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    • 2. 发明公开
    • 난방장치
    • 加热装置
    • KR1020130082106A
    • 2013-07-18
    • KR1020130002312
    • 2013-01-09
    • 린나이가부시기가이샤린나이코리아 주식회사
    • 소부에쓰토무와타라이다쓰키오시마가쓰야하야시야스히라스즈키아키라
    • F24D11/02F24D19/10F24H4/00
    • Y02B30/125F24D11/02F24D19/1015F24D2220/042F24H4/00Y02B30/52
    • PURPOSE: A heating apparatus is provided to mix a high temperature heat medium, which is sent from a tank to a heating outbound passage, with a heat source which becomes low temperature due to the heat radiation of a heating terminal, and which is sent through a bypass path to the heating outbound passage as occasion demands. CONSTITUTION: A heating apparatus includes a heat source unit, and a heat storing outbound passage (34), a heat storing return passage (32), a heating terminal (90), a heating outbound passage (56), a heating return passage (60), a bypass path (64), and a mixing valve (66). The heat source unit heats a heat medium, and the heat storing outbound passage sends the heat medium to the heat source unit. The heat storing return passage returns the heat medium from the heat source unit to the tank, and the heating terminal implements heating by making the heat medium to radiate heat. The heating outbound passage sends the heat medium from the tank to the heating terminal, and the heating return passage returns the heat medium from the heating terminal to the tank. The bypass path sends the heat medium directly to the heating outbound passage without passing the heat medium through the tank. The mixing valve is capable of controlling the ratio of the flow rate of the heat medium, which is sent from the heating return passage through the tank to the heating outbound passage, to the flow rate of the heat medium which is sent from the heating return passage through the bypass path to the heating outbound passage. [Reference numerals] (AA) Water discharge; (BB) Water supply; (CC) General light; (DD) Snow-melting power
    • 目的:提供一种加热装置,用于将从罐发送到加热出口通道的高温热介质与由于加热终端的热辐射而成为低温的热源混合,并且通过 根据需要,通往加热出站通道的旁路。 构成:加热装置包括热源单元和储热出口通道(34),储热返回通道(32),加热端子(90),加热出口通道(56),加热返回通道 60),旁路路径(64)和混合阀(66)。 热源单元加热热介质,蓄热出口通道将热介质传送到热源单元。 储热返回通道将热介质从热源单元返回到罐,并且加热端子通过使热介质辐射热来实现加热。 加热出口通道将热介质从罐传送到加热端子,加热返回通道将热介质从加热端返回到罐。 旁通路径将热介质直接发送到加热出口通道,而不会使热介质通过罐。 混合阀能够控制从加热返回通道通过罐到加热出口通道的热介质的流量与从加热回路发送的热介质的流量的比率 通过旁路通往加热出口通道。 (附图标记)(AA)排水; (BB)供水; (CC)一般灯光; (DD)融雪能力
    • 3. 发明公开
    • 난방 장치
    • 加热
    • KR1020170042486A
    • 2017-04-19
    • KR1020160129628
    • 2016-10-07
    • 린나이코리아 주식회사린나이가부시기가이샤
    • 가니요시모토하야시야스히라오오시마가츠야오가와히데아키우치다메이
    • F24D19/10F24D3/10
    • (과제) 난방순환로와저류탱크의정상접속을확실하게판정할수 있는난방장치를제공한다. (해결수단) 난방운전을실행하고, 난방순환펌프(51)를온 한다. 분배밸브(23)는바이패스온 상태로제어되고, 축열용순환펌프(18) 및히트펌프(31)의운전이실행되며, 저류탱크(11) 내의온액의축열이실행된다. 저류탱크(11)가온액으로가득하게된 경우, 난방순환펌프(51)는온 상태가계속되고, 연소식열원기(41)는오프된다. 분배밸브(23)는바이패스오프상태로제어되고, 축열용순환펌프(18) 및히트펌프(31)의운전이정지된다. 온도센서(25, 26)의각각의검출온도가온도센서(14a)에서의검출온도로부터 5℃감산한감산온도보다도높고, 그상태가 5초계속되고있는경우, 배관이정상적으로접속되어있다고판정하고그 취지를리모컨에표시시킨다.
