CN206831731U - With reference to the Winter-summer dual purpose composite evaporation cooling air conditioning system of cobble bed accumulation of heat - Google Patents
With reference to the Winter-summer dual purpose composite evaporation cooling air conditioning system of cobble bed accumulation of heat Download PDFInfo
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- 238000001816 cooling Methods 0.000 title claims abstract description 74
- 238000004378 air conditioning Methods 0.000 title claims abstract description 36
- 239000002131 composite material Substances 0.000 title claims abstract description 30
- 238000001704 evaporation Methods 0.000 title claims description 17
- 230000008020 evaporation Effects 0.000 title claims description 15
- 230000009977 dual effect Effects 0.000 title claims 11
- 238000009825 accumulation Methods 0.000 title claims 3
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims description 69
- 239000007921 spray Substances 0.000 claims description 36
- 239000000945 filler Substances 0.000 claims description 17
- 238000005507 spraying Methods 0.000 claims description 8
- 238000002386 leaching Methods 0.000 claims 3
- 102000002322 Egg Proteins Human genes 0.000 claims 1
- 108010000912 Egg Proteins Proteins 0.000 claims 1
- 210000004681 ovum Anatomy 0.000 claims 1
- 239000004575 stone Substances 0.000 claims 1
- 238000005338 heat storage Methods 0.000 abstract description 13
- 238000005265 energy consumption Methods 0.000 abstract description 10
- 238000009423 ventilation Methods 0.000 abstract description 9
- 150000001875 compounds Chemical class 0.000 abstract 2
- 238000000034 method Methods 0.000 description 9
- 238000005516 engineering process Methods 0.000 description 5
- 239000003595 mist Substances 0.000 description 4
- 238000010438 heat treatment Methods 0.000 description 3
- 230000001105 regulatory effect Effects 0.000 description 3
- 239000002699 waste material Substances 0.000 description 3
- CURLTUGMZLYLDI-UHFFFAOYSA-N Carbon dioxide Chemical compound O=C=O CURLTUGMZLYLDI-UHFFFAOYSA-N 0.000 description 2
- RAHZWNYVWXNFOC-UHFFFAOYSA-N Sulphur dioxide Chemical compound O=S=O RAHZWNYVWXNFOC-UHFFFAOYSA-N 0.000 description 2
- 239000003245 coal Substances 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 238000012856 packing Methods 0.000 description 2
- 238000011084 recovery Methods 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 229910002092 carbon dioxide Inorganic materials 0.000 description 1
- 239000001569 carbon dioxide Substances 0.000 description 1
- 230000001276 controlling effect Effects 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
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- 238000003912 environmental pollution Methods 0.000 description 1
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- 230000007774 longterm Effects 0.000 description 1
- 239000013618 particulate matter Substances 0.000 description 1
- 230000005855 radiation Effects 0.000 description 1
- 238000005057 refrigeration Methods 0.000 description 1
- 239000011232 storage material Substances 0.000 description 1
- 239000008400 supply water Substances 0.000 description 1
- 238000010792 warming Methods 0.000 description 1
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A30/00—Adapting or protecting infrastructure or their operation
- Y02A30/27—Relating to heating, ventilation or air conditioning [HVAC] technologies
- Y02A30/272—Solar heating or cooling
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B10/00—Integration of renewable energy sources in buildings
- Y02B10/20—Solar thermal
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- Other Air-Conditioning Systems (AREA)
Abstract
本实用新型公开的结合卵石床蓄热的冬夏两用复合型蒸发冷却空调系统,包括有热回收‑蒸发冷却复合空调机组和设置于建筑物室内地面下的卵石床蓄热单元;热回收‑蒸发冷却复合空调机组通过送风管与建筑物室内连通,热回收‑蒸发冷却复合空调机组还依次通过回风管、地埋风道与设置于建筑物室内地面上的回风出口连接;送风管通过连通风管与卵石床蓄热单元连接,且在连通风管与卵石床蓄热单元连接处设置有太阳能空气集热器,卵石床蓄热单元与设置于建筑物室内地面上的地板送风口连通。本实用新型的冬夏两用复合型蒸发冷却空调系统,能在低能耗下实现对建筑物室内温度的合理调节。
The utility model discloses a dual-purpose evaporative cooling air-conditioning system combined with pebble bed heat storage in winter and summer. The cooling compound air conditioner unit is connected to the building interior through the air supply pipe, and the heat recovery-evaporative cooling compound air conditioner unit is also connected to the return air outlet on the indoor floor of the building through the return air pipe and the buried air duct in turn; the air supply pipe It is connected with the pebble bed thermal storage unit through the connecting ventilation pipe, and a solar air heat collector is installed at the connection between the connecting ventilation pipe and the pebble bed thermal storage unit, and the pebble bed thermal storage unit is connected with the floor air outlet installed on the indoor ground of the building. connected. The composite evaporative cooling air-conditioning system for winter and summer of the utility model can realize reasonable regulation of indoor temperature of buildings under low energy consumption.
