WO2021128368A1 - 一种节能环保采暖热水锅炉 - Google Patents

一种节能环保采暖热水锅炉 Download PDF

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WO2021128368A1
WO2021128368A1 PCT/CN2019/129558 CN2019129558W WO2021128368A1 WO 2021128368 A1 WO2021128368 A1 WO 2021128368A1 CN 2019129558 W CN2019129558 W CN 2019129558W WO 2021128368 A1 WO2021128368 A1 WO 2021128368A1
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saving
energy
hot water
plate
tube
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PCT/CN2019/129558
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English (en)
French (fr)
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田丽华
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田丽华
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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
    • F24H1/22Water heaters other than continuous-flow or water-storage heaters, e.g. water heaters for central heating
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23JREMOVAL OR TREATMENT OF COMBUSTION PRODUCTS OR COMBUSTION RESIDUES; FLUES 
    • F23J15/00Arrangements of devices for treating smoke or fumes
    • F23J15/02Arrangements of devices for treating smoke or fumes of purifiers, e.g. for removing noxious material
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23JREMOVAL OR TREATMENT OF COMBUSTION PRODUCTS OR COMBUSTION RESIDUES; FLUES 
    • F23J15/00Arrangements of devices for treating smoke or fumes
    • F23J15/06Arrangements of devices for treating smoke or fumes of coolers
    • 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
    • F24H9/00Details
    • F24H9/0005Details for water heaters
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B30/00Energy efficient heating, ventilation or air conditioning [HVAC]
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E20/00Combustion technologies with mitigation potential
    • Y02E20/30Technologies for a more efficient combustion or heat usage

Definitions

  • the invention relates to the field of environmental protection boilers, in particular to an energy-saving environmental protection heating hot water boiler.
  • the Chinese patent (Announcement No. CN206593293U) discloses an energy-saving and environmentally friendly heating hot water boiler. Although it can treat the products of combustion, it has not improved at all. The combustion time and combustion products have not changed. In terms of heat utilization rate, There are defects in structural design, energy saving and environmental protection.
  • the purpose of the present invention is to provide an energy-saving and environment-friendly heating hot water boiler to solve the problems raised in the background art.
  • An energy-saving and environmentally friendly heating hot water boiler comprising a vertically arranged support installation cylinder, the upper end of the support installation cylinder is provided with a rotating cover plate, the left end of the rotating cover plate is installed on the support installation cylinder through a drive shaft, and the lower end of the support installation cylinder is horizontal
  • a convex heat conduction plate is provided, and a support arc panel is horizontally provided directly below the convex heat conduction plate.
  • a number of support installation posts are provided at the lower end of the support arc panel at equal angles, and the support arc panel and the edge of the convex heat conduction plate are provided at equal angles.
  • all supporting deflectors are of V-shaped structure
  • the upper middle area of the convex heat conduction plate is provided with a number of heat conduction blocks
  • the convex heat conduction plate outside the heat conduction block is provided with a number of bent flow guide tubes at equal angles to support
  • the outer side of the lower half of the installation cylinder is provided with a ring-shaped guide tube.
  • the upper end of the bent guide tube extends out of the ring-shaped guide tube, and the lower end of the bent guide tube extends out of the convex heat conducting plate, and the bent guide tube
  • the outer side of the flow pipe is provided with a number of radiating fins at equal angles
  • the right end of the ring-shaped flow guide tube is vertically provided with an exhaust pipe
  • the lower right corner of the support installation tube is horizontally provided with a drainage tube
  • the drainage tube extends out of the support installation tube.
  • a manual valve is provided on the drainage pipe of the supporting installation cylinder.
  • a thermal insulation sponge is horizontally arranged on the lower side of the rotating cover plate.
  • an air inlet pipe is arranged vertically through the middle of the lower end of the supporting arc panel, a connecting flange is arranged at the lower end of the air inlet pipe, and a sealing ring is arranged on the inner side of the connecting flange.
  • the inside of the intake pipe is provided with a solenoid valve
  • the upper end of the intake pipe is horizontally provided with a flow-sharing plate
  • the edges of the flow-sharing plate are equiangularly provided with several split combustion tubes.
