Hydraulic module system, hydraulic module and air conditioner

By configuring the first and second cycle modules and safety modules in the hydraulic module system, the problem of single working conditions of the existing system is solved, and the application of multiple operating conditions and operating stability is improved, ensuring system safety.

CN223121589UActive Publication Date: 2025-07-18SHANDONG LONGPU SOLAR ENERGY CO LTD
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Patent Information

Application Number
CN202422298186.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-20
Publication Date
2025-07-18
Estimated Expiration
2034-09-20

AI Technical Summary

Technical Problem

The working conditions applicable to existing hydraulic module systems are relatively single.

Method used

The first cycle module and the second cycle module are configured in the hydraulic module system, and a safety module is equipped with a safety module. The safety module starts when the pressure value of the water supply module reaches the preset threshold, and adjusts the pressure of the water supply module to ensure system safety. Combined with the power configuration of different cycle modules and the aperture matching of the water conduit pipes, multiple operating conditions are achieved.

Benefits of technology

It expands the applicable working conditions scenarios of hydraulic module systems, improves the safety and operating stability of the system, enhances the matching degree of different working conditions, and ensures the normal operation of the system when the cycle module fails.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a hydraulic module system, a hydraulic module and an air conditioner, and relates to the technical field of hydraulic modules. The hydraulic module system comprises a water supply module, a first circulation module, a second circulation module and a safety module, and the water supply module is connected with the first circulation module, the second circulation module and the safety module; wherein the water supply module is used for supplying water to the circulating module; the first circulation module is used for providing power for water circulation, so that water enters the first circulation module from the water supply module and flows out of the hydraulic module system through the first circulation module; the second circulation module is used for providing power for water circulation, so that water enters the second circulation module from the water supply module and flows out of the hydraulic module system through the second circulation module; the safety module is started when the pressure value of the water supply module is larger than or equal to a preset pressure threshold value so that the pressure value of the water supply module can be smaller than the preset pressure threshold value. Working condition scenes suitable for the hydraulic module system can be expanded.
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Description

Technical Field

[0001] The utility model relates to the technical field of hydraulic modules, in particular to a hydraulic module system, a hydraulic module and an air conditioner. Background Art

[0002] A hydraulic module is an integrated hydraulic system used to manage, distribute and control a water circuit.

[0003] Currently, the working condition scenarios applicable to existing hydraulic module systems are relatively single. Summary of the Utility Model

[0004] Embodiments of the present application provide a hydraulic module system, a hydraulic module and an air conditioner. A first circulation module and a second circulation module are configured in the hydraulic module system at the same time, so as to expand the working condition scenarios applicable to the hydraulic module system.

[0005] In a first aspect, the present application provides a hydraulic module system, including: a water supply module, a first circulation module, a second circulation module and a safety module. The water supply module is respectively connected to the first circulation module, the second circulation module and the safety module; wherein, the water supply module is used to supply water to the circulation module; the first circulation module is used to provide power for the water body circulation, so that the water body enters the first circulation module from the water supply module and flows out of the hydraulic module system through the first circulation module; the second circulation module is used to provide power for the water body circulation, so that the water body enters the second circulation module from the water supply module and flows out of the hydraulic module system through the second circulation module; the safety module is activated when the pressure value of the water supply module is greater than or equal to a preset pressure threshold, so that the pressure value of the water supply module is less than the preset pressure threshold.

[0006] Optionally, the power of the first circulation module is greater than or equal to the power of the second circulation module.

[0007] Optionally, the connecting pipes between the water supply module, the first circulation module, the second circulation module and the safety module include: polypropylene random copolymer pipes, corrugated pipes, and / or stainless steel pipes.

[0008] Optionally, the safety module is connected to the water supply module by a corrugated pipe; the first circulation module is connected to the water supply module by a stainless steel pipe for hot water circulation; the second circulation module is connected to the water supply module by a polypropylene random copolymer pipe for cold water circulation.

