CN210663384U - Movable vacuum tube pressure-bearing solar water heater - Google Patents

Movable vacuum tube pressure-bearing solar water heater Download PDF

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Publication number
CN210663384U
CN210663384U CN201921699159.1U CN201921699159U CN210663384U CN 210663384 U CN210663384 U CN 210663384U CN 201921699159 U CN201921699159 U CN 201921699159U CN 210663384 U CN210663384 U CN 210663384U
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tube
water
water inlet
solar
stainless steel
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赖羿帆
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Ganzhou Tianlai Zhengbang New Energy Technology Co.,Ltd.
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赖羿帆
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    • 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
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/40Solar thermal energy, e.g. solar towers
    • Y02E10/44Heat exchange systems
    • 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
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/40Solar thermal energy, e.g. solar towers
    • Y02E10/47Mountings or tracking

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  • Heat-Pump Type And Storage Water Heaters (AREA)

Abstract

The utility model discloses a movable vacuum tube pressure-bearing solar water heater, which comprises a bottom frame, a frame and walking wheels arranged around the bottom frame, wherein the frame is internally layered from top to bottom through partition plates, and two ends of at least three solar vacuum glass heat collecting tubes are transversely arranged on the partition plates on corresponding layers; the solar vacuum glass heat collecting tube comprises a stainless steel inner container and an outer glass tube, wherein one end of the stainless steel tube, which extends out of the outer glass tube, is connected with a flow guide tube with internal threads, the flow guide tube of the lowermost solar vacuum glass heat collecting tube is hermetically connected through a water inlet assembly, the flow guide tube of the uppermost solar vacuum glass heat collecting tube is hermetically connected through a water outlet assembly, and the flow guide tubes of the solar vacuum glass heat collecting tubes arranged in the middle layer are hermetically connected through a water inlet assembly and a water outlet assembly; the utility model discloses be convenient for remove, not restricted by the place, the risk of tube explosion can not appear, has reduced the risk of leaking, can prevent effectively that the stainless steel inner bag from producing the incrustation scale.

Description

Movable vacuum tube pressure-bearing solar water heater
Technical Field
The utility model relates to a solar water heater, concretely relates to movable vacuum tube pressure-bearing solar water heater.
Background
Solar energy is a clean natural renewable energy source, is inexhaustible, and is an energy source shared by all people. At present, human beings have made remarkable progress on the utilization of solar energy, and the solar energy is particularly widely applied to the field of solar water heaters.
The core component of the solar water heater is a glass vacuum tube, the glass vacuum tube is composed of an inner layer glass tube and an outer layer glass, vacuum is pumped between the inner layer glass tube and the outer layer, water in the inner layer glass tube is coated with a spectrum selective absorption coating on the outer surface of the inner layer glass tube by utilizing a special process, the coating is struck by photons to absorb solar radiation energy to the maximum extent, the solar energy is converted into heat energy after being irradiated by sunlight, the heat energy is transferred into the water in the tube, the water temperature is increased, the density is reduced, hot water moves upwards, cold water with high specific gravity is reduced, the hot water is always positioned in a heat preservation water tank at the upper part, the relationship between the temperature rise condition of the hot water in the solar water heater and the.
While the appearance of the solar water heater brings comfortable life to people, various problems of the solar water heater are generated along with the use of people. The early solar water heater is generally fixedly installed on a roof and is provided with a water tank, hot water depends on water level drop, the water tank needs to be supported by a frame to a certain height, the water tank occupies a large volume, the wind resistance performance is poor, the glass heat collecting pipe of the solar water heater is not pressure-bearing, the water feeding is complicated, the overflow exists, and when the water tank is installed and is lower than the heat collector, the negative pressure phenomenon of a system can be caused sometimes, and the risk of pipe explosion exists.
Along with the development of the society, a water tank-free pressure-bearing wall-mounted solar water heater is produced, has no water storage tank, has small volume, is not limited by the mounting position, can be transversely and longitudinally mounted on each layer of a multi-layer building, a balcony of each unit or an outer wall, and operates without noise.
However, the prior art still has the following defects:
1. the existing solar water heaters are all fixedly installed, and for field work and some temporary places, the solar water heaters are very luxurious to wash a hot water bath, so that the prior art cannot meet the requirements of more people.