  • the upper end of the split combustion tube is provided with a number of combustion holes at equal intervals, and one side of the flow-sharing plate is equipped with an igniter to match the combustion holes.
  • the upper half of the exhaust pipe is provided with a purification cylinder
  • the purification cylinder is fixed to the upper right end of the support installation cylinder by a mounting frame
  • the purification cylinder is provided with an adsorption layer inside
  • the upper end of the exhaust pipe is provided There are fixed flanges.
  • a liquid storage tank is vertically arranged on the left side of the support installation cylinder, and a heat preservation layer is arranged on the inner side of the liquid storage tank.
  • a heat exchange tube is arranged at the inner middle of the support installation cylinder, the heat exchange tube is S-shaped, and the left end of the heat exchange tube is connected with the lower right corner of the liquid storage tank.
  • a liquid pump is provided in the lower right corner of the liquid storage tank to match the heat exchange tube, and a temperature control valve is provided at the left end of the heat exchange tube.
  • a plurality of heat conducting fins are uniformly arranged on the outer side of the heat exchange tube.
  • the present invention has the beneficial effects that the heating efficiency of the device is significantly improved by the convex heat conduction structure and the multi-tube heat exchange structure, the heat loss is reduced, and the exhaust gas is discharged after adsorption, which is more environmentally friendly. High-temperature liquid storage and reflow when heating is again made, resulting in low heat loss of the device, quick response to secondary heating, saving energy consumption and heating time, and further improving the energy saving and environmental protection effect of the device.
  • Figure 1 is a schematic structural diagram of an energy-saving and environmentally friendly heating hot water boiler.
  • Fig. 2 is an enlarged schematic diagram of the position a in Fig. 1.
  • Fig. 3 is a three-dimensional schematic diagram of an equalizing plate in an energy-saving and environmentally-friendly heating hot water boiler.
  • an energy-saving and environmentally friendly heating hot water boiler includes a support mounting tube 18 that is vertically arranged.
  • the upper end of the support mounting tube 18 is provided with a rotating cover plate 16 that rotates the cover plate 16.
  • the left end is mounted on the support mounting cylinder 18 through the drive shaft 17.
  • the lower end of the support mounting cylinder 18 is horizontally provided with a convex heat conduction plate 24, and a support arc panel 2 is horizontally provided directly below the convex heat conduction plate 24.
  • the lower part of the rotating cover 16 Insulation sponge 15 is horizontally arranged on the side, a number of support mounting posts 1 are arranged at the lower end of the support arc panel 2 at equal angles, and a number of support deflectors 3 are arranged at equal angles between the support arc panel 2 and the edge of the convex heat conduction plate 24, supporting The deflector 3 is of a V-shaped structure.
  • the lower end of the support arc panel 2 is provided with an air inlet pipe 29 vertically through the middle of the lower end.
  • the lower end of the air inlet pipe 29 is provided with a connecting flange 31, and the inner side of the connecting flange 31 is provided with a sealing ring 32.
  • the inside of the intake pipe 29 is provided with a solenoid valve 30, the upper end of the intake pipe 29 is horizontally provided with a flow-sharing plate 28, the edge of the flow-sharing plate 28 is provided with a number of split combustion tubes 25 at equal angles, and the upper ends of the split combustion tubes 25 are set at equal intervals There are a number of combustion holes 26.
  • One side of the equalizer plate 28 is equipped with an igniter 27 to match the combustion hole 26.
  • a number of heat conducting blocks 23 are arranged on the upper middle area of the convex heat conducting plate 24. The convex heat conducting plate 24 on the outside of the heat conducting block 23 is at equal angles.
  • a number of bent flow guide tubes 7 are provided, and an annular flow guide tube 8 is provided on the outside of the lower half of the support mounting cylinder 18.
  • the upper ends of the bent flow guide tubes 7 all extend out of the annular flow guide tube 8, and the bent guide tube
  • the lower end of the flow tube 7 all protrudes from the convex heat conducting plate 24, and the outer side of the bent flow guide tube 7 is provided with a number of radiating fins 6 at equal angles
  • the right end of the annular flow guide tube 8 is vertically provided with an exhaust pipe 9 for exhaust
  • the upper half of the pipe 9 is provided with a purification cylinder 13, which is fixed to the upper right end of the support installation cylinder 18 through a mounting frame, and the purification cylinder 13 is provided with an adsorption layer 12 inside, and the upper end of the exhaust pipe 9 is provided with a fixed flange 14.