Description
技术领域technical field
本实用新型属于空调系统技术领域,具体涉及一种结合卵石床蓄热的冬夏两用复合型蒸发冷却空调系统。The utility model belongs to the technical field of air-conditioning systems, in particular to a winter-summer dual-purpose composite evaporative cooling air-conditioning system combined with pebble bed heat storage.
背景技术Background technique
据相关数据显示,我国建筑能耗已超过5亿吨标煤,其中,采暖及空调能耗约占建筑能耗的50%,而新风能耗占空调总能耗的比例已经超过了30%,住宅领域空调和制冷系统消耗的电量约占全世界总发电量的15%。随着城市人口的急剧上升,各地区大量建成的大型公共建筑与住宅建筑的节能问题尤为突出,而能源危机、气候变暖及热岛效应等问题也相继出现,成为人们不得不认真考虑和面对的问题,如何做好暖通空调的节能也是各相关行业的重要任务,更是成为人们关注的焦点。According to relevant data, my country's building energy consumption has exceeded 500 million tons of standard coal, of which heating and air conditioning energy consumption accounts for about 50% of building energy consumption, and fresh air energy consumption accounts for more than 30% of the total air conditioning energy consumption. Air conditioning and refrigeration systems in the residential sector consume approximately 15% of the world's total electricity generation. With the rapid increase of urban population, the energy-saving problems of large-scale public buildings and residential buildings built in various regions are particularly prominent, and problems such as energy crisis, climate warming and heat island effect have also emerged one after another, and people have to seriously consider and face them. How to do a good job in energy saving of HVAC is also an important task of various related industries, and it has become the focus of people's attention.
在现有的暖通空调技术中,一般采用对室外新风直接处理的方式,但在长期的使用中极易造成不必要的资源浪费。实际上,空调房间内的空气夏季凉爽干燥,冬季温暖湿润,具有很大的利用价值,直接将其排至室外会造成能量的浪费,若能有效回收这一“免费能量”加以利用,再结合其他辅助技术就能很好的解决现有暖通空调存在能耗高、不节能的问题。In the existing HVAC technology, the method of directly processing outdoor fresh air is generally adopted, but it is easy to cause unnecessary waste of resources in long-term use. In fact, the air in the air-conditioned room is cool and dry in summer and warm and humid in winter, which is of great value for use. If it is directly discharged to the outside, it will cause energy waste. If this "free energy" can be effectively recovered and used, combined with Other auxiliary technologies can well solve the problems of high energy consumption and non-energy saving in existing HVAC.
实用新型内容Utility model content
本实用新型的目的在于提供一种结合卵石床蓄热的冬夏两用复合型蒸发冷却空调系统,能在低能耗下实现对建筑物室内温度的合理调节。The purpose of the utility model is to provide a winter-summer dual-purpose evaporative cooling air-conditioning system combined with pebble bed heat storage, which can realize reasonable adjustment of the indoor temperature of the building with low energy consumption.
本实用新型所采用的技术方案是,结合卵石床蓄热的冬夏两用复合型蒸发冷却空调系统,包括有热回收-蒸发冷却复合空调机组和设置于建筑物室内地面下的卵石床蓄热单元;热回收-蒸发冷却复合空调机组通过送风管与建筑物室内连通,热回收-蒸发冷却复合空调机组还依次通过回风管、地埋风道与设置于建筑物室内地面上的回风出口连接;送风管通过连通风管与卵石床蓄热单元连接,且在连通风管与卵石床蓄热单元连接处设置有太阳能空气集热器,卵石床蓄热单元与设置于建筑物室内地面上的地板送风口连通;回风出口和地板送风口内均设置有风阀。The technical scheme adopted by the utility model is that the combined winter and summer dual-purpose evaporative cooling air-conditioning system combined with pebble bed heat storage includes a heat recovery-evaporative cooling composite air-conditioning unit and a pebble bed heat storage unit arranged under the indoor ground of the building ;The heat recovery-evaporative cooling composite air conditioner unit is connected to the indoor of the building through the air supply pipe, and the heat recovery-evaporative cooling composite air conditioner unit also passes through the return air duct, the buried air duct and the return air outlet on the indoor floor of the building in turn. Connection; the air supply pipe is connected to the pebble bed thermal storage unit through the connecting ventilation pipe, and a solar air collector is installed at the connection between the connecting ventilation pipe and the pebble bed thermal storage unit, and the pebble bed thermal storage unit is connected to the indoor ground of the building The air outlet on the floor is connected; the return air outlet and the air outlet on the floor are equipped with air valves.
