WO2019095264A1 - 储热材料复配冷却装置 - Google Patents

储热材料复配冷却装置 Download PDF

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Publication number
WO2019095264A1
WO2019095264A1 PCT/CN2017/111585 CN2017111585W WO2019095264A1 WO 2019095264 A1 WO2019095264 A1 WO 2019095264A1 CN 2017111585 W CN2017111585 W CN 2017111585W WO 2019095264 A1 WO2019095264 A1 WO 2019095264A1
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Prior art keywords
storage material
heat storage
support frame
cooling device
tank
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PCT/CN2017/111585
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English (en)
French (fr)
Inventor
曾智勇
崔小敏
廖小亮
周厚国
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深圳市爱能森科技有限公司
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Priority to PCT/CN2017/111585 priority Critical patent/WO2019095264A1/zh
Publication of WO2019095264A1 publication Critical patent/WO2019095264A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F27/00Mixers with rotary stirring devices in fixed receptacles; Kneaders
    • B01F27/80Mixers with rotary stirring devices in fixed receptacles; Kneaders with stirrers rotating about a substantially vertical axis

Definitions

  • the present disclosure relates to the field of heat storage material cooling technology, for example, to a heat storage material compounding cooling device.
  • the energy storage system can effectively increase the stability of the renewable energy or industrial waste heat output, while the heat storage material has a slower compounding speed and a larger heat release during compounding. Before most of the heat storage materials enter the heat storage system, it is necessary to carry out the complete cooling and filtration process. In the heating project, the amount of heating and heat storage material is particularly large, so how to realize the heat storage material to complete the compound cooling in a short time and filter into the heat storage material is the key in the energy storage application.
  • the heat storage material is mainly artificially compounded, that is, the heat storage material is stirred by human power.
  • This type of compounded heat storage material takes a long time to cool before it can be filtered, and is pumped into the hot pool tank after filtration.
  • the thermal storage material compounding will require a large amount of manpower and material resources, and requires a relatively large site and a long time of cooling, thereby affecting the rapid compounding of the heat storage material, thereby delaying the project construction period.
  • the present disclosure provides a composite heat storage device for a heat storage material, which solves the problem of compounding and slow cooling in the heat storage material cooling technology.
  • a thermal storage material compounding cooling device comprising:
  • the stirring mechanism includes a stirring motor and a stirring shaft, and the stirring shaft is provided with a plurality of stirring blades disposed along an axial interval of the stirring shaft;
  • cooling layer covering the outer wall of the agitating tank, the cooling layer being provided with a water inlet and a water outlet;
  • a control assembly is electrically connected to the agitating motor.
  • the water outlet is disposed at an upper portion of the cooling layer.
  • the water inlet is disposed at an upper portion of the cooling layer.
  • the utility model further includes a support frame, the support frame includes a first support frame, a second support frame and a third support frame, wherein the first support frame and the third support frame are respectively disposed perpendicular to the second support frame And one end of the third support frame is connected to the second support frame, and the length of the second support frame between the first support frame and the third support frame is adjustable;
  • the bottom of the stirring tank is provided with a base, and the stirring tank is disposed on the first supporting frame through the base, and a universal wheel is disposed at a bottom of the first supporting frame.
  • control component includes a controller and a display, the controller being electrically connected to the agitating motor and the display, respectively, the control component being movably disposed on the second support frame.
  • a feeding mechanism is further included, and the feeding mechanism is movably disposed on the third supporting frame to move to the upper side of the stirring tank.
  • the feeding mechanism comprises a weighing scale, a storage bin and a feed valve, the storage bin is located below the gauge, and the feed valve is located at the outlet of the storage bin.
  • the storage bin is a funnel structure.
  • a top of the stirred tank is provided with a feed port corresponding to an outlet of the feed valve.
  • the top of the stirring tank is provided with a liquid inlet mechanism, and the liquid inlet mechanism includes an inlet valve and a liquid inlet which are sequentially disposed along the liquid inlet direction.
  • the stirring tank is provided with a temperature sensor, the temperature sensor and the control component Electrical connection.
  • the agitation tank is provided with a liquid level sensor, and the liquid level sensor is electrically connected to the control component.