    • (任务)提供了一种加热装置,其能够可靠地确定供暖循环路径的正常连接和储存罐。 (解决方案)执行加热操作,并且加热循环泵51开启。 分配阀23被控制为绕过状态neunba,和储热循环泵18的操作,并执行热泵(31),热储存在储槽11的onaek被执行。 贮存罐11时,它填充有加热液体和加热循环泵51 neunon状态持续,十个燃烧式热交换器赢得(41)被关闭。 分配阀23 neunba旁路的操作被控制为关断状态时,储热18和热泵31中的循环泵被停止。 比温度传感器更高各检测温度由5℃从减去25和26的温度的检测温度eseoui温度传感器(14a)的相减,如果仍然是5秒,则确定管道连接正常时,所述条件 在遥控器上显示效果。
    • 5. 发明公开
    • 난방장치
    • 加热装置
    • KR1020130082107A
    • 2013-07-18
    • KR1020130002315
    • 2013-01-09
    • 린나이가부시기가이샤린나이코리아 주식회사
    • 소부에쓰토무와타라이다쓰키오시마가쓰야하야시야스히라스즈키아키라
    • F24D11/02F24H7/04F24D7/00F24H4/00
    • Y02B30/125F24D11/02F24D7/00F24H4/00F24H7/04
    • PURPOSE: A heating apparatus is provided to stably maintain the temperature of a heat medium which is sent to a heating terminal by interflowing the heat medium which is heated by a heat source unit and a heating outbound passage. CONSTITUTION: A heating apparatus includes a tank (30), a heat source unit, a heat storing outbound passage (34), a heat storing return passage (32), a heating terminal (90), a heating outbound passage (56), and a heating return passage (60). The tank stores a heat medium, and the heat source unit heats the heat medium. The heat storing outbound passage sends the heat medium from the tank to the heat source unit. The heat storing return passage returns the heat medium from the heat source unit to the tank. The heating terminal implements heating by making the heat medium to radiate heat. The heating outbound passage sends the heat medium from the tank to the heat source unit. The heating return passage returns the heat medium from the heat source unit to the tank. The heat source unit is one between a fuel cell and a heat pump which uses carbon oxide as a refrigerant. The heat source unit is composed of a common pipe shared by the terminal end part on which the heat storing return passage is connected to the tank and the beginning end part on which the heating outbound passage is connected to the tank. [Reference numerals] (AA) Water discharge; (BB) Water supply; (CC) General light; (DD) Snow-melting power
    • 目的:提供一种加热装置,用于通过使由热源单元加热的热介质和加热出口通道相互交错而稳定地保持发送到加热端子的热介质的温度。 构成:加热装置包括罐(30),热源单元,储热出口通道(34),储热返回通道(32),加热端子(90),加热出口通道(56) 和加热返回通道(60)。 储罐储存热介质,热源单元加热热介质。 蓄热出风通道将热介质从罐发送到热源单元。 储热返回通道将热介质从热源单元返回到罐。 加热终端通过使热介质发热来实现加热。 加热出口通道将热介质从罐传送到热源单元。 加热返回通道将热介质从热源单元返回到罐。 热源单元是使用碳氧化物作为制冷剂的燃料电池和热泵之间的热源单元。 热源单元由与储罐相连接的终端部分共用的共用管道和加热出口通道连接到罐体的起始端部分组成。 (附图标记)(AA)排水; (BB)供水; (CC)一般灯光; (DD)融雪能力
    • 6. 发明授权
    • 하이브리드식 급탕 장치
    • 混合热水供应设备
    • KR101343438B1
    • 2013-12-19
    • KR1020120106691
    • 2012-09-25
    • 가부시키가이샤 덴소린나이가부시기가이샤
    • 모리요시키하야시야스히라오시마가츠야
    • F24H4/04F24H9/20F24D19/10F25B30/02F24D17/02
    • F24H4/04F24D17/02F24D19/1006F24H9/20F25B30/02Y02B30/12
    • A control device (100) of a hybrid hot water supply device controls the operation by determining whether or not the operation of a heat pump unit (1) for treating calories supplied to a heater (5) is necessary, and also controls the heating operation by the heat exchange of a radiant heat exchanger (4). The control device (100) determines whether or not the operation of the heat pump unit (1) is necessary based on the primary output temperature of fluid detected by a thermistor (32) for the primary output temperature of the heat exchanger when the heater (5) requests the radiation of heat. Thus, the hybrid hot water supply device can precisely determine the coefficient of performance of the heat pump unit, and can reduce the frequency of the operation and stop states of the heat pump unit. [Reference numerals] (AA) Start;(BB,EE,FF,HH) No;(CC,DD,GG,II) YES;(JJ) END;(S10) Average value of the primary output temperature;(S20) Memorize the average value of the primary output temperature;(S30) Is the step (S10) answered as No over a week, continuously?;(S35) Set the secondary input temperature;(S40) Is the amount of a water tank below the predetermined amount?;(S50) H/P unit: stop direction;(S60) H/P unit: operation;(S70) Is the heating stopped?