2. The heat collecting pipe of the existing solar water heater generally adopts a glass inner container, and the risk of pipe explosion exists when the pressure borne by the glass inner container is too large, an exhaust valve of a solar water heating system is blocked or the temperature difference between inlet water and outlet water of the glass inner container is too large.
3. The outlet end of the heat collecting pipe of the existing solar water heater is generally sealed by a built-in sealing ring, and the sealing ring is as follows: CN201820765384, with the name: in the vacuum tube pressure-bearing type solar water heater, a sealing ring 6 is adopted between an insertion section 5-2 and an insertion hole of an inner container 4 for sealing; the application numbers are: CN 201210363179, name: a pressure-bearing wall-mounted solar water heater without a water tank is characterized in that an O-shaped sealing ring 19 is arranged at the small end part of a single-head threaded sleeve 20, the O-shaped sealing ring 19 is respectively sleeved in a cold water inlet assembly 26, a hot water outlet assembly 34 or a water inlet and outlet assembly 31 among heat collecting pipes, and the cold water inlet assembly 26, the hot water outlet assembly 34 or the water inlet and outlet assembly 31 among the heat collecting pipes are connected with the single-head threaded sleeve 20 in a sealing and screwing mode. The sealing ring is arranged in the built-in sealing ring for sealing, is in hot water for a long time, is easy to age, prolongs the service life of the sealing ring, increases the water leakage risk, and buries hidden troubles for later maintenance.
4. The solar water heater can not meet the normal use requirements of people when the illumination is insufficient, such as continuous rainy days.
5. Because the aquatic contains trace calcium magnesium ion, especially the relatively poor local content of northern quality of water is higher, the easy scale deposit of calcium magnesium ion, the temperature in the solar vacuum tube reaches eight ninety degrees easily, easily produce the incrustation scale, adhere to the surface at water tank or vacuum tube, the coefficient of heat conductivity of incrustation scale is less, the thickening on place incrustation scale layer, make the heat-conducting fluid heat exchange in vacuum tube heat-absorbing body and the intraductal obstructed, show in the inside and outside of incrustation scale and form certain temperature difference, when solar radiation is better, the outer temperature of incrustation scale is higher, form great difference in temperature with the inlayer, cause the incrustation scale crackle, intraductal cold liquid enters into on glass's the inner wall along the crackle, cause the fried pipe equally easily, and traditional solar water heater is mostly simply filtered or not filter, the maintenance cost in.
In summary, in order to further satisfy the steady development of the solar water heater industry, it is necessary to design a movable vacuum tube pressure-bearing solar water heater.
SUMMERY OF THE UTILITY MODEL
The utility model provides a movable vacuum tube pressure-bearing solar water heater aims at optimizing prior art's weak point.
The utility model adopts the technical proposal that:
a movable vacuum tube pressure-bearing solar water heater comprises an underframe, a frame and traveling wheels arranged on the periphery of the underframe, wherein the frame is internally layered from top to bottom through partition plates, and two ends of at least three solar vacuum glass heat collecting tubes are transversely arranged on the partition plates on corresponding layers;
the solar vacuum glass heat collecting tube comprises a stainless steel inner container and an outer glass tube, one end of the outer glass tube is closed, the other end of the outer glass tube is provided with a circular ring-shaped opening, the outer surface of the stainless steel inner container is provided with a solar selective absorption coating, a plurality of supporting pieces which are attached to the inner wall of the outer glass tube are circumferentially arranged on the outer walls at the two ends of the stainless steel inner container,
the opening end of the stainless steel inner container is connected with a stainless steel tube, the outlet end of the other end of the stainless steel tube, which extends out of the outer glass tube, is connected with a flow guide tube with internal threads, the outlet end of the outer glass tube and the tube body of the stainless steel tube are sealed by a concave sealing ring, and a vacuum layer is formed between the stainless steel inner container and the outer glass tube;
the guide pipe of the lowest solar vacuum glass heat collecting pipe is hermetically connected through the water inlet assembly,
the guide pipe of the uppermost solar vacuum glass heat collecting pipe is hermetically connected through the water outlet assembly, and the guide pipes of the solar vacuum glass heat collecting pipes arranged in the middle layer are hermetically connected through the water inlet and outlet assemblies; wherein;
the water inlet assembly, the water outlet assembly and the water inlet and outlet assembly respectively comprise a cover plate, threaded pipes, silica gel sealing rings, water inlet connecting pipes, water outlet silica gel bent pipes, long hollow metal water inlet pipes and water outlet connecting pipes, the threaded pipes matched with the flow guide pipes and provided with external threads are arranged on one side of the cover plate, the outer diameters of the threaded pipes are smaller than the diameter of the cover plate, the water inlet connecting pipes and the water outlet connecting pipes are arranged on the other side of the cover plate, the inner ends of the water inlet connecting pipes are hermetically connected with the long hollow metal water inlet pipes, water outlet holes are formed in the inner ends of the long hollow metal water inlet pipes, the inner ends of the water outlet connecting pipes are hermetically connected with the water outlet silica gel bent pipes, the water inlet connecting pipes of the water inlet assembly are connected with cold water pipelines, the water outlet connecting pipes of the water outlet assembly are connected with.