  • the bottom of the stirring tank is provided with a discharging mechanism, and the discharging mechanism comprises a discharging port, a discharging valve, a filter and a liquid pump which are sequentially disposed along the discharging direction.
  • a bottom of the stirring tank is further provided with a sewage outlet.
  • the water inlet and the water outlet are disposed at a lower portion of the cooling layer.
  • the composite heat storage material cooling device provided in the embodiment can fully and uniformly mix the heat storage materials in the stirring tank, so that the compounding speed of the heat storage material is greatly improved; and the entire stirring tank can be cooled and cooled. It can fully cool and heat the whole mixing tank; it can conveniently carry out the cooling work of the heat storage material; it can accurately measure the quality of various components entering the feeding mechanism; it can ensure that the entire compound cooling device can be immediately It can be used for easy movement; the temperature and liquid level in the mixing tank can be monitored in real time to indicate the speed of the mixer and the volume of the liquid; the impurities in the mixing tank can be filtered to ensure the high quality of the heat storage material discharged; After the internal heat storage material solution is drained in the stirring tank, the stirring tank is cleaned to facilitate the discharge of the cleaning liquid through the sewage outlet.
  • FIG. 1 is a schematic structural view of a heat storage material compounding cooling device provided by the specific embodiment.
  • the present embodiment provides a heat storage material compounding cooling device, comprising a stirring tank 1 for preparing a heat storage material, further comprising a stirring mechanism, a cooling layer 3 and a control assembly 5, wherein the stirring mechanism
  • the stirring mechanism includes a stirring motor 21 and a stirring shaft 22, and the stirring shaft 22 is located below the stirring motor 21, and is connected to the stirring motor 21, and the stirring shaft 22 is provided with a plurality of intervals from top to bottom.
  • the agitating blade 23; the cooling layer 3 is coated on the outer wall of the agitating tank 1, and the upper portion of the cooling layer 3 is provided with a water inlet 31 and a water outlet 32; and the control unit 5 is electrically connected to the stirring mechanism.
  • the heat storage material in the agitating tank 1 is sufficiently and uniformly mixed by the agitating blades 23 of the agitation mechanism, so that the compounding speed of the heat storage material is greatly increased, and the cooling layer disposed around the outer wall of the agitating tank 1 is utilized. 3.
  • the entire agitating tank 1 is cooled and cooled by the way of circulating water, and the water inlet 31 and the water outlet 32 of the cooling layer 3 are disposed at the upper portion, so that the entire agitating tank 1 can be more fully cooled and exchanged.
  • the nozzle 31 can also be disposed at the lower portion of the cooling layer 3, so that the turbulent flow characteristic of the water inlet 31 preferentially promotes the cooling effect of the lower portion of the agitating tank 1, thereby solving the problem of compounding and slow cooling in the heat storage material cooling technique.
  • the heat storage material compounding cooling device further comprises a support frame, wherein the support frame comprises a first support frame 41, a second support frame 42 and a third support frame 43, the bottom of the agitation tank 1 is provided with a base 12, and the agitation tank 1 passes The base 12 is disposed on the first support frame 41, and the bottom of the first support frame 41 is provided with a universal wheel.
  • Support frame It is preferably an integral molding mechanism, which is supported by carbon steel and has good rigidity and strength.
  • the stirring tank 1 is supported by stainless steel and can be used for making 1 ton of heat storage material.
  • a base 12 is arranged at the bottom of the stirring tank 1, and the base 12 can be welded to the first supporting frame 41, or The first support frame 41 is screwed, and the base 12 is made of carbon steel.
  • the shape of the base 12 is adapted to the shape of the bottom of the agitating tank 1, so that the agitating tank 1 can be better supported.
  • a plurality of support bars extend from the bottom of the first support frame 41. The end of the support bar is provided with a universal wheel, and the cooling device can be freely moved by the entire heat storage material of the universal wheel, which is more convenient for engineering applications.
  • control component 5 includes a controller and a display.
  • the controller is electrically connected to the stirring mechanism and the display respectively.