  • a liquid storage tank 19 is vertically arranged on the left side of the support installation cylinder 18, an insulation layer 20 is arranged on the inner side of the liquid storage tank 19, and a heat exchange tube 10 is arranged in the middle of the support installation cylinder 18, and the heat exchange tube 10 is The S-shaped setting, and the left end of the heat exchange tube 10 is connected to the lower right corner of the liquid storage tank 19, the lower right corner of the liquid storage tank 19 is equipped with the heat exchange tube 10 with a liquid pump 21, and the left end of the heat exchange tube 10 is provided with a temperature control Valve 22, the heat exchange tube 10 is evenly provided with a number of heat conducting fins 11, the lower right corner of the support installation cylinder 18 is horizontally provided with a drainage pipe 5, the drainage pipe 5 extends out of the support installation cylinder 18, and the extended support installation cylinder 18 The drain pipe 5 is provided with a manual valve 4.
  • the solenoid valve 30 controls the external gas to enter the flow distribution plate 28 through the intake pipe 29, and then enter the respective branch combustion tubes 25 and export them from the combustion holes 26.
  • the igniter 27 is activated to burn the gas, and the generated high-temperature gas is directed upwards.
  • a part of the high-temperature gas directly contacts the convex heat conduction plate 24 to transfer the heat to the inside of the support installation cylinder 18, and the other part of the high-temperature gas passes through the bending guide tube 7 Enter the annular guide tube 8 and then exit from the exhaust pipe 9.
  • the suction pump 21 is started, so that the water in the supporting installation cylinder 18 is pumped into the storage tank 19, due to the thermal insulation layer 20
  • the internal water temperature can be stored for a long time.
  • the suction pump 21 is started in the reverse direction to make the internal water flow back to the support mounting cylinder 18, which significantly shortens the time for water temperature heating and enables the device to resume heating in time , Save energy and time.