    • 混合热水供应装置的控制装置(100)通过确定是否需要用于处理供应到加热器(5)的卡路里的热泵单元(1)的操作来控制操作,并且还控制加热操作 通过辐射热交换器(4)的热交换。 控制装置(100)基于当热交换器的主输出温度由热敏电阻(32)检测到的流体的初级输出温度,加热器(100)时,判定是否需要热泵单元(1)的运转 5)要求辐射热量。 因此,混合热水供给装置能够精确地确定热泵机组的性能系数,能够降低热泵机组的运转频率和停止状态。 (AA)开始;(BB,EE,FF,HH)否;(CC,DD,GG,II)是;(JJ)END;(S10)初级输出温度的平均值;(S20) 记录主输出温度的平均值(S30)步骤(S10)是否连续响应一周内为否?(S35)设定二次输入温度;(S40)水箱的数量低于 (S50)H / P单位:停止方向;(S60)H / P单位:操作;(S70)加热停止?
    • 7. 发明公开
    • 히트 펌프식 가열 장치
    • 热泵式加热装置
    • KR1020160034812A
    • 2016-03-30
    • KR1020150131651
    • 2015-09-17
    • 가부시키가이샤 덴소린나이가부시기가이샤
    • 우치다메이스즈키아키라오가와히데아키하야시야스히라
    • F24H4/00F24H4/02F24H9/20F25B30/00F25B39/02F25B47/00F25B47/02
    • 히트펌프식가열장치는탱크, 히트펌프, 착상판정수단, 저류량검출수단, 제상종료시 추정수단및 제상운전실행수단을구비하고있다. 탱크는열매체를저장한다. 히트펌프는외기와냉매를열교환시키고, 냉매의열로상기열매체를가열한다. 착상판정수단은증발기가착상상태인지의여부를판정한다. 저류량검출수단은탱크내에저장되어있는열매체중, 미리정해진온도한계값이상으로되어있는열매체의고온저류량을검출한다. 제상종료시 추정수단은제상운전을히트펌프에개시시켰다고가정하여, 제상운전의종료시점에서의열매체의고온저류량인제상종료시 고온저류량을, 저류량검출수단이검출한고온저류량에기초하여추정한다. 제상운전실행수단은증발기가착상상태라고착상판정수단에의하여판정되고, 또한제상종료시 추정수단이추정한제상종료시 고온저류량이미리정해진저류량한계값이상인경우에, 제상운전을히트펌프에개시시킨다.
    • 本发明的热泵式加热装置包括:罐; 热泵; 确定手段; 存储检测装置; 除霜终止估计装置; 和除霜操作执行装置。 储罐储存一个热介质。 热泵使外部空气和制冷剂交换热量,并且利用制冷剂的热量来加热热介质。 沉降确定装置确定蒸发器是否沉降。 存储检测装置检测制成预定温度极限值或更高温度的热介质的高温储存。 除霜终止估计装置假设热泵将执行除霜操作,并且在解冻终止的情况下估计高温储存,即在除霜结束时的热介质的高温储存 基于由存储检测装置检测的高温存储器进行操作。 除霜运转执行装置,在确定由建立判定装置确定蒸发器的情况下,当除霜结束估计装置估计的除霜结束时刻的高温储存是 预定的存储限制值以上。
    • 8. 发明公开
    • 난방 시스템
    • 加热系统
    • KR1020140034059A
    • 2014-03-19
    • KR1020130100209
    • 2013-08-23
    • 린나이가부시기가이샤
    • 소부에쓰토무와타라이다쓰키오시마가쓰야하야시야스히라하라다다케시
    • F24D3/00F24D19/10F24H9/20F24D12/02
    • Y02B30/14
    • (Project) A heating system for circulating a heat medium between heating terminals for heating by the heat radiation from the heat medium provides a technology capable of properly adjusting the supply temperature of the heat medium to the heating terminal without the inconvenience. (Solution) Disclosed is a heating system. The heating system circulates a heat medium between heating terminals for heating by the heat radiation from the heat medium. The heating system comprises: a temperature setting member for setting a heating setting temperature according to the operation of users; a temperature determination member for determining a heating control temperature based on the heating setting temperature and a compensation value; a temperature adjustment member for adjusting the supply temperature of the heat medium relative to the heating terminal to the heating control temperature; and a temperature detection member for detecting the return temperature of the heat medium from the heating terminal to a heating return temperature. In the heating system, the temperature determination member increases or decreases a correction value based on the heating return temperature in order for the heating