  • the second support frame 42 is provided with a plurality of fixed card slots, and the control component 5 is provided with a plurality of card slots.
  • the snaps are adapted so that the control assembly 5 is movably disposed on the second support frame 42.
  • the controller can send the operating condition parameters of the stirring tank 1 to the display, such as the temperature inside the heat storage material tank, the liquid level, the liquid inlet flow rate of the liquid inlet mechanism, and the quality of various components of the feeding mechanism.
  • a third support frame 43 extends from the top of the second support frame 42.
  • the third support frame 43 and the second support frame 42 may be screwed together, so the third support frame 43 may be according to actual needs. Adjusting its height on the second support frame 42; and the feeding mechanism can adjust its horizontal position on the third support frame 43 to facilitate the alignment of the feed port 11 of the agitating tank 1, so that the feeding mechanism can It is movably disposed on the third support frame 43 and located at the upper portion of the agitation tank 1.
  • the design makes the whole heat storage material compounding cooling device form the integration of feeding, compounding, cooling and discharging, ensuring the stability of the heating special heat storage material compounding, thereby realizing the rapid and safe feeding to the hot pool tank.
  • the special heat storage material for heating is provided to provide safe, continuous and stable operation of the system.
  • the feeding mechanism includes a weighing gauge 61, a storage bin 62 and a feed valve 63.
  • the metering scale 61 is located at the top of the feeding mechanism, and the storage bin 62 is located at the lower portion of the weighing scale 61 and is fixed to the third supporting frame.
  • the storage bin 62 can be an upper width and a lower narrow structure, i.e., a funnel structure, and the feed valve 63 is located at the outlet of the storage bin 62.
  • the heat storage material is made up of a mixture of multiple components. When the heat storage material is compounded, the required mass of the plurality of components is manually calculated.
  • the feeding mechanism may be manual feeding or automatic feeding, preferably automatic feeding, that is, the feeding mechanism is electrically connected with the control component, wherein the storage bin 62 is provided with a liquid level sensor and a preset liquid level. The height can monitor the liquid level of the current material in real time.
  • the control component 5 controls the feed valve 63 of the feeding mechanism to open to feed; when the actual material level is not low At the preset level height, the control assembly 5 controls the feed valve 63 of the feed mechanism to close.
  • a feed port 11 is provided at the top of the agitation tank 1, and the feed port 11 corresponds to the outlet of the feed valve 63, which makes it more convenient and accurate to allow the multi-component substances of the heat storage material to enter the agitation tank 1.
  • the storage bin 62 is arranged in a wide and narrow structure, which is more convenient for the falling and collecting of various components of the solution.
  • the controller is electrically connected to the metering 61 and the feed valve 63, and can control the working condition of the material in real time.
  • the top of the agitation tank 1 is provided with a liquid inlet mechanism including an inlet valve 72 and a liquid inlet 71 which are sequentially disposed in the liquid inlet direction, and the inlet port 71 is connected to the agitation tank 1.
  • the agitation tank 1 is provided with a temperature sensor 13 and a level sensor 14, and both the temperature sensor 13 and the level sensor 14 are electrically connected to the control unit 5.
  • the temperature sensor 13 monitors the temperature in the stirring tank 1 in real time to avoid adverse effects caused by excessive temperature when the heat storage material is compounded; at the same time, the liquid level sensor 14 is used to monitor the volume of the liquid entering the stirring tank 1 in real time to ensure storage.
  • the hot material solution is always in the range of the optimum ratio of solute to solvent.
  • the bottom of the agitating tank 1 is provided with a discharging mechanism, and the discharging mechanism includes a discharging mechanism including a discharging port 81, a discharging valve 82, a filter 83 and a liquid pump 84 which are sequentially disposed along the discharging direction, and the discharging device Mouth 81 Connected to the stirred tank 1.
  • a drain outlet 15 is also provided at the bottom of the agitating tank 1. After the solution of the heat storage material is successfully compounded and cooled completely, the solution of the heat storage material is discharged to the agitation tank 1 through the discharge port 81, and the discharge valve 82 is electrically connected to the control unit 5 for controlling the flow rate of the discharge.
  • a filter 83 is provided, which can filter out the impurities to ensure heat storage.