  • the exhaust pipe 9 discharges the exhaust gas, it is adsorbed and purified by the adsorption layer 12 in the purification cylinder 13, so that the exhausted gas harmful substances are greatly reduced.
  • the heat conduction block 23 accelerates the heat absorption speed and increases the heat
  • the transmission efficiency of the rotating cover plate 16 is matched with the thermal insulation sponge 15, so that the heat dissipation in the device is less, the heat utilization rate is high, and the energy saving and environmental protection performance of the device is further improved.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Heat-Pump Type And Storage Water Heaters (AREA)

Abstract

一种环保锅炉领域,具体是一种节能环保采暖热水锅炉,包括竖直设置的支撑安装筒(18),支撑安装筒(18)的上端设置有转动盖板(16),转动盖板(16)的左端通过驱动转轴(17)安装在支撑安装筒(18)上,支撑安装筒(18)的下端水平设置有凸面导热板(24),凸面导热板(24)的正下方水平设置有支撑弧面板(2),所述支撑弧面板(2)的下端等角度设置有若干支撑安装柱(1),支撑弧面板(2)与凸面导热板(24)的边缘之间等角度设置有若干支撑导流板(3),通过凸面导热结构配合多管换热结构,使得装置的加热效率显著提升,减少了热量的损失,且废气经过吸附后排出,更加环保,通过高温储液,再次供热时反流,使得装置的热量损失小,二次供暖响应快,节约能源消耗和加热时间,进一步提升装置的节能环保效果。

Description

一种节能环保采暖热水锅炉 技术领域
本发明涉及环保锅炉领域,具体是一种节能环保采暖热水锅炉。
背景技术
我国北方地区冬季寒冷,时间长达3到6个月,尤其广大的农村地区,一些城市集中供热管网不能到达的地方,因我国天然气匮乏和输送管道网建设费用太大,电价较高,故室内采暖主要以煤炭为主,现在室内使用锅炉,虽然也能够同时满足取暖的需求,但使用的采暖炉通过烟筒将燃烧产生的粉尘和烟雾全部直接排出室外,没有充分利用高温烟气的热能,热能利用效率低下,同时将煤炭燃烧产生的氮氧化物和粉尘排放到大气中,造成大气污染,破坏了生态环境,现在我国南方很多地区采暖逐步在使用采暖设备,节能环保采暖锅炉将会得到广泛的应用。
中国专利(公告号CN206593293U)公开了一种节能环保采暖热水锅炉,虽然能够对燃烧的产物进行处理,但是根本上没有改善,燃烧的时长、燃烧物均未改变,在热量的利用率方面、结构设计方面、节能环保方面均存在缺陷。
发明内容
本发明的目的在于提供一种节能环保采暖热水锅炉,以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:
一种节能环保采暖热水锅炉,包括竖直设置的支撑安装筒,支撑安装筒的上端设置有转动盖板,转动盖板的左端通过驱动转轴安装在支撑安装筒上,支撑安装筒的下端水平设置有凸面导热板,凸面导热板的正下方水平设置有支撑弧面板,所述支撑弧面板的下端等角度设置有若干支撑安装柱,支撑弧面板与凸面导热板的边缘之间等角度设置有若干支撑导流板,支撑导流板均为V型结构,凸面导热板的上侧中间区域设置有若干导热块,导热块外侧的凸面导热板上等角度设置有若干折弯导流管,支撑安装筒下半部分的外侧设置有环状导流筒,折弯导流管的上端均伸出环状导流筒内,折弯导流管的下端均伸出凸面导热板,且折弯导流管的外侧均等角度设置有若干散热片,环状导流筒的右端竖直设置有排气管,支撑安装筒的右下角水平设置有排水管,排水管伸出支撑安装筒,且伸出的支撑安装 筒的排水管上设置有手动阀。
作为本发明进一步的方案:所述转动盖板的下侧水平设置有隔热海绵。
作为本发明进一步的方案:所述支撑弧面板的下端中间位置竖直贯穿设置有进气管,进气管的下端设置有连接法兰,连接法兰的内侧设置有密封圈。