Furthermore, one side of the cover plate is provided with an electric heating pipe, and the other side of the cover plate is provided with an electric heating pipe joint matched with the electric heating pipe.
Furthermore, a cold water pipeline and a high-temperature hot water outlet pipeline are respectively integrated on the frame and the underframe.
Further, the solar water heater water inlet direction is the advancing direction, and the cold water pipeline is gone up to establish ties in proper order and is had tertiary filter core, wherein: the first order is the cotton filter core of PP, and the second level is the carbon rod filter core, and the third level is the filter core that hinders dirty, hinders dirty filter core and divides into two the tunnel after the check valve, wherein: one path is connected with a water inlet connecting pipe of the water inlet assembly through the electromagnetic valve and the booster pump, and the other path is directly connected with the water inlet connecting pipe of the water inlet assembly through the valve.
Furthermore, the water outlet direction of the solar water heater is taken as the advancing direction, and a temperature sensor, a hot water flow switch, an exhaust valve and a hot water tap are sequentially arranged on the high-temperature hot water outlet pipeline.
Furthermore, a control display is arranged on one side of the frame, and the temperature sensing signal of the temperature sensor, the control system of the electromagnetic valve and the control system of the booster pump are all connected to the control display.
Furthermore, a placing groove matched with the solar vacuum glass heat collecting tube is arranged on the partition board, or a sheath for sheathing the end part of the solar vacuum glass heat collecting tube is arranged on the partition board.
Furthermore, the inner end of the water inlet connecting pipe is hermetically connected with the long hollow metal water inlet pipe through threads, and the inner end of the water outlet connecting pipe is hermetically connected with the water outlet silica gel bent pipe through threads.
Furthermore, the stainless steel inner container and the stainless steel pipe are both made of 304 stainless steel.
The utility model has the advantages that:
1. the utility model discloses be convenient for remove, not restricted by the place, can carry out the four seasons and supply to bathe, guarantee one of open-air personnel's basic life demand, not only can guarantee sanitary health, also can prolong open-air time of camping, have better market prospect.
2. Solar energy vacuum glass thermal-collecting tube adopts the stainless steel inner bag, compares in prior art's glass pipe inner bag, can bear great gravity or pressure, and the water storage capacity is big, can not be because of bearing the too big, solar water heating system's discharge valve is obstructed again or the inner bag business turn over water difference in temperature is too big, and lead to the risk of bursting pipe.
3. The water inlet assembly, the water outlet assembly and the water inlet and outlet assemblies are connected with the flow guide pipe with the inner thread in a threaded manner through the threaded pipe and then sealed through the silica gel sealing ring, so that the silica gel sealing ring is prevented from being in hot water for a long time, the service life of the sealing ring is prolonged, and the water leakage risk is reduced.
4. The electric heating pipes are integrated on the water inlet assembly, the water outlet assembly and the water inlet and outlet assemblies, so that the normal use of people can be met when the illumination is insufficient.