  • the quality of the material solution wherein the filter 83 can be filtered using a mesh screen of 3 mm or less.
  • the liquid pump 84 provides power to the entire process of storing the heat storage material solution.
  • the heat storage material compounding cooling device provided by the present disclosure can fully and uniformly mix the heat storage materials in the stirring tank, so that the compounding speed of the heat storage material is greatly improved.
  • the whole compounding device forms the integration of feeding, compounding and cooling discharge filtering to ensure the stability of the thermal storage material compounding, so as to realize the rapid and safe transportation of the heat storage material to the energy storage system, which is safe and continuous for the system. And stable operation provides protection.

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Accessories For Mixers (AREA)

Abstract

一种储热材料复配冷却装置,包括用于制备储热材料的搅拌罐(1),还包括搅拌机构、冷却层(3)和控制组件(5),搅拌机构包括搅拌电机(21)和搅拌轴(22),搅拌轴(22)上设置有多个沿所述搅拌轴(22)的轴向间隔设置的搅拌叶片(23);冷却层(3)包覆于搅拌罐(1)的外壁,冷却层(3)设置有入水口(31)和出水口(32);以及控制组件(5)与搅拌电机(21)电连接。

Description

储热材料复配冷却装置 技术领域
本公开涉及储热材料冷却技术领域,例如涉及一种储热材料复配冷却装置。
背景技术
储能系统可以有效增加可再生能源或工业余热输出的稳定性,而储热材料的复配速度较慢,且复配时放热量大。在多数储热材料进入储热系统前,需要先进行复配完全后的冷却以及过滤工艺。在供暖项目中,供暖储热材料用量特别大,所以如何实现储热材料在较短时间内完成复配冷却以及过滤成为储热材料在储能应用中的关键。
储热材料主要采用人工复配的方式,即用人力对储热材料进行搅拌。这种复配方式储热材料需要较长时间冷却后才能过滤,以及过滤完之后泵入热池罐中。然而在具体实施过程中,储热材料复配会需要大量的人力物力,而且需要比较大的场地和较长时间的冷却,从而影响了储热材料的快速复配,以致耽误项目工期。
发明内容
本公开提供了一种储热材料复配冷却装置,解决了储热材料冷却技术中的复配以及冷却速度慢的问题。
一种储热材料复配冷却装置,包括:
用于制备储热材料的搅拌罐;
搅拌机构,所述搅拌机构包括搅拌电机和搅拌轴,所述搅拌轴上设置有多个沿所述搅拌轴的轴向间隔设置的搅拌叶片;
冷却层,包覆于所述搅拌罐的外壁,所述冷却层设置有入水口和出水口;以及
控制组件,与所述搅拌电机电连接。
可选的,所述出水口设置在所述冷却层上部。
可选的,所述入水口设置在所述冷却层上部。