本实用新型的特点还在于:The utility model is also characterized in that:
本实用新型结合卵石床蓄热的冬夏两用复合型蒸发冷却空调系统还包括有设置于连通风管内的止回阀a和设置于送风管内的止回阀b。The winter-summer dual-purpose evaporative cooling air-conditioning system of the utility model combined with pebble bed heat storage also includes a check valve a arranged in the connecting air pipe and a check valve b arranged in the air supply pipe.
热回收-蒸发冷却复合空调机组,包括有机组壳体,机组壳体内形成呈上下分布的上风道和下风道;上风道的结构为:机组壳体相对的两侧壁上分别设置有新风口、送风口,上风道内按新风进入口流动方向依次设置有过滤器a、板翅式换热器、直接蒸发冷却器及送风机,过滤器a与板翅式换热器之间形成净风流道,板翅式换热器的上方依次设置有高压喷淋单元a及风机,净风流道上方对应的机组壳体侧壁上设置有排风口;下风道的结构为:包括有回风入口,且回风口与送风口位于同一侧壁上,下风道内按回风进入后流动方向依次设置有过滤器b、集水箱,且集水箱位于板翅式换热器的正下方,集水箱与板翅式换热器之间形成回风通道,集水箱通过供水管与高压喷淋单元a连接,供水管上设置有水泵b。The heat recovery-evaporative cooling composite air conditioner unit includes an organic unit casing, and an upper air passage and a lower air passage are formed in the unit casing; the structure of the upper air passage is: fresh air outlets, The air supply port and the upper air passage are provided with a filter a, a plate-fin heat exchanger, a direct evaporative cooler and a blower in sequence according to the flow direction of the fresh air inlet. A clean air flow path is formed between the filter a and the plate-fin heat exchanger. A high-pressure spray unit a and a fan are arranged in turn above the fin heat exchanger, and an air outlet is arranged on the side wall of the unit shell corresponding to the top of the clean air passage; The air outlet and the air supply outlet are located on the same side wall. In the downflow duct, filter b and a water collection box are arranged in sequence according to the flow direction after the return air enters, and the water collection box is located directly below the plate-fin heat exchanger. A return air passage is formed between the heaters, and the water collection tank is connected to the high-pressure spray unit a through a water supply pipe, and a water pump b is arranged on the water supply pipe.
过滤器a和过滤器b均为袋式过滤器。Both filter a and filter b are bag filters.
风机采用轴流风机。The fan adopts axial flow fan.
排风口内设置有散流器;送风口内设置有送风量调节阀。A diffuser is arranged in the air exhaust port; an air supply volume regulating valve is arranged in the air supply port.
高压喷淋单元a由高压喷淋管和多个均匀设置于高压喷淋管且面向板翅式换热器喷淋的高压微雾喷嘴构成。The high-pressure spray unit a is composed of a high-pressure spray pipe and a plurality of high-pressure micro-mist nozzles uniformly arranged on the high-pressure spray pipe and facing the plate-fin heat exchanger for spraying.
直接蒸发冷却器,包括有直接蒸发冷却填料,直接蒸发冷却填料的上方设置有高压喷淋单元b,直接蒸发冷却填料的下方设置有蓄水箱,高压喷淋单元b通过蓄水管与蓄水箱连接,蓄水管上设置有水泵a。The direct evaporative cooler includes a direct evaporative cooling filler, a high-pressure spray unit b is arranged above the direct evaporative cooling filler, a water storage tank is arranged below the direct evaporative cooling filler, and the high-pressure spray unit b passes through the water storage pipe and the water storage The tank is connected, and the water storage pipe is provided with a water pump a.
高压喷淋单元b由高压供水管和多个均匀设置于高压供水管上且面向直接蒸发冷却填料喷淋的高压微雾喷嘴构成。The high-pressure spraying unit b is composed of a high-pressure water supply pipe and a plurality of high-pressure micro-mist nozzles uniformly arranged on the high-pressure water supply pipe and spraying directly facing the evaporative cooling filler.
卵石床蓄热单元,包括有混凝土箱,混凝土箱的顶壁上设置有通风口,通风口与地板送风口连通;混凝土箱内堆砌有卵石床,卵石床与混凝土箱顶部之间形成风道,风道与连通风管连通。The pebble bed heat storage unit includes a concrete box, the top wall of the concrete box is provided with a vent, and the vent is connected to the floor air supply port; the pebble bed is stacked in the concrete box, and an air duct is formed between the pebble bed and the top of the concrete box. The air duct communicates with the air duct.
