的安装口 24位于进水箱 6内, 打开进水箱 6的盖板 25, 旋转滤芯 23, 即可将滤芯 23更换。
为了防止暧水桶 3的暧水流到开水桶 2,开水锅 1的出开水接头 14与 开水管 8连接, 开水管 8与三通接头 15连接, 三通接头 15与开水桶 2以 及暧水单向阀 16连接, 暧水单向阀 16与暧水桶 3连接, 暧水单向阀 16 的方向由三通接头 15指向暧水桶 3, 开水锅 1的开水由暧水单向阀 16进 入暧水桶 3, 暧水桶 3的暧开水不能返流到开水锅 1。
为了利用进水箱 6向冷却桶 5放入自来水, 同时防止冷却桶 5的冷却 水 7倒流回进水箱 6, 冷却桶 5设有冷水单向阀 17, 冷水单向阀 17的入 口与进水箱 6连通, 冷水单向阀 17的出口与冷却桶 5连通; 冷水单向阀 17的方向由进水箱 6指向冷却桶 5, 自来水由进水箱 6经冷水单向阀 17 流入冷却桶 5, 冷却桶 5内的水不能流入进水箱 6; 冷却桶 5设有放水接 头 21, 用于定期清洁冷却桶 5, 更换冷却桶 5内的水。 为了减少热能的浪费, 开水锅 1以及开水桶 2设有隔热层 18, 用于减 少热能的损耗, 以及保持开水桶 2开水的温度。
开水桶 2、 暧水桶 3下部设有储物箱 26, 用于存储水杯等物品。 暧水 桶 3以及冷却管 4由导热材料制造, 导热材料包括有不锈钢材料, 使暧水 桶 3的热量可以传递到冷却水 7, 冷却水 7的热量可以传递到冷却管 4。
节能开水器的工作原理是: 自来水由进水箱 6经冷却管 4进入开水锅 1, 自来水在开水锅 1煮开后, 开水由开水锅 1经开水管 8进入开水桶 2 以及暧水桶 3; 进入暧水桶 3的开水被暧水桶 3的冷却水 7冷却, 将开水 的热量传递到冷却水 7, 为人们提供暧开水; 自来水由进水箱 6进入冷却 管 4, 利用冷却管 4吸收冷却水 7的热量, 提高进入开水锅 1 自来水的温 度, 以达到节省电能的目的。

Claims

权 利 要 求 书
1.节能开水器, 其特征在于: 所述的节能开水器包括有开水锅 (1)、 开水桶 (2)、 暧水桶 (3)、 冷却管 (4)、 冷却桶 (5) 以及进水箱 (6); 进水箱 (6) 与冷却管 (4) 连接, 冷却管 (4) 与开水锅 (1) 连接, 开水 锅(1)与开水桶(2) 以及暧水桶(3)连接; 暧水桶(3) 以及冷却管(4) 位于冷却桶 (5) 内, 冷却桶 (5) 设有冷却水 (7), 开水桶 (2) 以及暧 水桶 (3)位于开水锅 (1) 的下部, 开水锅 (1)位于进水箱(6) 的下部。
2.根据权利要求 1所述的节能开水器,其特征在于:所述的进水箱(6) 设有进水浮球阀 (9), 自来水由进水浮球阀 (9) 进入进水箱 (6), 水位 达到设定的位置时, 进水浮球阀 (9) 自动关闭, 水位低于设定的位置时, 进水浮球阀 (9) 自动打开进水; 进水箱 (6) 的下部设有滤水器 (10), 滤水器(10) 的入水口 (11) 与进水箱(6)连通, 滤水器(10) 的出水口
(12) 与冷却管 (4) 连通, 冷却管 (4) 与开水锅 (1) 的进水接头 (13) 连接; 开水锅 (1) 的出开水接头 (14) 与开水管 (8) 连接, 开水管 (8) 与三通接头 (15) 连接, 三通接头 (15) 与开水桶 (2) 以及暧水单向阀
(16) 连接, 暧水单向阀 (16) 与暧水桶 (3) 连接, 暧水单向阀 (16) 的方向由三通接头 (15) 指向暧水桶 (3), 开水锅 (1) 的开水由暧水单 向阀(16)进入暧水桶(3), 暧水桶(3)的暧开水不能返流到开水锅(1)。
3.根据权利要求 1 所述的节能开水器, 其特征在于: 所述的冷却桶 (5) 设有冷水单向阀 (17), 冷水单向阀 (17) 的入口与进水箱 (6) 连 通, 冷水单向阀 (17) 的出口与冷却桶 (5) 连通; 冷水单向阀 (17) 的 方向由进水箱 (6) 指向冷却桶 (5), 自来水由进水箱 (6) 经冷水单向阀
(17) 流入冷却桶 (5), 冷却桶 (5) 内的水不能流入进水箱 (6)。
4.根据权利要求 1 所述的节能开水器, 其特征在于: 所述的开水锅 (1) 以及开水桶 (2) 设有隔热层 (18), 用于减少热能的损耗, 以及保 持开水桶 (2) 开水的温度。
5.根据权利要求 1 所述的节能开水器, 其特征在于: 所述的开水锅 (1) 设有控制器 (19) 以及控制开关 (20), 用于开水锅 (1) 的工作。
6.根据权利要求 1 所述的节能开水器, 其特征在于: 所述的冷却桶 (5) 设有放水接头 (21), 用于定期清洁冷却桶 (5), 更换冷却桶 (5)
1 内的水。
7.根据权利 2所述的节能开水器, 其特征在于: 所述的滤水器 (10) 包括有外壳 (22) 以及滤芯 (23), 滤芯 (23) 通过螺紋与外壳 (22) 连 接, 滤芯 (23) 的安装口 (24) 位于进水箱 (6) 内, 打开进水箱 (6) 的 盖板 (25), 旋转滤芯 (23), 即可将滤芯 (23) 更换。
8.根据权利 1所述的节能开水器, 其特征在于: 所述的开水桶 (2)、 暧水桶 (3) 下部设有储物箱 (26), 用于存储水杯等物品。
9.根据权利 1所述的节能开水器, 其特征在于: 所述的暧水桶 (3) 以及冷却管 (4) 由导热材料制造, 导热材料包括有不锈钢材料。
10.根据权利要求 1所述的节能开水器, 其特征在于: 所述的节能开水 器的工作原理是: 自来水由进水箱 (6) 经冷却管 (4) 进入开水锅 (1), 自来水在开水锅 (1) 煮开后, 开水由开水锅 (1) 经开水管 (8) 进入开 水桶 (2) 以及暧水桶 (3); 进入暧水桶 (3) 的开水被暧水桶 (3) 的冷 却水 (7) 冷却, 将开水的热量传递到冷却水 (7), 为人们提供暧开水; 自来水由进水箱 (6) 进入冷却管 (4), 利用冷却管 (4) 吸收冷却水 (7) 的热量, 提高进入开水锅 (1) 自来水的温度, 以达到节省电能的目的。
2
PCT/CN2013/082889 2012-09-07 2013-09-03 节能开水器 WO2014036934A1 (zh)

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CN201380034755.7A CN104508392A (zh) 2012-09-07 2013-09-03 节能开水器

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CN201210345529.8A CN102840660B (zh) 2012-09-07 2012-09-07 节能开水器

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