可选的,还包括支撑架,所述支撑架包括第一支撑架、第二支撑架和第三支撑架,所述第一支撑架和第三支撑架分别与所述第二支撑架垂直设置,并且第三支撑架的一端与所述第二支撑架连接,所述第二支撑架位于第一支撑架和第三支撑架之间的长度可调;
所述搅拌罐底部设置有底座,所述搅拌罐通过所述底座设置于所述第一支撑架上,所述第一支撑架的底部设置有万向轮。
可选的,所述控制组件包括控制器和显示器,所述控制器分别与搅拌电机和所述显示器电连接,所述控制组件可移动地设置于所述第二支撑架上。
可选的,还包括入料机构,所述入料机构可移动地设置于所述第三支撑架上,以移动至所述搅拌罐的上方。
可选的,所述入料机构包括计量称、储料仓和进料阀,所述储料仓位于计量称的下方,所述进料阀位于所述储料仓的出口。
可选的,所述储料仓为漏斗结构。
可选的,所述搅拌罐的顶部设置有进料口,所述进料口与所述进料阀的出口相对应。
可选的,所述搅拌罐的顶部设置有进液机构,所述进液机构包括沿进液方向依次设置的进液阀和进液口。
可选的,所述搅拌罐设置有温度传感器,所述温度传感器与所述控制组件 电连接。
可选的,所述搅拌罐设置有液位传感器,所述液位传感器均与所述控制组件电连接。
可选的,所述搅拌罐的底部设置有出料机构,所述出料机构包括沿出料方向依次设置的出料口、出料阀、过滤器和液体泵。
可选的,所述搅拌罐的底部还设置有排污口。
可选的,所述入水口和出水口设置在所述冷却层下部。
本实施例提供的一种储热材料复配冷却装置,能够对搅拌罐中的储热材料进行充分且均匀的混合,使得储热材料的复配速度大大提高;能够对整个搅拌罐进行冷却降温;可以充分地对整个搅拌罐进行冷却换热;可以方便的进行储热材料复配冷却工作;可以精准测量进入入料机构的多种组分的质量;可以保证整个复配冷却装置做到随即随用,便于移动;可以实时监测搅拌罐内的温度和液位,用于指示搅拌机的速度和进液的体积;可以过滤搅拌罐的杂质,保证出料的储热材料为高品质;保证了在搅拌罐排净其内部的储热材料溶液后,并清洗搅拌罐,利于将清洗液通过排污口排出。
附图概述
图1是本具体实施方式提供的储热材料复配冷却装置的结构示意图。
图中:
1、搅拌罐;11、进料口;12、底座;13、温度传感器;14、液位传感器;15、排污口;
21、搅拌电机;22、搅拌轴;23、搅拌叶片;
3、冷却层;31、入水口;32、出水口;
41、第一支撑架;42、第二支撑架;43、第三支撑架;
5、控制组件;
61、计量称;62、储料仓;63、进料阀;
71、进液口;72、进液阀;
81、出料口;82、出料阀;83、过滤器;84、液体泵。
具体实施方式
如图1所示,本实施方式提供了一种储热材料复配冷却装置,包括用于制备储热材料的搅拌罐1,还包括搅拌机构、冷却层3和控制组件5,其中,搅拌机构设置于搅拌罐1的中心,搅拌机构包括搅拌电机21和搅拌轴22,搅拌轴22位于搅拌电机21下方,且与搅拌电机21连接,搅拌轴22上设置有多个从上至下间隔设置的搅拌叶片23;冷却层3包覆于搅拌罐1的外壁,冷却层3上部设置有入水口31和出水口32;控制组件5与搅拌机构电连接。本实施例通过利用搅拌机构的搅拌叶片23对搅拌罐1中的储热材料进行充分且均匀的混合,使得储热材料的复配速度大大提高,并利用设置在搅拌罐1外壁周围的冷却层3,通入循环水的方式,对整个搅拌罐1进行冷却降温,将冷却层3的入水口31和出水口32设置在上部,可以更充分地对整个搅拌罐1进行冷却换热,其中入水口31也可以设置在冷却层3的下部,这样利用入水口31的水流湍流特性优先促进搅拌罐1下部的冷却效果,从而解决了储热材料冷却技术中的复配以及冷却速度慢的问题。
可选地,储热材料复配冷却装置还包括支撑架,支撑架包括第一支撑架41、第二支撑架42和第三支撑架43,搅拌罐1底部设置有底座12,搅拌罐1通过底座12设置于第一支撑架41上,第一支撑架41的底部设置有万向轮。支撑架 优选为一体成型机构,采用碳钢支撑,具有良好的刚度与强度。搅拌罐1采用不锈钢支撑,可用于制作1吨的储热材料,为保证搅拌罐1的平稳性,在搅拌罐1的底部设置底座12,底座12可以焊接于第一支撑架41上,也可以与第一支撑架41螺纹连接,而且底座12采用碳钢制成,底座12的形状与搅拌罐1的底部的形状相适配,能够更好地支撑搅拌罐1。在第一支撑架41的底部延伸出多条支撑条,支撑条的端部设置有万向轮,通过万向轮整个储热材料复配冷却装置可以自由移动,更加方便工程的应用。