5. Water gets into the cold water pipeline and filters at first through cotton filter core, the rethread carbon rod filter core filters can the filtering silt, the iron rust, large granule impurity such as alga and chlorine residue etc., guarantee into water quality of water, then rethread hinders dirty filter core and filters, it can further filter the iron rust to hinder dirty filter core, silt, the suspended solid, the colloid plays the effect of softening quality of water, hinder dirty filter material and slowly dissolve the release after meeting water, can produce the weak current interference effect to aquatic cation (copper ion, calcium ion, magnesium ion) anion (carbonate ion, bicarbonate ion), can make the deactivation of the scale factor in the aquatic fast, can effectively protect the stainless steel inner bag, reach the effect of stopping the incrustation scale production, the later maintenance cost of stainless steel inner bag has been reduced.
Drawings
Fig. 1 is a front view of a preferred embodiment 1 of the present invention;
fig. 2 is a side view of the preferred embodiment 1 of the present invention;
FIG. 3 is an enlarged view of a portion of FIG. 1;
FIG. 4 is a front view of the water inlet and outlet assembly according to the preferred embodiment of the present invention 1;
FIG. 5 is a left side view of the water inlet/outlet assembly according to the preferred embodiment of the present invention;
FIG. 6 is a right side view of the cover plate and the threaded pipe of the water inlet/outlet assembly according to the preferred embodiment of the present invention 1;
fig. 7 is an assembly diagram of the solar vacuum glass heat collecting tube and the water outlet assembly in the preferred embodiment 2 of the present invention;
fig. 8 is a front view of the water outlet assembly according to the preferred embodiment 2 of the present invention;
fig. 9 is a left side view of the water outlet assembly according to the preferred embodiment of the present invention 2;
fig. 10 is a front view of the water inlet and outlet assembly according to the preferred embodiment of the present invention 2;
fig. 11 is a left side view of the water inlet and outlet assembly according to the preferred embodiment of the present invention 2;
FIG. 12 is a right side view of the cover plate and threaded tube of the water inlet and outlet assembly according to the preferred embodiment of the present invention 2;
fig. 13 is a front view of the water intake assembly according to the preferred embodiment of the present invention 2;
fig. 14 is a left side view of the water inlet assembly of the preferred embodiment of the present invention 2;
fig. 15 is a schematic water path diagram according to the preferred embodiment of the present invention 3;
in the figure, an underframe 1, a frame 2, a traveling wheel 3, a partition plate 4, a water inlet assembly 5, a water outlet assembly 6, a water inlet and outlet assembly 7, a stainless steel pipe 8, a draft tube 9, a concave sealing ring 10, a sheath 11, a cover plate 12, a threaded pipe 13, a silica gel sealing ring 14, a water inlet connecting pipe 15, a water outlet silica gel bent pipe 16, an electric heating pipe 17, a long hollow metal water inlet pipe 18, a water outlet connecting pipe 19, a water outlet hole 20, an electric heating pipe joint 21, a sleeve 22, a cold water pipeline 23, a high-temperature hot water outlet pipeline 24, a PP cotton filter element 25, a carbon rod filter element 26, a scale inhibition filter element 27, a check valve 28, an electromagnetic valve 29, a booster pump 30, a valve 31, a temperature sensor 32, a hot water flow switch 33, an exhaust valve 34, a hot water tap 35, a control display 36, a solar vacuum glass heat collecting pipe 100, a stainless steel inner container 101.
Detailed Description
The present invention will be further described with reference to the accompanying drawings.