作为本发明进一步的方案:所述进气管的内部设置有电磁阀,进气管的上端水平设置有均流盘,均流盘的边缘等角度设置有若干分流燃烧管。
作为本发明进一步的方案:所述分流燃烧管的上端等间距设置有若干燃烧孔,均流盘的一侧配合燃烧孔设置有点火器。
作为本发明进一步的方案:所述排气管的上半端设置有净化筒,净化筒通过安装架固定在支撑安装筒的右上端,且净化筒的内部设置有吸附层,排气管的上端设置有固定法兰。
作为本发明进一步的方案:所述支撑安装筒的左侧竖直设置有储液箱,储液箱的内侧设置有保温层。
作为本发明进一步的方案:所述支撑安装筒的内部中间位置设置有换热管,换热管为S型设置,且换热管的左端与储液箱的右下角连通。
作为本发明进一步的方案:所述储液箱的右下角配合换热管设置有抽液泵,换热管的左端设置有温控阀。
作为本发明再进一步的方案:所述换热管的外侧均匀设置有若干导热片。
与现有技术相比,本发明的有益效果是:通过凸面导热结构配合多管换热结构,使得装置的加热效率显著提升,减少了热量的损失,且废气经过吸附后排出,更加环保,通过高温储液,再次供热时反流,使得装置的热量损失小,二次供暖响应快,节约能源消耗和加热时间,进一步提升装置的节能环保效果。
附图说明
图1为一种节能环保采暖热水锅炉的结构示意图。
图2为图1中a处的放大示意图。
图3为一种节能环保采暖热水锅炉中均流盘的立体示意图。
1-支撑安装柱、2-支撑弧面板、3-支撑导流板、4-手动阀、5-排水管、6-散热片、7-折弯导流管、8-环状导流筒、9-排气管、10-换热管、11-导热片、12-吸附层、13-净化筒、14-固定法兰、15-隔热海绵、16-转动盖板、17-驱动转轴、 18-支撑安装筒、19-储液箱、20-保温层、21-抽液泵、22-温控阀、23-导热块、24-凸面导热板、25-分流燃烧管、26-燃烧孔、27-点火器、28-均流盘、29-进气管、30-电磁阀、31-连接法兰、32-密封圈。
具体实施方式
下面详细描述本发明的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,旨在用于解释本发明,而不能理解为对本发明的限制。
下文的公开提供了许多不同的实施例或例子用来实现本发明的不同结构。为了简化本发明的公开,下文中对特定例子的部件和设置进行描述。当然,它们仅仅为示例,并且目的不在于限制本发明。此外,本发明可以在不同例子中重复参考数字和/或字母。这种重复是为了简化和清楚的目的,其本身不指示所讨论各种实施例和/或设置之间的关系。
实施例一
请参阅图1~3,本发明实施例中,一种节能环保采暖热水锅炉,包括竖直设置的支撑安装筒18,支撑安装筒18的上端设置有转动盖板16,转动盖板16的左端通过驱动转轴17安装在支撑安装筒18上,支撑安装筒18的下端水平设置有凸面导热板24,凸面导热板24的正下方水平设置有支撑弧面板2,所述转动盖板16的下侧水平设置有隔热海绵15,支撑弧面板2的下端等角度设置有若干支撑安装柱1,支撑弧面板2与凸面导热板24的边缘之间等角度设置有若干支撑导流板3,支撑导流板3均为V型结构,支撑弧面板2的下端中间位置竖直贯穿设置有进气管29,进气管29的下端设置有连接法兰31,连接法兰31的内侧设置有密封圈32,进气管29的内部设置有电磁阀30,进气管29的上端水平设置有均流盘28,均流盘28的边缘等角度设置有若干分流燃烧管25,分流燃烧管25的上端等间距设置有若干燃烧孔26,均流盘28的一侧配合燃烧孔26设置有点火器27,凸面导热板24的上侧中间区域设置有若干导热块23,导热块23外侧的凸面导热板24上等角度设置有若干折弯导流管7,支撑安装筒18下半部分的外侧设置有环状导流筒8,折弯导流管7的上端均伸出环状导流筒8内,折弯导流管7的下端均伸出凸面导热板24,且折弯导流管7的外侧均等角度设置有 若干散热片6,环状导流筒8的右端竖直设置有排气管9,排气管9的上半端设置有净化筒13,净化筒13通过安装架固定在支撑安装筒18的右上端,且净化筒13的内部设置有吸附层12,排气管9的上端设置有固定法兰14,支撑安装筒18的左侧竖直设置有储液箱19,储液箱19的内侧设置有保温层20,支撑安装筒18的内部中间位置设置有换热管10,换热管10为S型设置,且换热管10的左端与储液箱19的右下角连通,储液箱19的右下角配合换热管10设置有抽液泵21,换热管10的左端设置有温控阀22,换热管10的外侧均匀设置有若干导热片11,支撑安装筒18的右下角水平设置有排水管5,排水管5伸出支撑安装筒18,且伸出的支撑安装筒18的排水管5上设置有手动阀4。