[0009] Second aspect, the present application provides a hydraulic module applicable to the hydraulic module system described in any one of the above, including: a housing, a partition and a base; the housing forms a receiving cavity, and a plurality of uniformly distributed limiting portions are respectively arranged horizontally at the top and bottom of the housing. Among them, the limiting portions arranged at the top of the housing and the limiting portions arranged at the bottom of the housing are in one-to-one correspondence in the vertical direction for arranging the partition; the partition is arranged on the limiting portions to divide the receiving cavity into a first receiving cavity and a second receiving cavity; the first receiving cavity is provided with a safety module, a first circulation module and a second circulation module; the second receiving cavity is provided with a water supply module.

[0010] Optionally, the volume of the first receiving cavity is positively correlated with the sum of the volumes of the first circulation module, the second circulation module and the safety module, and the volume of the second receiving cavity is positively correlated with the volume of the water supply module.

[0011] Optionally, the side wall of the housing is provided with a first water inlet and a second water inlet; among them, the aperture of the first water inlet is positively correlated with the aperture of the first circulation module, and the aperture of the second water inlet is positively correlated with the aperture of the second circulation module.

[0012] Optionally, corresponding to the first receiving cavity of the housing, a door body is provided, and the door body includes: a first door body and a second door body, the first door body and the second door body are arranged on opposite sides, and switches are respectively arranged.

[0013] Optionally, the base includes at least two support seats, and the at least two support seats are arranged in parallel at the bottom of the housing. Among them, the width of one end of the at least two support seats close to the housing is smaller than the width of the end of the support seat far from the housing.

[0014] Third aspect, the present application provides an air conditioner including the hydraulic module described in any one of the above.

[0015] The hydraulic module system, hydraulic module and air conditioner provided by the present application. Among them, the hydraulic module system is applicable to a box-type hydraulic module and includes: a water supply module, a first circulation module, a second circulation module and a safety module. The water supply module is respectively connected to the first circulation module, the second circulation module and the safety module; among them, the water supply module is used to supply water to the circulation module; the first circulation module is used to provide power for the water body circulation, so that the water body enters the first circulation module from the water supply module and flows out of the hydraulic module system through the first circulation module; the second circulation module is used to provide power for the water body circulation, so that the water body enters the second circulation module from the water supply module and flows out of the hydraulic module system through the second circulation module; the safety module is started when the pressure value of the water supply module is greater than or equal to a preset pressure threshold, so that the pressure value of the water supply module is less than the preset pressure threshold. The present application can realize expanding the working condition scenarios applicable to the hydraulic module system.

[0016] Other advantages, objects, and features of the present application will be partly reflected by the following description, and partly will be understood by those skilled in the art through the research and practice of the present application. Description of the Drawings

[0017] By reading the detailed description of the exemplary embodiments below, various other advantages and benefits will become clear to those of ordinary skill in the art. The drawings are only for the purpose of showing the exemplary embodiments and are not considered to be a limitation of the present application. Moreover, throughout the drawings, the same reference numerals are used to represent the same components. In the drawings:

[0018] Figure 1 It is a structural schematic diagram of a hydraulic module system provided by an embodiment of the present application;

[0019] Figure 2 It is another structural schematic diagram of a hydraulic module system provided by an embodiment of the present application;

[0020] Figure 3 It is a structural schematic diagram of a hydraulic module provided by an embodiment of the present application.