本实用新型的有益效果在于:The beneficial effects of the utility model are:
(1)本实用新型的冬夏两用复合型蒸发冷却空调系统,将被动式建筑与蒸发冷却技术相结合,采用廉价易得的卵石作为蓄热材料,能在很大程度上节省冬季采暖能耗;与传统的燃煤式、水暖式地板辐射相比,不会产生环境污染,也不用担心水管泄露等问题,更加方便卫生。(1) The dual-purpose evaporative cooling air-conditioning system for winter and summer of the present utility model combines passive building with evaporative cooling technology, and uses cheap and easy-to-obtain pebbles as heat storage materials, which can greatly save energy consumption for heating in winter; Compared with the traditional coal-fired and water-heated floor radiation, it will not cause environmental pollution, and there is no need to worry about problems such as water pipe leakage, which is more convenient and hygienic.
(2)本实用新型的冬夏两用复合型蒸发冷却空调系统内采用板翅式换热器,充分利用建筑物室内回风冬季湿润温暖、夏季凉爽干燥的特点,回收建筑物室内回风中的冷量或热量,避免将建筑物室内回风直接排放到室外造成能量浪费。(2) The plate-fin heat exchanger is used in the dual-purpose composite evaporative cooling air-conditioning system of the utility model, which makes full use of the characteristics of the indoor return air of the building being humid and warm in winter and cool and dry in summer, so as to recover the heat in the indoor return air of the building. Cooling or heat, avoiding the waste of energy caused by direct discharge of the indoor return air of the building to the outside.
(3)本实用新型的冬夏两用复合型蒸发冷却空调系统内采用板翅式换热器,由高压喷淋单元将水喷到板翅式换热器下方的回风通道中,使原本温度较低的建筑物室内回风流过回风通道时温度被进一步降低,这样能增大建筑物室内外温度的差值,提高板翅式换热器在夏季时的工作效率。(3) The plate-fin heat exchanger is used in the composite evaporative cooling air-conditioning system of the present utility model, and the high-pressure spray unit sprays water into the return air channel below the plate-fin heat exchanger to make the original temperature The temperature of the return air in the lower building is further reduced when it flows through the return air channel, which can increase the difference between the indoor and outdoor temperatures of the building and improve the working efficiency of the plate-fin heat exchanger in summer.
(4)本实用新型的冬夏两用复合型蒸发冷却空调系统,将热回收技术与间接蒸发冷却技术结合,在夏季时作为蒸发冷却降温工作,冬季时作为典型的热回收工作,避免了原来单纯的蒸发冷却空调只能在夏季使用的弊端,扩大了蒸发冷却空调的使用时间范围。(4) The composite evaporative cooling air-conditioning system for winter and summer of the present utility model combines heat recovery technology with indirect evaporative cooling technology, works as evaporative cooling in summer, and works as a typical heat recovery in winter, avoiding the original simple The disadvantage of evaporative cooling air conditioners can only be used in summer, which expands the use time range of evaporative cooling air conditioners.
(5)本实用新型的冬夏两用复合型蒸发冷却空调系统内配设有太阳能空气集热器,能吸收太阳能并将其转化为热能,用于冬季供暖;太阳能空气集热的使用能减少煤炭消耗量,节省能源的同时能减少二氧化碳、二氧化硫等有害气体及颗粒物的排放量。(5) The winter and summer composite evaporative cooling air-conditioning system of the present utility model is equipped with a solar air heat collector, which can absorb solar energy and convert it into heat energy for heating in winter; the use of solar air heat collection can reduce coal Consumption, while saving energy, it can reduce the emission of harmful gases such as carbon dioxide and sulfur dioxide and particulate matter.
附图说明Description of drawings
图1是本实用新型冬夏两用复合型蒸发冷却空调系统的立体图;Fig. 1 is the three-dimensional view of the dual-purpose evaporative cooling air-conditioning system of the utility model in winter and summer;
图2是本实用新型冬夏两用复合型蒸发冷却空调系统的工作原理示意图;Fig. 2 is a schematic diagram of the working principle of the composite evaporative cooling air-conditioning system for winter and summer of the present utility model;
图3是本实用新型冬夏两用复合型蒸发冷却空调系统内板翅式换热器的结构示意图。Fig. 3 is a structural schematic diagram of the plate-fin heat exchanger in the composite evaporative cooling air-conditioning system for winter and summer of the present invention.