可选地,控制组件5包括控制器和显示器,控制器分别与搅拌机构和显示器电连接,第二支撑架42上设置有多个固定的卡槽,控制组件5上设置有多个与卡槽相适配的卡扣,因此控制组件5可移动地设置于第二支撑架42上。控制器可以将搅拌罐1的工况参数发送给显示器,如储热材料罐内部的温度、液位,进液机构的进液流量,入料机构的多种组分质量等。可选地,在第二支撑架42的顶部延伸出第三支撑架43,可选地,第三支撑架43与第二支撑架42可以为螺纹连接,因此第三支撑架43可以根据实际需要,调整其在第二支撑架42上的高度;而且入料机构可以调整其在第三支撑架43上的水平的位置,以方便找准搅拌罐1的进料口11,因此入料机构可移动地设置在第三支撑架43上,且位于搅拌罐1的上部。如此设计,使得整个储热材料复配冷却装置形成加料、复配、冷却和出料的一体化,保证了供暖专用储热材料复配的稳定性,从而实现能够快速、安全地向热池罐输送供暖专用储热材料,为系统的安全、连续、稳定运行提供保障。
可选地,入料机构包括计量称61、储料仓62和进料阀63,计量称61位于入料机构的顶部,储料仓62位于计量称61的下部,且固定于第三支撑架43上,储料仓62可以为上宽下窄结构,即漏斗结构,进料阀63位于储料仓62的出口。 储热材料是由多元组分混合而成,在对储热材料进行复配时,人工计算好多种组分所需的质量,入料时,多种组分通过计量称61进行称量,再经过储料仓62进行储存,当需要下料时,打开储料仓62出口位置的进料阀63进行进料。可选地,入料机构可以是人工进料也可以是自动进料,优选为自动进料,即入料机构与控制组件电连接,其中储料仓62设置有液位传感器和预设液位高度,可以实时监测当前物料的液位,当实际物料液位低于预设液位高度时,控制组件5控制入料机构的进料阀63打开,进行进料;当实际物料液位不低于预设液位高度时,控制组件5控制入料机构的进料阀63关闭。为了进料方便,在搅拌罐1的顶部设置进料口11,进料口11与进料阀63的出口相对应,更加方便准确地使得储热材料多种组分物质进入到搅拌罐1中。储料仓62设置成上宽下窄的结构,更加方便溶液多种组分物质的下落与收集。控制器与计量称61和进料阀63电连接,可以实时控制入料的工况。
可选地,搅拌罐1的顶部设置有进液机构,进液机构包括沿进液方向依次设置的进液阀72和进液口71,进液口71与搅拌罐1连接。搅拌罐1设置有温度传感器13和液位传感器14,温度传感器13和液位传感器14均与控制组件5电连接。储热材料进行复配时,需要水或者其他液体进行溶解,这部分液体通过进液机构进入搅拌罐1中,进液阀72与控制组件5电连接,可以实时控制所进入搅拌罐1中的液体的体积。为了安全起见,温度传感器13实时监测搅拌罐1内的温度,避免因储热材料复配时温度过高产生不利影响;同时利用液位传感器14实时监测液体进入搅拌罐1的体积,以保证储热材料溶液始终处于最优的溶质与溶剂的比例的范围内。
可选地,搅拌罐1的底部设置有出料机构,出料机构包括出料机构包括沿出料方向依次设置的出料口81、出料阀82、过滤器83和液体泵84,出料口81 与搅拌罐1连接。搅拌罐1的底部还设置有排污口15。当储热材料溶液复配成功,并冷却完全后,储热材料溶液经出料口81排出搅拌罐1,出料阀82与控制组件5电连接,用于控制出料的流量。由于储热材料复配过程中,会随溶质进入一些杂质,影响储热材料的品质,在储热材料经过出料阀82后,设置有过滤器83,可以过滤掉这些杂质,以保证储热材料溶液的品质,其中,过滤器83可以采用3mm以下网口筛进行过滤。液体泵84则为整个出口储热材料溶液的过程提供动力。当储热材料溶液排出搅拌罐1时,搅拌罐1的底部会残留一些储热材料溶液,为方便储存,避免储热材料腐蚀搅拌罐1的内壁,向进液机构通入清水,并打开搅拌罐1底部设置的排污口,对搅拌罐1的内部进行清洗。