Example 1: referring to fig. 1-6, the movable vacuum tube pressure-bearing solar water heater comprises an underframe 1, a frame 2 and walking wheels 3 arranged around the underframe 2, wherein the frame 1 is internally designed in a layered manner from top to bottom through partition plates 4, and two ends of at least three solar vacuum glass heat collecting tubes 100 are transversely arranged on the partition plates 4 of corresponding layers;
the solar vacuum glass heat collecting tube 100 comprises a stainless steel inner container 101 and an outer glass tube 102, one end of the outer glass tube 102 is closed, the other end is a circular opening, the outer surface of the stainless steel inner container 101 is provided with a solar selective absorption coating 104, the outer walls of the two ends of the stainless steel inner container 101 are circumferentially provided with a plurality of supporting pieces 103 which are used for being attached to the inner wall of the outer glass tube 102,
the opening end of the stainless steel inner container 101 is connected with a stainless steel tube 8, the outlet end of the other end of the stainless steel tube 8, which extends out of the outer glass tube 102, is connected with a flow guide tube 9 with internal threads, the outlet end of the outer glass tube 102 and the tube body of the stainless steel tube 8 are sealed through a concave sealing ring 10, and a vacuum layer is formed between the stainless steel inner container 101 and the outer glass tube 102;
the guide pipe 9 of the lowest solar vacuum glass heat collecting pipe 100 is hermetically connected through the water inlet assembly 5,
the guide pipe 9 of the uppermost solar vacuum glass heat collecting pipe 100 is hermetically connected through a water outlet assembly 6, and the guide pipes 9 of the solar vacuum glass heat collecting pipes 100 arranged in the middle layer are hermetically connected through a water inlet and outlet assembly 7; wherein;
the water inlet assembly 5, the water outlet assembly 6 and the water inlet and outlet assembly 7 respectively comprise a cover plate 12, a threaded pipe 13, a silica gel sealing ring 14, a water inlet connecting pipe 15, a water outlet silica gel bent pipe 16, a long hollow metal water inlet pipe 18 and a water outlet connecting pipe 19, one side of the cover plate 12 is provided with a threaded pipe 13 matched with the flow guide pipe 9 and provided with external threads, the outer diameter of the threaded pipe 13 is smaller than the diameter of the cover plate 12, the other side of the cover plate 12 is provided with a water inlet connecting pipe 15 and a water outlet connecting pipe 19, the inner end of the water inlet connecting pipe 15 is hermetically connected with the long hollow metal water inlet pipe 18, the inner end of the long hollow metal water inlet pipe 18 is provided with a water outlet hole 20, the inner end of the water outlet connecting pipe 19 is hermetically connected with a water outlet silica gel bent pipe 16, the water inlet connecting pipe 15 of the water inlet assembly 5 is connected with a cold water pipeline 23, the water outlet connecting pipe 19 of the water outlet assembly 6 is connected with a high-temperature hot water outlet pipeline 24, and the water inlet.
In this embodiment, in order to prevent the solar vacuum glass heat collecting tube 100 from shaking and being broken, preferably, a placing groove matched with the solar vacuum glass heat collecting tube 100 is provided on the partition plate 4 or a sheath 11 for sheathing the end of the solar vacuum glass heat collecting tube 100 is provided on the partition plate 4.
In this embodiment, the inner end of the water inlet connecting pipe 15 is hermetically connected with the long hollow metal water inlet pipe 18 through a thread, and the inner end of the water outlet connecting pipe 19 is hermetically connected with the water outlet silica gel bent pipe 16 through a thread.
In this embodiment, the stainless steel inner container 101 and the stainless steel tube 8 are both made of 304 stainless steel.
Tap water enters the water inlet connecting pipe 15 of the water inlet assembly 5 through the cold water pipeline 23, flows into the stainless steel inner container 101 of the solar vacuum glass heat collecting tube 100 at the bottom through the long hollow metal water inlet pipe 18, when the stainless steel inner container 101 of the lowest solar vacuum glass heat collecting tube 100 is full of water, the water passes through the water outlet silica gel bent pipe 16, the water outlet connecting pipe 19 and the adjacent water inlet connecting pipe 15, and the long hollow metal water inlet pipe 18 communicated with the adjacent water inlet connecting pipe 15 flows into the stainless steel inner container of the last solar vacuum glass heat collecting pipe 100, when water continuously flows in, the water is injected into the solar vacuum glass heat collecting tube 100 from bottom to top in sequence until the inner container of the uppermost solar vacuum glass heat collecting tube 100 is filled, when the water in the solar vacuum glass heat collecting tube 100 is heated in the sun, the high-temperature hot water outlet pipe 24 is opened, and the hot water can flow out from the high-temperature hot water outlet pipe 24 for use.
Example 2: referring to fig. 7 to 14, based on embodiment 1, further, an electric heating tube 17 is disposed on one side of the cover plate 12, an electric heating tube joint 21 matched with the electric heating tube 17 is disposed on the other side of the cover plate 12, the electric heating tube joint 21 can be connected to a power supply through a wire, by integrating the electric heating tube 17 on the cover plate, the electric heating tube can be used in cooperation with the electric heating tube 17 when sunlight is insufficient, the power of a single electric heating tube is preferably 100W, and since the electric heating tube is disposed in each solar vacuum glass heat collecting tube 100, the heating efficiency is high.