图中,1.过滤器a,2.排风口,3.轴流风机,4.高压喷淋单元a,5.板翅式换热器,6.高压喷淋单元b,7.直接蒸发冷却填料,8.送风机,9.送风量调节阀,10.止回阀a,11.止回阀b,12.卵石床,13.太阳能空气集热器,14.过滤器b,15.水泵a,16.集水箱,17.水泵b,18.回风管,19.连通风管,20.送风管,21.新风口,22.回风入口,23.蓄水箱,24.供水管,25.蓄水管,26.送风口,27.回风通道,28.地板送风口,29.回风出口,30.地埋风道,31.风道。In the figure, 1. Filter a, 2. Air outlet, 3. Axial fan, 4. High-pressure spray unit a, 5. Plate-fin heat exchanger, 6. High-pressure spray unit b, 7. Direct evaporation Cooling packing, 8. Blower fan, 9. Air volume regulating valve, 10. Check valve a, 11. Check valve b, 12. Pebble bed, 13. Solar air collector, 14. Filter b, 15. Water pump a, 16. Water collection tank, 17. Water pump b, 18. Return air pipe, 19. Even ventilation pipe, 20. Air supply pipe, 21. Fresh air outlet, 22. Return air inlet, 23. Water storage tank, 24. Water supply pipe, 25. Water storage pipe, 26. Air supply outlet, 27. Return air channel, 28. Floor air supply outlet, 29. Return air outlet, 30. Buried air duct, 31. Air duct.
具体实施方式detailed description
下面结合附图和具体实施方式对本实用新型进行详细说明。The utility model will be described in detail below in conjunction with the accompanying drawings and specific embodiments.
本实用新型结合卵石床蓄热的冬夏两用复合型蒸发冷却空调系统,如图1及图2所示,包括有热回收-蒸发冷却复合空调机组和设置于建筑物室内地面下的卵石床蓄热单元;热回收-蒸发冷却复合空调机组通过送风管20与建筑物室内连通,热回收-蒸发冷却复合空调机组还依次通过回风管18、地埋风道30与设置于建筑物室内地面上的回风出口29连接;送风管20通过连通风管19与卵石床蓄热单元连接,且在连通风管19与卵石床蓄热单元连接处设置有太阳能空气集热器13,卵石床蓄热单元与设置于建筑物室内地面上的地板送风口28连通;还包括有设置于连通风管19内的止回阀a10和设置于送风管20内的止回阀b11。The utility model combines the winter and summer dual-purpose evaporative cooling air-conditioning system combined with pebble bed heat storage, as shown in Fig. Heat unit: the heat recovery-evaporative cooling composite air conditioner unit communicates with the building indoors through the air supply pipe 20, and the heat recovery-evaporative cooling composite air conditioner unit also passes through the return air duct 18, the buried air duct 30 and the indoor floor of the building in turn. The return air outlet 29 on the top is connected; the air supply pipe 20 is connected with the pebble bed thermal storage unit through the connecting ventilation pipe 19, and a solar air heat collector 13 is arranged at the joint between the connecting ventilation pipe 19 and the pebble bed thermal storage unit, and the pebble bed The heat storage unit communicates with the floor air outlet 28 arranged on the indoor floor of the building; it also includes a check valve a10 arranged in the connecting ventilation pipe 19 and a check valve b11 arranged in the air supply pipe 20 .
回风出口29和地板送风口28内均设置有风阀,用于控制回风量和送风量。Both the return air outlet 29 and the floor air supply port 28 are provided with air valves for controlling the return air volume and the air supply volume.
热回收-蒸发冷却复合空调机组,如图1所示,包括有机组壳体,机组壳体内形成呈上下分布的上风道和下风道;上风道的结构为:机组壳体相对的两侧壁上分别设置有新风口21、送风口26,上风道内按新风进入口流动方向依次设置有过滤器a1、板翅式换热器5、直接蒸发冷却器及送风机8,过滤器a1与板翅式换热器5之间形成净风流道,板翅式换热器5的上方依次设置有高压喷淋单元a4及风机3,净风流道上方对应的机组壳体侧壁上设置有排风口2;下风道的结构为:包括有回风入口22,且回风口22与送风口26位于同一侧壁上,下风道内按回风进入后流动方向依次设置有过滤器b14、集水箱16,且集水箱16位于板翅式换热器5的正下方,集水箱16与板翅式换热器5之间形成回风通道27,集水箱16通过供水管24与高压喷淋单元a4连接,供水管24上设置有水泵b17,水泵b17位于集水箱16内为潜水泵;集水箱16还连接排水管。The heat recovery-evaporative cooling composite air conditioner unit, as shown in Figure 1, includes an organic unit casing, and an upper air duct and a lower air duct are formed in the unit housing in a vertical distribution; the structure of the upper air duct is: on the opposite side walls of the unit housing The fresh air outlet 21 and the air supply outlet 26 are respectively arranged, and the filter a1, the plate-fin heat exchanger 5, the direct evaporative cooler and the blower 8 are arranged in sequence in the upper air duct according to the flow direction of the fresh air inlet, and the filter a1 and the plate-fin heat exchanger A clean air passage is formed between the heat exchangers 5, and a high-pressure spray unit a4 and a fan 3 are sequentially arranged above the plate-fin heat exchanger 5, and an air outlet 2 is provided on the side wall of the unit shell corresponding to the top of the clean air passage; The structure of the lower air passage is as follows: it includes the return air inlet 22, and the return air outlet 22 and the air supply outlet 26 are located on the same side wall, and the filter b14 and the water collection box 16 are arranged in the down air passage according to the flow direction after the return air enters, and the water collection box 16 is located directly below the plate-fin heat exchanger 5, and a return air channel 27 is formed between the water collection tank 16 and the plate-fin heat exchanger 5. The water collection tank 16 is connected to the high-pressure spray unit a4 through the water supply pipe 24, and the water supply pipe 24 A water pump b17 is arranged on it, and the water pump b17 is a submersible pump located in the water collecting tank 16; the water collecting tank 16 is also connected to a drain pipe.
