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    • 3. 发明公开
    • 정수기용 이중관 냉각모듈
    • 用于净水器的双管冷却模块
    • KR1020170119576A
    • 2017-10-27
    • KR1020160047811
    • 2016-04-19
    • 주식회사 교원
    • 임주영남현석
    • B01D35/18B01D35/14F25B39/02F28D7/10
    • B01D35/18B01D35/14F25B39/02F25B2600/21F25B2700/21F28D7/106
    • 본발명의일 실시예에따른정수기용이중관냉각모듈은음용수의이동을위한내관, 및상기내관을감싸도록형성되고냉매의이동을위한외관을포함하며, 상기냉매에의하여상기음용수를냉각하는이중관증발기; 상기이중관증발기를케이싱하는증발기케이스; 및상기이중관증발기의냉매입구및 냉매출구측의외면에밀착배치되어상기냉매입구및 냉매출구의온도를감지하는온도센서; 를포함하되, 상기내관의외면과상기외관의내면사이에스파이럴형상의냉매유로가형성되어, 냉매가상기냉매유로를따라회전하며이동되는것을특징으로한다. 이에의하면, 순간적으로냉수를생성함으로써, 냉매냉각장치의가동률및 가동시간을최소화하여전력사용량을절감할수 있고, 일정온도이하의냉수를계속적으로생성할수 있으며, 냉수저장탱크의오염에의한음용수의오염을방지할수 있을뿐만아니라, 이중관증발기내부의스파이럴형상의냉매유로에의하여효율적으로음용수를냉각할수 있는정수기용이중관냉각모듈을제공할수 있다.
    • 根据本发明实施例的用于净水器的双管冷却模块包括用于移动饮用水的内管和用于围绕内管并移动制冷剂的外管, 。 一个蒸发器壳体,用于包裹双管蒸发器; 以及温度传感器,其设置成与制冷剂入口和双管式蒸发器的制冷剂出口的外表面紧密接触以感测制冷剂入口和制冷剂出口的温度; 其中,在内管的外表面和外管的内表面之间形成螺旋形制冷剂通道,使得制冷剂沿着制冷剂通道旋转和移动。 根据该结构,通过瞬间产生冷水,它可以通过最小化冷却剂的冷却单元的运转率和运行时间降低功耗,并且可以低于某一温度在冷水连续生产,饮用水的污染由于冷水储罐的污染 并且还可以提供一种用于净水器的双管冷却模块,其可以通过双管蒸发器中的螺旋形冷却剂通道来有效地冷却饮用水。
    • 6. 发明授权
    • The superheat and capacity control device of variable speed refrigeration system
    • 可变速度制冷系统的超级和能力控制装置
    • KR100927072B1
    • 2009-11-13
    • KR20090006942
    • 2009-01-29
    • JEONG SEOK KWONLI HUA
    • JEONG SEOK KWONLI HUA
    • F25B40/00F25B1/00F25B49/00
    • F25B2600/21
    • PURPOSE: A device for controlling capacity and overheat of a variable speed refrigerating system is provided to remove an interference loop simultaneously affecting when controlling the capacity and overheat to save energy at the same time. CONSTITUTION: A device for controlling capacity and overheat of a variable speed refrigerating system comprises a temperature detection part, a temperature controller, an overheat controller, and a PLC control means. The temperature detection part detects the temperature of the refrigerant of an inlet or an outlet of an expansion valve and of the chamber inside. The temperature controller controls the rotation number of a compressor according to a transfer function(G1 Ta). The overheat controller controls an opening degree of an expansion valve according to the transfer function(G1 SH). A PLC control means converts the set rotation number of the compressor.