control temperature to be decreased as the heating return temperature is high enough if the heating setting temperature is not changed. [Reference numerals] (AA) Start; (S502) Obtaining heating setting temperature(To); (S504) correction value(灌) = 0°C; (S506) Determining heating control temperature(Ts); (S508) Detecting heating return temperature(Tr); (S510) Ts = upper limit temperature?; (S522) 灌 >= upper limit correction value?; (S524) Obtaining lower switching temperature(T慣); (S528) Increasing 灌
    • (工程)用于在加热端子之间循环热介质的加热系统通过来自热介质的热辐射进行加热提供了一种技术,其能够适当地将热介质的供应温度调节到加热终端,而不会带来不便。 (解决方案)公开了一种加热系统。 加热系统在加热端子之间循环热介质,以通过来自热介质的热辐射进行加热。 加热系统包括:用于根据用户的操作设定加热设定温度的温度设定部件; 温度确定部件,用于基于加热设定温度和补偿值来确定加热控制温度; 温度调节构件,用于将热介质相对于加热端子的供给温度调节到加热控制温度; 以及温度检测部件,用于检测从加热终端到加热返回温度的热介质的返回温度。 在加热系统中,如果加热设定温度没有变化,则加热控制温度由于加热控制温度随着加热返回温度足够高而增加或减少基于加热返回温度的校正值。 (附图标记)(AA)开始; (S502)获取加热设定温度(To); (S504)校正值(灌)= 0℃; (S506)确定加热控制温度(Ts); (S508)检测加热回流温度(Tr); (S510)Ts <=下限温度℃ (S512)灌<=下限校正值 (S514)获取上切换温度(T棺); (S518)减少灌水; (S520)Ts> =上限温度℃; (S522)灌> =上限校正值α; (S524)获得较低的开关温度(T惯用); (S528)增加灌水
    • 9. 发明公开
    • 난방장치
    • 加热装置
    • KR1020130082061A
    • 2013-07-18
    • KR1020120130649
    • 2012-11-19
    • 린나이가부시기가이샤가부시키가이샤 덴소
    • 소부에스토무와타라이다쓰키오시마가쓰야하야시야스히라스즈키아키라
    • F24D15/04F24D7/00F25B1/00F25B30/00
    • PURPOSE: A heating apparatus is provided to suppress the number of times of shutdown of a heat pump or switching over of a heating capacity of a heat pump since the heating capacity of the heat pump is switched over based on the temperature detected by a tank thermistor when a heating terminal implements heating by driving a heat pump. CONSTITUTION: A heating apparatus includes a heat pump, a tank (30), a stored heat circulating channel (90), a heat radiation circulating channel, and a tank thermistor (42a). The heat pump absorbs heat from the air to heat a heat medium, and the tank stores the heat medium. The stored heat circulation channel circulates the heat medium between the heat pump and the tank, and a heating terminal implements heating by making the heat medium to radiate heat. The tank thermistor detects the temperature of the heat medium which is stored in the tank. The heating capacity of the heat pump is capable of being switched over gradually, and is switched over based on the temperature which is detected by the tank thermistor when the heating terminal implements heating by driving a heat pump. [Reference numerals] (AA) Hot water discharged; (BB) Water supplied
    • 目的:提供一种加热装置,用于抑制热泵的停机次数或切换热泵的加热能力,因为根据由热敏电阻检测到的温度来切换热泵的加热能力 当加热终端通过驱动热泵来进行加热时。 构成:加热装置包括热泵,储罐(30),储存的热循环通道(90),散热循环通道和罐式热敏电阻(42a)。 热泵吸收空气中的热量以加热热介质,储罐储存热介质。 存储的热循环通道在热泵和罐之间循环热介质,并且加热端子通过使热介质辐射热来实现加热。 罐式热敏电阻检测存储在罐中的热介质的温度。 热泵的加热能力能够逐渐切换,并且当加热终端通过驱动热泵进行加热时,基于由箱式热敏电阻检测到的温度来切换。 (附图标记)(AA)排出的热水; (BB)供水