过滤器a1和过滤器b14均为袋式过滤器。Both the filter a1 and the filter b14 are bag filters.
风机3采用轴流风机。Fan 3 adopts an axial flow fan.
排风口2内设置有散流器;送风口26内设置有送风量调节阀9。A diffuser is arranged in the air exhaust port 2 ; an air supply volume regulating valve 9 is arranged in the air supply port 26 .
高压喷淋单元a4由高压喷淋管和多个均匀设置于高压喷淋管且面向板翅式换热器5喷淋的高压微雾喷嘴构成。The high-pressure spray unit a4 is composed of a high-pressure spray pipe and a plurality of high-pressure micro-mist nozzles uniformly arranged on the high-pressure spray pipe and facing the plate-fin heat exchanger 5 for spraying.
板翅式换热器5,包括有多个竖直放置、平行排列的换热板,如图3所示,相邻的两个换热板之间分别形成新风流道、回风流道,工作时新风与回风交叉流过,新风流道竖直方向封闭,新风沿水平方向进入,回风流道水平方向封闭,回风沿竖直方向从下自上进入。The plate-fin heat exchanger 5 includes a plurality of heat exchange plates arranged vertically and in parallel. When the fresh air and the return air cross flow, the fresh air channel is closed vertically, the fresh air enters along the horizontal direction, the return air channel is closed horizontally, and the return air enters from the bottom to the top along the vertical direction.
直接蒸发冷却器,如图1所示,包括有直接蒸发冷却填料7,直接蒸发冷却填料7的上方设置有高压喷淋单元b6,直接蒸发冷却填料7的下方设置有蓄水箱23,高压喷淋单元b6通过蓄水管25与蓄水箱23连接,蓄水管25上设置有水泵a15,水泵a15位于蓄水箱23内为潜水泵;蓄水箱23还连接有排水管。The direct evaporative cooler, as shown in Figure 1, includes a direct evaporative cooling filler 7, a high-pressure spray unit b6 is arranged above the direct evaporative cooling filler 7, a water storage tank 23 is arranged below the direct evaporative cooling filler 7, and a high-pressure spray unit b6 is arranged below the direct evaporative cooling filler 7. The shower unit b6 is connected with the water storage tank 23 through the water storage pipe 25, the water storage pipe 25 is provided with a water pump a15, and the water pump a15 is located in the water storage tank 23 and is a submersible pump; the water storage tank 23 is also connected with a drain pipe.
高压喷淋单元b6由高压供水管和多个均匀设置于高压供水管上且面向直接蒸发冷却填料7喷淋的高压微雾喷嘴构成。The high-pressure spray unit b6 is composed of a high-pressure water supply pipe and a plurality of high-pressure micro-mist nozzles uniformly arranged on the high-pressure water supply pipe and spraying towards the direct evaporative cooling filler 7 .
卵石床蓄热单元,如图1所示,包括有混凝土箱,混凝土箱的顶壁上设置有通风口,通风口与地板送风口28连通;混凝土箱内堆砌有卵石床12,卵石床12与混凝土箱顶部之间形成风道,该风道与连通风管19连通。The pebble bed thermal storage unit, as shown in Figure 1, includes a concrete box, the top wall of the concrete box is provided with a vent, and the vent is communicated with the floor air supply port 28; An air duct is formed between the tops of the concrete box, and the air duct communicates with the air duct 19 .
卵石床12最好设置于距离建筑物室内地面下40cm~50cm深处,保证储存的热量能良好的应用;卵石床12由若干卵石紧密堆砌而成,其中卵石的平均直径为1cm~10cm,便于紧密堆砌,从而更好的蓄热。The pebble bed 12 is preferably set at a depth of 40 cm to 50 cm below the indoor ground of the building to ensure that the stored heat can be used well; the pebble bed 12 is formed by a number of pebbles closely packed, and the average diameter of the pebbles is 1 cm to 10 cm, which is convenient Packed tightly for better heat storage.