[0021] Among them, Figures 1 to 3 The corresponding relationship between the reference numerals and the structural names in the drawings is as follows:

[0022] 1. Hydraulic module;

[0023] 10. Housing; 20. Partition; 30. Base;

[0024] 101. First water inlet; 102. Second water inlet; 103. Door body; 104. Diversion hole; 105. Ear-type union; 106. Transparent cover for the electric control component; 310. Support base;

[0025] 1010. Accommodation cavity; 1011. First accommodation cavity; 1012. Second accommodation cavity

[0026] 100. Hydraulic module system; 110. Water supply module; 120. First circulation module; 130. Second circulation module; 140. Safety module;

[0027] 111. Water tank; 121. First circulation pump; 122. First water pipe group; 131. Second circulation pump; 132. Second water pipe group; 141. Safety control component; 142. Expansion tank;

[0028] 1221. Stainless steel pipe; 1321. Random copolymer polypropylene pipe; 1411. Bellows. Detailed Embodiments

[0029] To better understand the technical solutions provided in the embodiments of this specification, the technical solutions in the embodiments of this specification will be described in detail below with reference to the accompanying drawings and specific embodiments. It should be understood that the specific features in the embodiments of this specification and the embodiments are detailed descriptions of the technical solutions in the embodiments of this specification, rather than limitations on the technical solutions of this specification. Without conflict, the technical features in the embodiments of this specification and the embodiments can be combined with each other.

[0030] In this document, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover a non-exclusive inclusion, such that a process, method, article or device comprising a series of elements includes not only those elements, but also other elements not expressly listed, or elements inherent to such process, method, article or device. Without further limitation, an element defined by the phrase "comprising a..." does not exclude the presence of additional identical elements in the process, method, article or device comprising the element. The term "more than two" includes two or more than two.

[0031] A Hydraulic Module is an integrated hydraulic system for implementing the management, distribution, and control of a water circuit.

[0032] Currently, the working condition scenarios applicable to existing hydraulic module systems are relatively single.

[0033] In view of this, the embodiments of the present application provide a hydraulic module system, a hydraulic module, and an air conditioner. A first circulation module and a second circulation module are simultaneously configured in the hydraulic module system, thereby realizing the expansion of the working condition scenarios applicable to the hydraulic module system.

[0034] In the first aspect of the embodiments of the present application, a hydraulic module system is proposed. Figure 1 It is a structural schematic diagram of the hydraulic module system provided in the embodiments of the present application, as Figure 1As shown, the hydraulic module system 100 includes: a water supply module 110, a first circulation module 120, a second circulation module 130, and a safety module 140. The water supply module 110 is respectively connected to the first circulation module 120, the second circulation module 130, and the safety module 140. Among them, the water supply module 110 is used to supply water to the circulation module; the first circulation module 120 is used to provide power for water body circulation, so that the water body enters the first circulation module 120 from the water supply module 110 and flows out of the hydraulic module system 100 through the first circulation module 120; the second circulation module 130 is used to provide power for water body circulation, so that the water body enters the second circulation module 130 from the water supply module 110 and flows out of the hydraulic module system 100 through the second circulation module 130; the safety module 140 is activated when the pressure value of the water supply module 110 is greater than or equal to a preset pressure threshold, so that the pressure value of the water supply module 110 is less than the preset pressure threshold.

[0035] Exemplarily, the above-mentioned water supply module 110 includes: a water tank 111. The above-mentioned first circulation module 120 may include: a first circulation pump 121, a first water pipe group 122, and a first valve body.

[0036] In some feasible embodiments, one end of the above-mentioned first water pipe group 122 is connected to the above-mentioned water tank 111, and the other end leads the water body out of the hydraulic module system 100 through the above-mentioned first circulation pump 121. Among them, a first valve body is provided between the above-mentioned water tank 111 and the above-mentioned first circulation pump 121 in the above-mentioned first water pipe group 122, which is used to regulate the water flow rate and / or flow volume of the water body entering the above-mentioned first circulation pump 121 from the water tank 111.

[0037] Exemplarily, the above-mentioned second circulation module 130 may include: a second circulation pump 131, a second water pipe group 132, and a second valve body.

[0038] In some feasible embodiments, one end of the above-mentioned second water pipe group 132 is connected to the above-mentioned water tank 111, and the other end leads the water body out of the hydraulic module system 100 through the above-mentioned second circulation pump 131. Among them, a second valve body is provided between the above-mentioned water tank 111 and the above-mentioned second circulation pump 131 in the above-mentioned second water pipe group 132, which is used to regulate the water flow rate and / or flow volume of the water body entering the above-mentioned second circulation pump 131 from the water tank 111.

