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    • 1. 发明公开
    • HEAT STORAGE SYSTEM
    • WÄRMESPEICHERSYSTEM
    • EP3043122A4
    • 2017-06-07
    • EP13892786
    • 2013-09-06
    • MITSUBISHI ELECTRIC CORP
    • AKAGI SATOSHIUNEZAKI FUMITAKE
    • F24H1/18F24D17/02F24D19/10F24H1/00F28D20/00G05D23/19
    • F24D19/1054F24D17/02F24D19/1051F24D2220/042F24D2240/26F24H1/0081F28D20/0039G05D23/1923Y02E60/142
    • The present invention has an object to provide a heat storage system capable of saving energy while reliably avoiding both depletion of a heat storage amount for application using high temperature heat and depletion of a heat storage amount for application using middle temperature heat. The heat storage system of the present invention includes: a first heat utilization path configured to use heat stored in a first region on an upper side in a tank; a second heat utilization path configured to mainly use heat stored in a second region below the first region in the tank; and control means for performing, when it is predicted that a heat storage amount for a demand of the first heat utilization path is insufficient while a heat storage amount for a demand of the second heat utilization path is sufficient, a first region heating operation for feeding a liquid to heating means using a middle feed path for feeding the liquid through a pipe connected to a middle height portion of the tank to the heating means, and returning the liquid heated by the heating means through a pipe connected to an upper portion of the tank into the tank.
    • 本发明的目的在于提供一种蓄热系统,该蓄热系统能够在使用高温热量可靠地避免用于应用的蓄热量的耗尽和用于使用中温热量的蓄热量的耗尽的同时节约能量。 本发明的蓄热系统包括:第一热利用通路,其构造成利用储存在箱体上侧的第一区域中的热量; 第二热利用路径,其被配置为主要利用储存在所述箱中的所述第一区域下方的第二区域中的热量; 以及控制装置,用于当预测用于第一热利用路径的需求的储热量不足而第二热利用路径的需求的储热量充足时执行用于供给的第一区域供暖操作 液体加热装置,其使用中间供给路径将液体通过连接到罐的中间高度部分的管供给到加热装置,并且使由加热装置加热的液体通过连接到加热装置的上部的管返回 坦克进坦克。
    • 2. 发明公开
    • WATER TREATMENT DEVICE AND HOT-WATER SUPPLY DEVICE
    • 黑龙江省人民政府新疆维吾尔族自治区
    • EP3056473A1
    • 2016-08-17
    • EP13895133.0
    • 2013-10-11
    • Mitsubishi Electric Corporation
    • ORITO, MariTAKEUCHI, Shiro
    • C02F5/02A47K3/00C02F5/00F24H1/00
    • C02F1/5236C02F1/36C02F1/4602C02F1/66C02F2001/5218C02F2103/42C02F2303/22C02F2307/12F24D17/00F24D19/0092F24H1/0081F28D20/0034F28F19/01F28G9/00Y02E60/142
    • A water treatment device that efficiently removes scale components in water at a part that is different from a facility to be protected from scale and enables stable restraint of adherence of scale to the facility is provided. A water treatment device 10 installed in the hot-water supply device 1 includes, e.g., a water intake piping 11, a water intake pump 12, a gas supply section 13, a scale reaction section 15, a scale isolation section 16, a channel changeover valve 17 and a water discharge piping 18. In descaling treatment, while water is circulated from the hot-water storage tank 2 to the water intake piping 11, a gas containing carbon dioxide is supplied from the gas supply section 13 to the water. Consequently, scale components in the water react with the carbon dioxide in the water in, e.g., the scale reaction section 15 and scale is thereby deposited, and the scale is removed by the scale isolation section 16. Consequently, scale adherence and accumulation in a part that is necessary for maintenance of a function of the hot-water supply device 1, that is, a part to be protected from scale can be restrained.
    • 提供了一种水处理装置,其能够有效地除去与不受规模保护的设备不同的部分的水中的水垢成分,并且能够稳定地限制氧化皮附着到设备。 安装在热水供给装置1中的水处理装置10例如包括吸水管11,进水泵12,气体供给部13,标尺反应部15,标尺隔离部16,通道 切换阀17和排水管路18.在除垢处理中,当水从热水储存箱2循环到进水管道11时,含有二氧化碳的气体从气体供给部13供给水。 因此,水中的水垢成分与例如水垢反应区15中的水中的二氧化碳反应,由此沉积氧化皮,并通过氧化垢隔离区16去除氧化皮。结果, 可以抑制为了维护热水供给装置1的功能所必需的部分,即,不受规模的保护的部分。
    • 3. 发明公开
    • BATHTUB HEATER
    • 浴缸加热器
    • EP2307815A2
    • 2011-04-13
    • EP09757746.4
    • 2009-05-28
    • Vassilev, Plamen Spassov
    • Vassilev, Plamen Spassov
    • F24H1/00
    • G01F22/00F24H1/0081F24H9/2021G01F23/22H05B3/36H05B2203/003H05B2203/013H05B2203/014H05B2203/017H05B2203/032
    • A system for heating a bathtub (10) comprising a heating element (1)1 applied to at least one wall of the bathtub (10). The heating element (11) can be applied on the exterior wall or within the wall of the bathtub (10). The system is further calibrated for measuring the rate of change in temperature of the bathtub and correlating this rate of change to the amount or depth of water in the bathtub. The rate of change can be the rate in rise of temperature or the rate of cooling of the bathtub. A database or look-up table is established showing the different rates of change in temperature to the amount or depth of water in the bathtub. Techniques such as 'fuzzy logic' can be used to continually update the database and to correlate the rate in change of temperature of the bathtub to the amount or depth of water in the bathtub.
