Transversely-hung air energy pressure-bearing water tank
By innovating the design of the horizontally mounted air-source pressure tank, the water flow path and structure are optimized, solving the problems of uneven mixing of hot and cold water and large space occupation in traditional hot water devices, thus achieving efficient hot water supply and space saving.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-30
- Publication Date
- 2026-03-27
AI Technical Summary
Traditional hot water storage and supply devices suffer from uneven mixing of hot and cold water, large space requirements, and low hot water output, making it difficult to meet the space utilization and hot water supply needs of modern homes or commercial spaces.
The design adopts a horizontally mounted air-source pressure water tank. Through the combination of bottom inlet, baffle, water guide pipe and stainless steel pipe, the water flow path is optimized, so that cold water flows to the bottom of the water tank and pushes the hot water upward. The hot water resources between the two water tanks are utilized to ensure efficient hot water circulation and stable supply.
It significantly improves the hot water output rate to over 90%, reduces the mixing of cold and hot water, saves installation space, is suitable for various scenarios, and has the advantages of being economical and easy to maintain.
Smart Images

Figure CN224050669U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to hot water outlet device field, especially in a kind of transverse hanging air energy pressure water tank. BACKGROUND
[0002] In hot water supply system, how to improve hot water outlet rate and reduce cold water mixing is long-term technical problem that is concerned about. The traditional hot water storage and supply device usually adopts single water tank design, and the water inlet position is higher or the water flow path is unreasonable, which is easy to cause cold and hot water mixing uneven, thereby reducing the use efficiency of hot water. In addition, some vertical hot water devices in the prior art can achieve high thermal efficiency by inner coil heating, but the problems of large space occupation and inconvenient installation are particularly prominent, which is difficult to meet the demand of space utilization in modern family or commercial place. In order to solve these problems, some improvement schemes propose the idea of using multiple small-capacity water tanks in series, but due to the insufficient optimization of water flow distribution and flow guide design between water tanks, the efficient use of hot water is often difficult to achieve, and the hot water outlet rate is low, which is difficult to achieve ideal effect. Therefore, a hot water supply system that can improve hot water outlet rate and optimize space utilization is needed to overcome the shortcomings of the prior art. The utility model improves the design of water inlet and flow guide pipe, so that the water directly reaches the bottom of the water tank and avoids water flow impact through the baffle, and at the same time, the water guide pipe is used to press the hot water from the bottom to the top, so that the hot water in the two water tanks is fully utilized, and finally the effect of hot water outlet rate greater than 90% is achieved, and the space can be further saved by transverse installation. SUMMARY
[0003] The utility model aims at providing a kind of transverse hanging air energy pressure water tank, solve the problems mentioned in the background art.
[0004] The utility model is realized as follows: a kind of transverse hanging air energy pressure water tank, the transverse hanging air energy pressure water tank includes: right side water tank, left side water tank, bottom water inlet, baffle, water guide pipe, stainless steel pipe and external water tank, right side water tank and left side water tank are arranged in series and are connected by water guide pipe, bottom water inlet is set to right side water tank bottom, baffle is located at bottom water inlet, water guide pipe extends from right side water tank top to left side water tank bottom, stainless steel pipe is inserted left side water tank top, the top of stainless steel pipe is connected with external water tank, and there is three centimeter space in the bottom of external water tank.
[0005] The further technical scheme of the utility model is that the cold water flow direction of bottom water inlet is guided to the bottom area of right side water tank by baffle.
[0006] The further technical scheme of the utility model is that baffle is fixed in right side water tank interior by welding or bolt.
[0007] The further technical scheme of the utility model discloses: the end of the water guide pipe is directly extended to the bottom of the left water tank to ensure that hot water participates in water circulation.
[0008] The further technical scheme of the utility model discloses: the insertion depth of the stainless steel pipe is two centimeters and hot water is guided to the external water tank, and the left water tank and the right water tank are both equipped with a coil pipe.