[0039] Exemplarily, the above-mentioned safety module 140 may include an electric control component. Among them, the safety control component 141 includes: a pressure gauge, an exhaust valve, and a pressure relief valve.

[0040] In some feasible embodiments, when the pressure value of the water tank 111 detected by the above-mentioned pressure gauge is greater than or equal to a preset pressure threshold, the above-mentioned exhaust valve and / or pressure relief valve is activated, so that the pressure value of the water tank 111 is less than the preset pressure threshold.

[0041] In some feasible embodiments, the above-mentioned electronic control component can be used to cut off the power supply of the above-mentioned water conservancy module system when the pressure value of the water tank 111 detected by the pressure gauge is greater than or equal to the preset pressure threshold, so as to protect each hardware in the water conservancy module system 100.

[0042] It should be noted that the above-mentioned safety module 140 may further include: an expansion tank 142. Wherein, during the operation of the above-mentioned water conservancy module, the above-mentioned expansion tank 142 is always in a working state to absorb the volume expansion of the water body in the water tank 111 due to temperature rise, and maintain the pressure value in the above-mentioned water tank 111 less than the preset pressure threshold. Wherein, the above-mentioned preset pressure threshold can be set according to the actual needs of the user and will not be specifically limited here.

[0043] Based on this, the water conservancy module system 100 proposed in this application includes: a water supply module 110, a first circulation module 120, a second circulation module 130, and a safety module 140. The water supply module 110 is respectively connected to the first circulation module 120, the second circulation module 130, and the safety module 140; wherein, the water supply module 110 is used to supply water to the circulation module; the first circulation module 120 is used to provide power for the water body circulation, so that the water body enters the first circulation module 120 from the water supply module 110 and flows out of the water conservancy module system 100 through the first circulation module 120; the second circulation module 130 is used to provide power for the water body circulation, so that the water body enters the second circulation module 130 from the water supply module 110 and flows out of the water conservancy module system 100 through the second circulation module 130; the safety module 140 is activated when the pressure value of the water supply module 110 is greater than or equal to the preset pressure threshold, so that the pressure value of the water supply module 110 is less than the preset pressure threshold. By configuring the first circulation module 120 and the second circulation module 130 at the same time, this application can expand the working condition scenarios applicable to the water conservancy module system 100, and by configuring the safety module 140, it can maintain the internal pressure environment of the water supply module 110 and improve the safety during the operation of the water conservancy module system 100.

[0044] In some feasible embodiments, the power of the first circulation module 120 is greater than or equal to the power of the second circulation module 130.

[0045] Exemplarily, the power of the above-mentioned first circulation module 120 is approximately equal to the power of the above-mentioned first circulation pump 121, and the power of the above-mentioned second circulation module 130 is approximately equal to the power of the above-mentioned second circulation pump 131.

[0046] It should be noted that the above-mentioned first circulation module 120 and the above-mentioned second circulation module 130 can be enabled simultaneously or separately to match different working condition requirements.

[0047] It should be noted that in the case of a failure of the first circulation module 120 or the second circulation module 130, the other circulation module can be enabled to ensure the normal operation of the hydraulic module system 100.

[0048] Based on this, the above-mentioned hydraulic module system 100 is configured with a first circulation module 120 and a second circulation module 130, wherein the power of the first circulation module 120 is greater than or equal to the power of the second circulation module 130. On the one hand, it is beneficial to expand the applicable working conditions of the hydraulic module system 100 of the present application and improve the matching degree of the hydraulic module system 100 of the present application for different working condition scenarios. On the other hand, in the case of a sudden damage to the circulation module, the other circulation module can be enabled to ensure the normal operation of the hydraulic module system 100.