    • 一种用于加热浴缸(10)的系统,该系统包括施加到浴缸(10)的至少一个壁上的加热元件(1)1。 加热元件(11)可以应用在浴缸(10)的外壁上或壁内。 该系统进一步校准以测量浴缸温度的变化率,并将该变化率与浴缸中的水量或深度相关联。 变化率可以是温度上升率或浴缸冷却速率。 建立数据库或查询表,显示温度变化率与浴缸中水量或深度的不同变化率。 诸如“模糊逻辑”之类的技术可用于不断更新数据库并将浴缸温度变化率与浴缸中水量或深度相关联。
    • 7. 发明公开
    • SANITATION COMPARTMENT FOR RECOVERING THE HEAT FROM HOT WASTEWATER DURING BATHING
    • SANITÄRKAMMERZURRÜCKGEWINNUNGDERWÄRMEAUS HEISSEM ABWASSER BEIM BADEN
    • EP2775243A1
    • 2014-09-10
    • EP12822835.0
    • 2012-08-10
    • Brucoli, Fernando Augusto Purchio
    • Brucoli, Fernando Augusto Purchio
    • F28D1/02F28D1/00F24D17/02F24D17/00
    • F24D17/0052E03C2001/005F24D17/0005F24D17/02F24D2200/12F24D2200/123F24D2200/20F24H1/0081F25B25/005F25B30/02F25B2339/047F28D21/0012Y02B10/70Y02B30/52Y02B30/566Y10T137/6579
    • The present invention relates to a sanitation compartment capable of preheating the clean, cold water from the mains, for use in the bath, using, for this purpose, the residual heat present in wastewater. The water used in the bath (SQ) is collected from the cabinet (1), passing via the drain (3) and is conveyed to the collector vessel (2). After heat has been transferred to the heat exchangers (8 and 11 A), the water continues on to the discharge pipe (7), via the siphon (6). The clean, cold (LF) water from the mains (9) circulates through the interior of the heat exchanger (8), where it is preheated on receiving heat from the wastewater (SQ) present within the collector vessel (2). Next, said preheated water (LQ) follows on through the exit pipe (10) to a heater or mixer of the installation, in order to be used in the bath. A heat pump (11), constituted by the cooler (11A), by the compressor (11B), by the heater (11C) and by the expander (11D), assists in the recovery of the remaining heat still present in the wastewater after passage thereof through the heat exchanger (8), transferring said heat to the water passing through the exit pipe (10) via the heater (11C).
    • 本发明涉及一种卫生隔间,其能够预热来自主干的清洁的冷水,以便在浴中使用,为此,使用废水中存在的残留热量。 浴中使用的水(SQ)从柜体(1)收集,通过排水管(3)并被输送到收集容器(2)。 在热量传递到热交换器(8和11A)之后,水通过虹吸管(6)继续流到排放管(7)。 来自主干(9)的干净,冷(LF)的水循环通过热交换器(8)的内部,在热交换器(8)的内部接收来自收集器容器(2)内存在的废水(SQ)的热量。 接下来,所述预热水(LQ)随后通过出口管(10)进入设备的加热器或混合器,以便在浴中使用。 由冷却器(11A),由压缩机(11B),加热器(11C)和膨胀器(11D)组成的热泵(11)有助于回收仍然存在于废水中的剩余热量 通过热交换器(8),通过加热器(11C)将热量转移到通过出口管(10)的水中。
    • 9. 发明公开
    • HOT WATER SUPPLY SYSTEM
    • 热水供应系统
    • EP2515050A1
    • 2012-10-24
    • EP10837622.9
    • 2010-12-15
    • Hitachi Appliances, Inc.
    • FUSHIKI TakayukiFUJITA Hidekatsu
    • F24H1/18
    • F24H1/0081F24D17/0078F24D17/02F24D19/1051F24D2200/12F24D2220/08F24D2240/26F24H4/04Y02B30/12Y10T137/6579Y10T137/85954
    • Disclosed is a hot water supply system provided with a tank which holds a high-temperature liquid, and a heating means for generating the high-temperature liquid which is stored in the aforementioned tank. In the lower portion of the aforementioned tank is provided a water-heating heat exchanger which heats the water to be supplied to a hot water terminal by means of the liquid present in the lower portion of the aforementioned tank. Further, a hot water supply circuit is provided which conducts water to the aforementioned hot water supply terminal. The aforementioned hot water supply circuit splits into a water-heating path passing through the aforementioned water-heating heat exchanger, and a bypass path bypassing the aforementioned water-heating heat exchanger, and is provided with a hot water supply circuit control mechanism which controls the circulation state of the water in the aforementioned water-heating path and the aforementioned bypass path.
    • 本发明公开了一种热水供应系统,其设有容纳高温液体的容器和用于产生储存在上述容器中的高温液体的加热装置。 在上述水箱的下部设置有水加热热交换器,该水加热热交换器利用存在于上述水箱下部的液体来加热待供给到热水终端的水。 此外,设置有向上述热水供应终端输送水的热水供应回路。 上述热水供给回路分为通过上述水加热热交换器的水加热路径和旁路上述水加热热交换器的旁路路径,并且设置有热水供给回路控制机构,该热水供给回路控制机构控制 上述水加热路径和上述旁路路径中的水的循环状态。