[0009] The utility model discloses the beneficial effect: through optimizing water flow path and improving water tank structure, the water outlet rate of hot water is improved significantly, and can reach above 90%. The bottom water inlet design effectively reduces the mixing of cold water and hot water, and makes the hot water temperature more stable; The design of the water guide pipe makes full use of the hot water resources in the two water tanks, and avoids resource waste. In addition, the overall structure of the device is compact, adopts a horizontal arrangement mode, and greatly reduces the installation space requirement. In particular, the design of the device is simple and practical, easy to manufacture and maintain, and has high economy and popularization value. BRIEF DESCRIPTION OF DRAWINGS
[0010] Fig. 1 It is the overall structure schematic diagram of the air energy pressure-bearing water tank of the utility model discloses a kind of hanging horizontally;
[0011] Fig. 2 It is the internal coil pipe structure schematic diagram of the air energy pressure-bearing water tank of the utility model discloses a kind of hanging horizontally. DETAILED DESCRIPTION
[0012] The following specific examples illustrate the embodiments of the utility model, and those skilled in the art can easily understand other advantages and effects of the utility model from the disclosure. The utility model can also be implemented or applied by different specific embodiments, and various modifications or changes can be made based on different views and applications without departing from the spirit of the utility model.
[0013] It should be noted that the structure, proportion, size and the like shown in the drawings attached to the present specification are only used to cooperate with the content disclosed in the specification, so that those skilled in the art can understand and read, and are not used to limit the conditions that can be implemented by the utility model, so they do not have technical significance. Any modification of structure, change of proportion relationship or adjustment of size, without affecting the effects and purposes that can be achieved by the utility model, should still fall within the scope of the technical content disclosed by the utility model. At the same time, the terms such as "upper", "lower", "left", "right", "middle" and "one" in the specification are only used to make the description clear, and are not used to limit the scope of the utility model that can be implemented, and the change or adjustment of relative relationship is also regarded as the scope of the utility model that can be implemented without changing the technical content.
[0014] Embodiment one: Figs. 1-2 A horizontal air pressure water tank is shown, the device includes two small water tanks in series, right water tank 4 and left water tank 5, connected by water guide pipe 3 to form an efficient hot water circulation system. The bottom of the right water tank 4 is provided with a bottom water inlet 1, cold water is injected into the water tank through the water inlet. A baffle 2 is provided at the water inlet 1, the baffle 2 changes the flow direction of the cold water, so that it flows along the bottom area of the water tank, avoiding the cold water directly hitting the top and mixing with hot water. This design ensures that cold water can be evenly distributed at the bottom of the water tank, and gradually push the hot water upwards, reducing the premature mixing between cold and hot water, thereby improving the hot water outlet rate; the stainless steel pipe 6 is inserted to a depth of two centimeters and guides the hot water to the outside water tank, and the left and right water tanks are provided with coil pipes 11.
[0015] After the cold water enters the right water tank 4, it naturally sinks to the bottom of the water tank due to gravity. As the water volume increases, the cold water exerts an upward pressure on the hot water. This process fully utilizes the physical properties of water, causing the hot water to be pressed upwards and flow to the left water tank 5 through the water guide pipe 3. The water guide pipe 3 is drawn from the top of the right water tank 4 and extends to the bottom of the left water tank 5, with its end directly inserted into the bottom of the left water tank 5, ensuring that hot water can participate in water flow circulation to the greatest extent. The design of the water guide pipe 3 not only ensures efficient flow of hot water between the two water tanks, but also fully utilizes the hot water resources in the two water tanks, avoiding waste of resources.
[0016] A stainless steel pipe 6 is inserted into the top of the left water tank 5, with an insertion depth of two centimeters. The role of the stainless steel pipe 6 is to guide the hot water into the external water tank, ensuring that the hot water can flow out smoothly. This design controls the flow path of the hot water, making the hot water outlet rate exceed 90%. The length and insertion depth of the stainless steel pipe 6 are accurately calculated to ensure that there is no turbulence in the hot water flow process, while maintaining the stability of the water flow.
[0017] The entire device uses two small water tanks in series, and the two water tanks can be hung on the wall, solving the problem of large space occupation of traditional vertical water tanks. The horizontal arrangement of the water tank not only saves installation space, but also improves the utilization efficiency of hot water, making the entire device suitable for various scenes such as family and business. In actual application, when the user opens the hot water faucet, cold water is injected into the right water tank 4 through the bottom water inlet 1, and the cold water flows along the baffle 2 to the bottom of the water tank and exerts an upward pressure on the hot water. The hot water flows through the water guide pipe 3 to the bottom of the left water tank 5, and is again subjected to the pressure of the cold water flowing upwards in the water tank. Finally, the hot water enters the external water tank through the stainless steel pipe 6 and flows out from the top for the user to use.