Example 3: referring to fig. 15, based on embodiment 1 or embodiment 2, a cold water pipe 23 and a high temperature hot water outlet pipe 24 are respectively integrated on the frame 2 and the bottom frame 1, the water inlet direction of the solar water heater is the forward direction, and three stages of filter elements are sequentially connected in series on the cold water pipe 23, wherein: the first grade is the cotton filter core 25 of PP, and the second grade is carbon rod filter core 26, and the third grade is anti-dirty filter core 27, and anti-dirty filter core 27 divides into two the tunnel after through check valve 28, wherein: one path is connected with a water inlet connecting pipe 15 of a water inlet assembly through an electromagnetic valve 29 and a booster pump 30, the other path is directly connected with the water inlet connecting pipe 15 of the water inlet assembly through a valve 31, water enters a cold water pipeline 23 and is firstly filtered by a PP cotton filter element and then filtered by a carbon rod filter element to remove large particle impurities such as silt, rust, algae and the like and residual chlorine and the like, the water quality of the inlet water is ensured, and then the inlet water is filtered by a scale inhibition filter element which can further filter the rust, silt, suspended matters and colloid and play a role in softening the water quality, the scale inhibition filter material is slowly dissolved and released after meeting water and can generate weak electric interference effect on positive ions (copper ions, calcium ions and magnesium ions) negative ions (carbonate ions and bicarbonate ions) in the water, so that scale formation factors in the water can be quickly inactivated, a stainless steel liner can be effectively protected, the effect of preventing scale generation is achieved, and the later maintenance cost, in addition, when the water pressure is enough, water can be directly supplied through the valve 31, and when the water pressure is low, the electromagnetic valve 29 and the booster pump 30 can be opened to carry out rapid water replenishing.
The water outlet direction of the solar water heater is taken as the advancing direction, the high-temperature hot water outlet pipeline 24 is sequentially provided with a temperature sensor 32, a hot water flow switch 33, an exhaust valve 34 and a hot water tap 35, one side of the frame 2 is provided with a control display 36, and a temperature sensing signal of the temperature sensor 32, a control system of the electromagnetic valve 29 and a control system of the booster pump 30 are all connected to the control display 36.
Example 4: on the basis of embodiment 2 and embodiment 3, consider the problem of field power consumption, the utility model discloses can also erect solar panel at the top of frame 2, set up the battery on chassis 1, solar energy turns into during the electric energy is stored to the battery through solar panel, and the battery is corresponding electrical equipment power supply and for electric heating pipe power supply heating water, and hot water finally takes over 19 entering high temperature hot water outlet pipe 24 through the play water of water outlet assembly 5, is controlled by hot water flow switch 33, emits by hot tap 35 at last and supplies people to use.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (9)

1. A movable vacuum tube pressure-bearing solar water heater comprises an underframe, a frame and travelling wheels arranged on the periphery of the underframe, and is characterized in that the frame is internally layered from top to bottom through partition plates, and two ends of at least three solar vacuum glass heat collecting tubes are transversely arranged on the partition plates on corresponding layers;
the solar vacuum glass heat collecting tube comprises a stainless steel inner container and an outer glass tube, one end of the outer glass tube is closed, the other end of the outer glass tube is provided with a circular ring-shaped opening, the outer surface of the stainless steel inner container is provided with a solar selective absorption coating, a plurality of supporting pieces which are attached to the inner wall of the outer glass tube are circumferentially arranged on the outer walls at the two ends of the stainless steel inner container,
the opening end of the stainless steel inner container is connected with a stainless steel tube, the outlet end of the other end of the stainless steel tube, which extends out of the outer glass tube, is connected with a flow guide tube with internal threads, the outlet end of the outer glass tube and the tube body of the stainless steel tube are sealed by a concave sealing ring, and a vacuum layer is formed between the stainless steel inner container and the outer glass tube;
the guide pipe of the lowest solar vacuum glass heat collecting pipe is hermetically connected through the water inlet assembly,
the guide pipe of the uppermost solar vacuum glass heat collecting pipe is hermetically connected through the water outlet assembly, and the guide pipes of the solar vacuum glass heat collecting pipes arranged in the middle layer are hermetically connected through the water inlet and outlet assemblies; wherein;
the water inlet assembly, the water outlet assembly and the water inlet and outlet assembly respectively comprise a cover plate, threaded pipes, silica gel sealing rings, water inlet connecting pipes, water outlet silica gel bent pipes, long hollow metal water inlet pipes and water outlet connecting pipes, the threaded pipes matched with the flow guide pipes and provided with external threads are arranged on one side of the cover plate, the outer diameters of the threaded pipes are smaller than the diameter of the cover plate, the water inlet connecting pipes and the water outlet connecting pipes are arranged on the other side of the cover plate, the inner ends of the water inlet connecting pipes are hermetically connected with the long hollow metal water inlet pipes, water outlet holes are formed in the inner ends of the long hollow metal water inlet pipes, the inner ends of the water outlet connecting pipes are hermetically connected with the water outlet silica gel bent pipes, the water inlet connecting pipes of the water inlet assembly are connected with cold water pipelines, the water outlet connecting pipes of the water outlet assembly are connected with.