通过在支撑安装筒18内倒入水,使其浸没换热管10,电磁阀30控制外部的气体通过进气管29进入均流盘28,再分别进入各个分流燃烧管25从燃烧孔26导出,启动点火器27,使得燃气燃烧,产生的高温气体向上导流,一部分高温气体直接与凸面导热板24接触,将热量热传递到支撑安装筒18内部,另一部分高温气体通过折弯导流管7进入环状导流筒8,随后从排气管9排出,此过程中,折弯导流管7减缓了气体导流的速度,使得热量通过散热片6传递到支撑安装筒18内,使得支撑安装筒18内的水温上升速度快,为了使得过渡供暖时,保存现有高温的水,启动抽液泵21,使得支撑安装筒18内的水被抽入储液箱19,由于保温层20的作用,使其内部的水温能够长时间保存,当下次供暖时,反向启动抽液泵21,使其内部的水流回支撑安装筒18,使得水温加热的时间显著缩短,使得装置能够及时恢复供暖,节约能源和时间。
实施例二
在实施例一的基础上,排气管9排出废气的同时,通过净化筒13内吸附层12的吸附净化,使得排出的气体有害物质大幅减少,导热块23使得热量的吸收速度加快,提升热量的传递效率,转动盖板16配合隔热海绵15,使得装置内的热量散发少,热量利用率高,进一步提升装置的节能环保性能。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不必须针对的是相同的实施例或示例。而且,描述 的具体特征、结构、材料或者特点可以在任一个或多个实施例或示例中以合适的方式结合。此外,在不相互矛盾的情况下,本领域的技术人员可以将本说明书中描述的不同实施例或示例以及不同实施例或示例的特征进行结合和组合。
尽管已经示出和描述了本发明的实施例,本领域的普通技术人员可以理解:在不脱离本发明的原理和宗旨的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由权利要求及其等同物限定。

Claims (10)

  1. 一种节能环保采暖热水锅炉,包括竖直设置的支撑安装筒(18),支撑安装筒(18)的上端设置有转动盖板(16),转动盖板(16)的左端通过驱动转轴(17)安装在支撑安装筒(18)上,支撑安装筒(18)的下端水平设置有凸面导热板(24),凸面导热板(24)的正下方水平设置有支撑弧面板(2),其特征在于,所述支撑弧面板(2)的下端等角度设置有若干支撑安装柱(1),支撑弧面板(2)与凸面导热板(24)的边缘之间等角度设置有若干支撑导流板(3),支撑导流板(3)均为V型结构,凸面导热板(24)的上侧中间区域设置有若干导热块(23),导热块(23)外侧的凸面导热板(24)上等角度设置有若干折弯导流管(7),支撑安装筒(18)下半部分的外侧设置有环状导流筒(8),折弯导流管(7)的上端均伸出环状导流筒(8)内,折弯导流管(7)的下端均伸出凸面导热板(24),且折弯导流管(7)的外侧均等角度设置有若干散热片(6),环状导流筒(8)的右端竖直设置有排气管(9),支撑安装筒(18)的右下角水平设置有排水管(5),排水管(5)伸出支撑安装筒(18),且伸出的支撑安装筒(18)的排水管(5)上设置有手动阀(4)。
  2. 根据权利要求1所述的一种节能环保采暖热水锅炉,其特征在于,所述转动盖板(16)的下侧水平设置有隔热海绵(15)。
  3. 根据权利要求1所述的一种节能环保采暖热水锅炉,其特征在于,所述支撑弧面板(2)的下端中间位置竖直贯穿设置有进气管(29),进气管(29)的下端设置有连接法兰(31),连接法兰(31)的内侧设置有密封圈(32)。
  4. 根据权利要求3所述的一种节能环保采暖热水锅炉,其特征在于,所述进气管(29)的内部设置有电磁阀(30),进气管(29)的上端水平设置有均流盘(28),均流盘(28)的边缘等角度设置有若干分流燃烧管(25)。
  5. 根据权利要求4所述的一种节能环保采暖热水锅炉,其特征在于,所述分流燃烧管(25)的上端等间距设置有若干燃烧孔(26),均流盘(28)的一侧配合燃烧孔(26)设置有点火器(27)。
  6. 根据权利要求1所述的一种节能环保采暖热水锅炉,其特征在于,所述排气管(9)的上半端设置有净化筒(13),净化筒(13)通过安装架固定在支撑安装筒(18)的右上端,且净化筒(13)的内部设置有吸附层(12),排气管(9)的上端设置有固定法兰(14)。
  7. 根据权利要求1或6所述的一种节能环保采暖热水锅炉,其特征在于,所述支撑安装筒(18)的左侧竖直设置有储液箱(19),储液箱(19)的内侧设置有保温层(20)。
  8. 根据权利要求7所述的一种节能环保采暖热水锅炉,其特征在于,所述支撑安装筒(18)的内部中间位置设置有换热管(10),换热管(10)为S型设置,且换热管(10)的左端与储液箱(19)的右下角连通。
  9. 根据权利要求8所述的一种节能环保采暖热水锅炉,其特征在于,所述储液箱(19)的右下角配合换热管(10)设置有抽液泵(21),换热管(10)的左端设置有温控阀(22)。
  10. 根据权利要求9所述的一种节能环保采暖热水锅炉,其特征在于,所述换热管(10)的外侧均匀设置有若干导热片(11)。
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