本实用新型结合卵石床蓄热的冬夏两用复合型蒸发冷却空调系统的工作过程具体如下:The working process of the winter and summer combined evaporative cooling air-conditioning system combined with pebble bed heat storage of the utility model is as follows:
1.整个系统的工作过程如下:1. The working process of the whole system is as follows:
(1)在夏季工作时,开启止回阀b11,关闭止回阀a10,采用上送下回式,具体工作过程为:(1) When working in summer, open the check valve b11, close the check valve a10, and adopt the up and down return type. The specific working process is as follows:
建筑物室内回风经回风出口29送入地埋风道30,再由地埋风道30经回风管18、回风入口22送入热回收-蒸发冷却复合空调机组内,由过滤器b14(袋式过滤器)对建筑物室内回风进行净化处理,形成洁净的回风;洁净的回风进入板翅式换热器5下方的回风通道27内,高压喷淋单元a4能向回风通道27中喷水在回风通道27内形成水膜,洁净的回风在回风通道27内自下而上流动与水膜发生热湿交换,使原本温度较低的建筑物室内回风温度进一步被降低,形成低温回风;The indoor return air of the building is sent into the buried air duct 30 through the return air outlet 29, and then sent into the heat recovery-evaporative cooling composite air conditioning unit through the buried air duct 30 through the return air duct 18 and the return air inlet 22, and is filtered by the filter b14 (bag filter) purifies the return air in the building to form a clean return air; the clean return air enters the return air channel 27 below the plate-fin heat exchanger 5, and the high-pressure spray unit a4 can The water sprayed in the return air channel 27 forms a water film in the return air channel 27, and the clean return air flows from bottom to top in the return air channel 27 to exchange heat and moisture with the water film, so that the originally low-temperature indoor return The wind temperature is further reduced to form a low-temperature return air;
与上述过程同时,室外新风经进风口21进入热回收-蒸发冷却复合空调机组内,由过滤器a1(袋式过滤器)对室外新风进行净化处理,得到洁净的新风;洁净的新风进入板翅式换热器5内的新风流道中,并通过板翅式换热器5内的换热板将热量传递给冷却后的低温回风,即利用低温回风预冷洁净的新风,形成低温新风;低温新风流入直接蒸发冷却器内,在湿润的直接蒸发冷却填料7处进行直接蒸发冷却,使温度进一步降低,形成符合送风条件的冷风;符合送风条件的冷风在送风机8的作用下经送风口26送出,再经送风管20送入建筑物室内。Simultaneously with the above process, the outdoor fresh air enters the heat recovery-evaporative cooling composite air conditioning unit through the air inlet 21, and the outdoor fresh air is purified by the filter a1 (bag filter) to obtain clean fresh air; the clean fresh air enters the plate fin In the fresh air passage in the plate-fin heat exchanger 5, the heat is transferred to the cooled low-temperature return air through the heat exchange plate in the plate-fin heat exchanger 5, that is, the low-temperature return air is used to precool the clean fresh air to form low-temperature fresh air The low-temperature fresh air flows into the direct evaporative cooler, and direct evaporative cooling is carried out at the wet direct evaporative cooling filler 7, so that the temperature is further reduced to form cold air that meets the air supply conditions; The air supply port 26 sends out, and then sends into the building indoor through the air supply pipe 20.
(2)在冬季工作时,开启止回阀a10,关闭止回阀b11,采用下送下回式,具体工作过程为:(2) When working in winter, open the check valve a10, close the check valve b11, and adopt the down-feed and down-return type. The specific working process is as follows:
建筑物室内温度较高的回风经回风出口29送入地埋风道30,再由地埋风道30经回风管18、回风入口22送入热回收-蒸发冷却复合空调机组内,由过滤器b14(袋式过滤器)对建筑物室内回风进行净化处理,形成洁净的回风;洁净的回风进入板翅式换热器5下方的回风通道27内,此时不给高压喷淋单元a4供水,即不向回风通道27内喷水;The return air with high indoor temperature of the building is sent into the buried air duct 30 through the return air outlet 29, and then sent into the heat recovery-evaporative cooling composite air conditioner unit through the buried air duct 30 through the return air duct 18 and the return air inlet 22 , the indoor return air of the building is purified by the filter b14 (bag filter) to form a clean return air; the clean return air enters the return air channel 27 below the plate-fin heat exchanger 5, and does not Supply water to the high-pressure spray unit a4, that is, do not spray water into the return air passage 27;