2. The movable vacuum tube pressure-bearing solar water heater as claimed in claim 1, wherein one side of the cover plate is provided with an electric heating tube, and the other side of the cover plate is provided with an electric heating tube joint matched with the electric heating tube.
3. The movable vacuum tube pressure-bearing solar water heater as claimed in claim 1, wherein the cold water pipeline and the high temperature hot water outlet pipeline are respectively integrated on the frame and the underframe.
4. A movable vacuum tube pressure-bearing solar water heater according to claim 1 or 3, characterized in that the water inlet direction of the solar water heater is the advancing direction, and three stages of filter elements are sequentially connected in series on the cold water pipeline, wherein: the first order is the cotton filter core of PP, and the second level is the carbon rod filter core, and the third level is the filter core that hinders dirty, hinders dirty filter core and divides into two the tunnel after the check valve, wherein: one path is connected with a water inlet connecting pipe of the water inlet assembly through the electromagnetic valve and the booster pump, and the other path is directly connected with the water inlet connecting pipe of the water inlet assembly through the valve.
5. The movable vacuum tube pressure-bearing solar water heater as claimed in claim 4, wherein the water outlet direction of the solar water heater is the forward direction, and the high-temperature hot water outlet pipeline is sequentially provided with a temperature sensor, a hot water flow switch, an exhaust valve and a hot water faucet.
6. A movable vacuum tube pressure-bearing solar water heater as claimed in claim 5, characterized in that a control display is arranged on one side of the frame, and the temperature sensing signal of the temperature sensor, the control system of the electromagnetic valve and the control system of the booster pump are connected to the control display.
7. The movable vacuum tube pressure-bearing solar water heater as claimed in claim 1, wherein the partition plate is provided with a placing groove matched with the solar vacuum glass heat collecting tube or a sheath for sheathing the end of the solar vacuum glass heat collecting tube.
8. The movable vacuum tube pressure-bearing solar water heater as claimed in claim 1, wherein the inner end of the water inlet connection tube is hermetically connected with the long hollow metal water inlet tube through a thread, and the inner end of the water outlet connection tube is hermetically connected with the water outlet silica gel elbow through a thread.
9. The movable vacuum tube pressure-bearing solar water heater as claimed in claim 1, wherein the stainless steel inner container and the stainless steel tube are made of 304 stainless steel.
CN201921699159.1U 2019-10-12 2019-10-12 Movable vacuum tube pressure-bearing solar water heater Active CN210663384U (en)

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Application Number Priority Date Filing Date Title
CN201921699159.1U CN210663384U (en) 2019-10-12 2019-10-12 Movable vacuum tube pressure-bearing solar water heater

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Application Number Priority Date Filing Date Title
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110595077A (en) * 2019-10-12 2019-12-20 赖羿帆 Movable vacuum tube pressure-bearing solar water heater

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110595077A (en) * 2019-10-12 2019-12-20 赖羿帆 Movable vacuum tube pressure-bearing solar water heater

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