[0018] To further illustrate the actual operation process of the device, assume that the user needs to continuously use a large amount of hot water. As cold water continuously flows into the right tank 4 through the bottom inlet 1, the cold water gradually fills the bottom of the tank and pushes the hot water upwards. After the hot water flows into the bottom of the left tank 5 through the water guide pipe 3, it continues to be pressed upwards by the cold water until it enters the external tank through the stainless steel pipe 6. Since there is a three-centimeter space at the bottom of the external tank, the hot water rises fully in this space and flows out from the top, ensuring a stable supply of hot water. In this process, the hot water in both tanks can be fully utilized, avoiding waste of resources. In addition, the design of the baffle 2 effectively reduces the premature mixing of cold and hot water, making the hot water temperature more stable, thereby improving the user's experience.
[0019] Another advantage of the device is its compact structure design. Two small tanks are connected by a water guide pipe 3 and arranged transversely, occupying less space overall, suitable for installation in environments with limited space. For example, in a family kitchen or bathroom, the user can hang the two tanks on the wall, saving floor space and facilitating maintenance and operation. In addition, the structure of the device is simple and practical, easy to manufacture and maintain, with high economic efficiency and promotional value.
[0020] In actual manufacturing, the right tank 4 and the left tank 5 can be made of high-temperature-resistant and corrosion-resistant materials, such as stainless steel or high-strength plastic, to ensure that the device maintains good performance during long-term use. The water guide pipe 3 and the stainless steel pipe 6 are also made of corrosion-resistant materials to prevent chemical reactions during water flow that affect water quality. The baffle 2 can be welded or bolted inside the right tank 4 to ensure its stability under water flow impact. The design of the external tank needs to pay attention to the precise control of the space at the bottom to ensure that the hot water can fully rise in the three-centimeter space and then flow out from the top.
[0021] The device has a wide range of applications and can be used in homes, hotels, hospitals, and other places. For example, in a home environment, the user can install the device in the kitchen or bathroom to provide a stable supply of hot water. In hotels or hospitals and other places, the device can be expanded in terms of hot water supply capacity by connecting multiple tanks in series to meet large-scale hot water demand. In addition, the device can also be used in conjunction with solar water heaters or air energy heat pumps and other equipment to further improve energy utilization efficiency.
[0022] In summary, the utility model discloses through the innovative bottom water inlet design, water guide pipe lengthening to the bottom, baffle design, stainless steel pipe insertion design and outside water tank bottom space design, successfully solved the space occupation big, hot water outlet rate low etc. Problem existing in the prior art. The device improves the hot water outlet rate by optimizing the water flow path and improving the water tank structure, and can reach more than 90%. At the same time, the overall structure of the device is compact, and the horizontal arrangement is adopted, which greatly reduces the installation space requirement. Especially, the device is simple and practical, easy to manufacture and maintain, has high economy and popularization value, is suitable for various application scenes, and has wide application prospect.
[0023] The above only is the preferred embodiment of the utility model, and does not limit the utility model, and any modification, equivalent replacement and improvement etc. within the spirit and principle of the utility model should be included in the protection scope of the utility model.
Claims
1. A horizontal air-pressurized water tank, characterized in that, The transverse air pressure water tank comprises a right water tank (4), a left water tank (5), a bottom water inlet (1), a baffle (2), a water guide pipe (3), a stainless steel pipe (6) and an external water tank, the right water tank (4) and the left water tank (5) are arranged in series in the transverse direction and are connected through the water guide pipe (3), the bottom water inlet (1) is arranged at the bottom of the right water tank (4), the baffle (2) is located at the bottom water inlet (1), the water guide pipe (3) extends from the top of the right water tank (4) to the bottom of the left water tank (5), the stainless steel pipe (6) is inserted into the top of the left water tank (5), and the top end of the stainless steel pipe (6) is connected with the external water tank.
2. A horizontal air-entrapment pressurized water tank according to claim 1, characterized in that, The cold water flow direction of the bottom water inlet (1) is guided to the bottom area of the right water tank (4) by the baffle (2).
3. A horizontal air-pressurized water tank according to claim 1, characterized in that, The baffle (2) is fixed in the right water tank (4) by welding or bolts.
4. A horizontal air-pressurized water tank according to claim 1, characterized in that, The end of the water guide pipe (3) directly extends to the bottom of the left water tank (5) to ensure that hot water participates in water flow circulation.
5. A horizontal air-pressurized water tank according to claim 1, wherein The insertion depth of the stainless steel pipe (6) is two centimeters, and hot water is guided to the external water tank, and coils (11) are arranged in the left water tank and the right water tank.