工业实用性
本公开提供的一种储热材料复配冷却装置,能够对搅拌罐中的储热材料进行充分且均匀的混合,使得储热材料的复配速度大大提高。整个复配装置形成加料、复配、冷却出料过滤一体化,保证了储热材料复配的稳定性,从而实现能够快速、安全地向储能系统输送储热材料,为系统的安全、连续、稳定运行提供保障。

Claims (15)

  1. 一种储热材料复配冷却装置,包括:
    用于制备储热材料的搅拌罐(1);
    搅拌机构,所述搅拌机构包括搅拌电机(21)和搅拌轴(22),所述搅拌轴(22)上设置有多个沿所述搅拌轴(22)的轴向间隔设置的搅拌叶片(23);
    冷却层(3),包覆于所述搅拌罐(1)的外壁,所述冷却层(3)设置有入水口(31)和出水口(32);以及
    控制组件(5),与所述搅拌电机(21)电连接。
  2. 根据权利要求1所述的储热材料复配冷却装置,其中,所述出水口(32)设置在所述冷却层(3)上部。
  3. 根据权利要求2所述的储热材料复配冷却装置,其中,所述入水口(31)设置在所述冷却层(3)上部。
  4. 根据权利要求1-3任一项所述的储热材料复配冷却装置,还包括支撑架,所述支撑架包括第一支撑架(41)、第二支撑架(42)和第三支撑架(43),所述第一支撑架(41)和第三支撑架(43)分别与所述第二支撑架(42)垂直设置,并且第三支撑架(43)的一端与所述第二支撑架(42)连接,所述第二支撑架(42)位于第一支撑架(41)和第三支撑架(43)之间的长度可调;
    所述搅拌罐(1)底部设置有底座(12),所述搅拌罐(1)通过所述底座(12)设置于所述第一支撑架(41)上,所述第一支撑架(41)的底部设置有万向轮。
  5. 根据权利要求4所述的储热材料复配冷却装置,其中,所述控制组件(5)包括控制器和显示器,所述控制器分别与搅拌电机(21)和所述显示器电连接,所述控制组件(5)可移动地设置于所述第二支撑架(42)上。
  6. 根据权利要求4所述的储热材料复配冷却装置,还包括入料机构,所述入料机构可移动地设置于所述第三支撑架(43)上,以移动至所述搅拌罐(1) 的上万。
  7. 根据权利要求6所述的储热材料复配冷却装置,其中,所述入料机构包括计量称(61)、储料仓(62)和进料阀(63),所述储料仓(62)位于计量称(61)的下方,所述进料阀(63)位于所述储料仓(62)的出口。
  8. 根据权利要求6所述的储热材料复配冷却装置,其中,所述储料仓(62)为漏斗结构。
  9. 根据权利要求8所述的储热材料复配冷却装置,其中,所述搅拌罐(1)的顶部设置有进料口(11),所述进料口(11)与所述进料阀(63)的出口相对应。
  10. 根据权利要求4-9中任一项所述的储热材料复配冷却装置,其中,所述搅拌罐(1)的顶部设置有进液机构,所述进液机构包括沿进液方向依次设置的进液阀(72)和进液口(71)。
  11. 根据权利要求4-9中任一项所述的储热材料复配冷却装置,其中,所述搅拌罐(1)设置有温度传感器(13),所述温度传感器(13)与所述控制组件(5)电连接。
  12. 根据权利要求4-11中任一项所述的储热材料复配冷却装置,其中,所述搅拌罐(1)设置有液位传感器(14),所述液位传感器(14)均与所述控制组件(5)电连接。
  13. 根据权利要求4-11中任一项所述的储热材料复配冷却装置,其中,所述搅拌罐(1)的底部设置有出料机构,所述出料机构包括沿出料方向依次设置的出料口(81)、出料阀(82)、过滤器(83)和液体泵(84)。
  14. 根据权利要求13所述的储热材料复配冷却装置,其中,所述搅拌罐(1)的底部还设置有排污口(15)。
  15. 根据权利要求2所述的储热材料复配冷却装置,其中,所述入水口(31)和出水口(32)设置在所述冷却层(3)下部。
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