    • 目的:提供一种用于控制变速制冷系统的容量和过热的装置,以便在控制容量和过热同时影响同时影响同时影响的干扰回路,以节省能源。 构成:用于控制变速制冷系统的容量和过热的装置包括温度检测部件,温度控制器,过热控制器和PLC控制装置。 温度检测部检测膨胀阀和室内的入口或出口的制冷剂的温度。 温度控制器根据传递函数(G1 Ta)控制压缩机的转速。 过热控制器根据传递函数(G1 SH)控制膨胀阀的开度。 PLC控制装置转换压缩机的设定转数。
    • 7. 发明公开
    • 공기 조화 장치
    • 冷气机
    • KR1020080081281A
    • 2008-09-09
    • KR1020087014793
    • 2006-12-12
    • 다이킨 고교 가부시키가이샤
    • 야마구치타카히로니시무라타다후미요시미마나부카사하라신이치
    • F25B49/00F25B49/02
    • F25B13/00F25B45/00F25B49/005F25B2313/023F25B2313/02741F25B2400/13F25B2500/19F25B2600/13F25B2600/21F25B2700/04Y02B30/745
    • An air conditioner in which whether the quantity of refrigerant in a refrigerant circuit is appropriate or not can be judged with high precision while suppressing the operational load. The air conditioner (1) comprises a refrigerant circuit (10), a means for operating the quantity of refrigerant, and a means for judging the quantity of refrigerant. The refrigerant circuit (10) is constituted by connecting a compressor (21), an outdoor heat exchanger (23), and indoor heat exchangers (42, 52). The means for operating the quantity of refrigerant operates the quantity of refrigerant at each section from the refrigerant flowing in the refrigerant circuit (10) or the operational state of constitutive apparatus by using the relation between the quantity of refrigerant at each section when the refrigerant circuit (10) is divided into a plurality of sections and the refrigerant flowing in the refrigerant circuit (10) or the operational state of constitutive apparatus. The means for judging the quantity of refrigerant judges whether the quantity of refrigerant in the refrigerant circuit (10) is appropriate or not by using the quantity of refrigerant at each section operated by the means for operating the quantity of refrigerant.
    • 可以在抑制运转负荷的同时高精度地判断制冷剂回路中的制冷剂量是否适合的空调。 空调装置(1)包括制冷剂回路(10),用于操作制冷剂量的装置和用于判断制冷剂量的装置。 制冷剂回路10通过连接压缩机21,室外热交换器23和室内热交换器42,52而构成。 用于操作制冷剂量的装置在制冷剂回路(10)中流动的制冷剂的每个部分的制冷剂量或本体装置的操作状态下,使用制冷剂回路 (10)被分成多个部分和在制冷剂回路(10)中流动的制冷剂或本构装置的操作状态。 用于判断制冷剂量的装置通过使用由用于操作制冷剂量的装置操作的每个部分处的制冷剂量来判断制冷剂回路(10)中的制冷剂量是否适合。
    • 9. 发明公开
    • 공기 조화 장치
    • 冷气机
    • KR1020080022593A
    • 2008-03-11
    • KR1020087002923
    • 2005-06-10
    • 다이킨 고교 가부시키가이샤
    • 마츠오카히로무네시모다준이치사토켄지미즈타니카즈히데
    • F25B49/00
    • F25B49/005F25B13/00F25B2313/02331F25B2313/0314F25B2313/0315F25B2500/19F25B2600/19F25B2600/21F25B2700/04F25B2700/1931F25B2700/1933
    • An air conditioner comprising a heat source unit and a utilization unit interconnected through refrigerant communication pipe in which it is judged accurately whether the refrigerant circuit is filled with an appropriate quantity of refrigerant or not. The air conditioner (1) can operate switchably in either a normal operation mode where the heat source unit (2) having a compressor (21) and a heat source side heat exchanger (23) is connected with utilization units (4, 5) having utilization side expansion valves (41, 51) and utilization side heat exchangers (42, 52) through refrigerant communication pipe (6, 7) and each apparatus is controlled depending on the operation load of the utilization units (4, 5) and a refrigerant quantity judging operation mode where the utilization units (4, 5) perform cooling operation and operation capacity of the compressor (21) is controlled such that the evaporation pressures of the utilization side heat exchangers (42, 52) are constant while controlling the utilization side expansion valves (41, 51) such that the degree of overheat at the outlet port of the utilization side heat exchangers (42, 52) is a positive value. In the refrigerant quantity judging operation mode, it is judged whether the refrigerant circuit (10) is filled with an appropriate quantity of refrigerant or not by detecting the degree of overcooling at the outlet port of the heat source side heat exchanger (23). ® KIPO & WIPO 2008
    • 一种空调机,其特征在于,包括:热源单元和通过制冷剂连通配管连接的利用单元,准确地判断制冷剂回路是否填充有适量的制冷剂。 空调装置(1)可以在具有压缩机21和热源侧热交换器23的热源单元(2)与利用单元4,5连接的正常运转模式下切换运转,利用单元4,5具有: 利用侧膨胀阀(41,51)和利用侧热交换器(42,52)通过制冷剂连通配管(6,7)和各设备根据利用单元(4,5)的操作负荷和制冷剂 控制利用单元(4,5)进行制冷运转的压力判定运转模式和压缩机(21)的运转能力,使得利用侧热交换器(42,52)的蒸发压力恒定,同时控制利用侧 膨胀阀(41,51),使得利用侧热交换器(42,52)的出口处的过热度为正值。 在制冷剂量判定运转模式中,通过检测热源侧热交换器(23)的出口处的过冷却程度来判断制冷剂回路(10)是否填充有适量的制冷剂。 ®KIPO&WIPO 2008