与上述过程同时,室外新风经进风口21进入热回收-蒸发冷却复合空调机组内,由过滤器a1(袋式过滤器)对室外新风进行净化处理,得到洁净的新风;洁净的新风进入板翅式换热器5内的新风流道中,温度较高的回风通过板翅式换热器5内的换热板将热量传递给新风通道中洁净的新风,对新风进行预热;预热后新风流入直接蒸发冷却器内,经过干燥的直接蒸发冷却填料7后在送风机8的作用下经送风口26送出,再依次经送风管20、连通风管19进入卵石床蓄热单元内;太阳能空气集热器13吸收太阳热能可预先存储于卵石床12内,卵石床12可用于对经连通风管19送入的预热后的空气进行加热,进一步提高新风的温度,形成暖风;暖风经地板送风口28送入建筑物室内。Simultaneously with the above process, the outdoor fresh air enters the heat recovery-evaporative cooling composite air conditioning unit through the air inlet 21, and the outdoor fresh air is purified by the filter a1 (bag filter) to obtain clean fresh air; the clean fresh air enters the plate fin In the fresh air channel in the heat exchanger 5, the return air with a higher temperature transfers heat to the clean fresh air in the fresh air channel through the heat exchange plate in the plate-fin heat exchanger 5, and preheats the fresh air; after preheating The fresh air flows into the direct evaporative cooler, passes through the dry direct evaporative cooling filler 7, and is sent out through the air supply port 26 under the action of the blower 8, and then enters the pebble bed thermal storage unit through the air supply pipe 20 and the ventilation pipe 19 in turn; The air heat collector 13 absorbs solar heat energy and can be pre-stored in the pebble bed 12, and the pebble bed 12 can be used to heat the preheated air sent in through the connected air pipe 19 to further increase the temperature of the fresh air to form warm air; The wind is sent into the building room through the floor air supply port 28.
2.水系统的工作过程具体如下:2. The working process of the water system is as follows:
(1)在夏季工作时:(1) When working in summer:
定期将洁净的水送入集水箱16内,再在水泵b17的作用下将水经供水管24送入高压喷淋单元a4内,由高压喷淋单元a4将水自上而下喷淋到板翅式换热器5下方的回风通道27内,建筑物室内的回风在回风通道27进行热湿交换,多余的水流回到集水箱16内中继续循环;Regularly send clean water into the water collection tank 16, and then send the water into the high-pressure spray unit a4 through the water supply pipe 24 under the action of the water pump b17, and the high-pressure spray unit a4 sprays the water onto the plate from top to bottom. In the return air channel 27 below the fin heat exchanger 5, the return air in the building room performs heat and moisture exchange in the return air channel 27, and the excess water flows back to the water collection tank 16 to continue circulation;
在直接蒸发冷却器内,高压喷淋单元b6将蓄水箱23内的水喷淋在直接蒸发冷却填料7上,润湿直接蒸发冷却填料7,预冷后的室外新风与湿润的直接蒸发冷却填料7进行直接蒸发冷却,温度继续降低后被送入建筑物室内,直接蒸发冷却填料7上多余的水流回到蓄水箱23中继续循环。In the direct evaporative cooler, the high-pressure spray unit b6 sprays the water in the water storage tank 23 on the direct evaporative cooling filler 7 to wet the direct evaporative cooling filler 7, and the precooled outdoor fresh air and the wet direct evaporative cooling Filling 7 carries out direct evaporative cooling, and is sent into building room after the temperature continues to drop, and the redundant water flow on direct evaporative cooling filling 7 returns in the water storage tank 23 and continues to circulate.
(2)在冬季工作时:(2) When working in winter:
停止向高压喷淋单元a4和高压喷淋单元b6内供水,使回风通道27和直接蒸发冷却填料7均保持干燥,将集水箱16和蓄水箱23内的水排出。Stop supplying water to the high-pressure spray unit a4 and the high-pressure spray unit b6, keep the return air channel 27 and the direct evaporative cooling packing 7 dry, and discharge the water in the water collection tank 16 and the water storage tank 23.
本实用新型结合卵石床蓄热的冬夏两用复合型蒸发冷却空调系统,能在低能耗下实现对建筑物室内温度的合理调节。The utility model combines a winter and summer dual-purpose evaporative cooling air-conditioning system combined with pebble bed heat storage, which can realize reasonable adjustment of the indoor temperature of buildings under low energy consumption.
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CN110762663A (en) * | 2019-10-14 | 2020-02-07 | 珠海格力电器股份有限公司 | PVT composite set and air conditioner based on night radiation and dew point evaporative cooling |
CN113916036A (en) * | 2021-10-11 | 2022-01-11 | 华南理工大学 | A system and method for combined operation of phase change energy storage and artificial cold source |
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CN110762663A (en) * | 2019-10-14 | 2020-02-07 | 珠海格力电器股份有限公司 | PVT composite set and air conditioner based on night radiation and dew point evaporative cooling |
CN113916036A (en) * | 2021-10-11 | 2022-01-11 | 华南理工大学 | A system and method for combined operation of phase change energy storage and artificial cold source |
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