[0049] In some feasible embodiments, the above-mentioned first water pipe group 122 and the above-mentioned second water pipe group 132 can be connected by a plurality of water pipes. Among them, the aperture of the above-mentioned first water pipe group 122 is positively correlated with the power of the first circulation module 120, and the aperture of the above-mentioned second water pipe group 132 is positively correlated with the power of the second circulation module 130.

[0050] It should be noted that by setting the aperture of the first water pipe group 122 to be positively correlated with the power of the first circulation module 120, it can be realized that when the first circulation module 120 is enabled, the water inflow of the water supply module 110 and the water inflow of the first circulation module 120 are matched with the power of the first circulation module 120; by setting the aperture of the second water pipe group 132 to be positively correlated with the power of the second circulation module 130, it can be realized that when the second circulation module 130 is enabled, the water inflow of the water supply module 110 and the water inflow of the second circulation module 130 are matched with the power of the second circulation module 130, so as to ensure the stable operation of the hydraulic module.

[0051] It should be noted that the above-mentioned first circulation module 120 and the above-mentioned second circulation module 130 can also be enabled simultaneously according to the actual needs of the user. Exemplarily, when the first circulation module 120 and the above-mentioned second circulation module 130 are enabled simultaneously, a part of the water in the water supply module 110 enters the first circulation module 120 and then flows out of the above-mentioned hydraulic module system 100, and another part of the water enters the second circulation module 130 and then flows out of the above-mentioned hydraulic module system 100, so as to meet the user's needs, improve the user experience, and expand the applicable working conditions of the water conservancy module system.

[0052] In some feasible embodiments, the connecting pipes between the water supply module 110, the first circulation module 120, the second circulation module 130, and the safety module 140 include: polypropylene random copolymer pipes 1321 (Polypropylene Random Copolymer Pipe, PP-R pipes), corrugated pipes 1411, and / or stainless steel pipes 1221.

[0053] It should be noted that the polypropylene random copolymer pipes 1321 have good heat resistance and corrosion resistance and can be applicable to the high-temperature and highly corrosive installation environments in the hydraulic module system 100; the corrugated pipes 1411 have good bending properties and can be applicable to the complex installation environments in the hydraulic module system 100 that require bending or bypassing obstacles; the stainless steel pipes 1221 have good corrosion resistance and compressive properties and can be applicable to the installation environments in the hydraulic module system 100 with strong corrosion and relatively high pressure.

[0054] In some feasible embodiments, the safety module 140 is connected to the water supply module 110 by the corrugated pipe 1411; the first circulation module 120 is connected to the water supply module 110 by the stainless steel pipe 1221 for hot water circulation; the second circulation module 130 is connected to the water supply module 110 by the polypropylene random copolymer pipe 1321 for cold water circulation.

[0055] It should be noted that the connection between the safety module 140 and the water supply module 110 by the corrugated pipe 1411 can achieve bypassing the water conduit group in the complex installation environment of the water conservancy module system and adjusting the pressure environment in the water supply module 110 in real time to ensure the safe operation of the water supply module 110 system. The connection between the first circulation module 120 and the water supply module 110 by the stainless steel pipe 1221 enables the first circulation module 120 to be applicable to the hot water circulation process in the hydraulic module. The connection between the second circulation module 130 and the water supply module 110 by the polypropylene random copolymer pipe 1321 enables the second circulation module 130 to be applicable to the cold water circulation process in the hydraulic module, thereby improving the applicability of the hydraulic module system 100 of the present application.

[0056] In the second aspect of the embodiments of the present application, the present application provides a hydraulic module 1, which is applicable to the hydraulic module system 100 described in any one of the above, and includes: a housing 10, a partition 20 and a base 30; the housing 10 forms a receiving cavity 1010, and a plurality of uniformly distributed limiting portions are respectively arranged along the horizontal direction at the top and bottom of the housing 10. Among them, the limiting portions arranged at the top of the housing 10 and the limiting portions arranged at the bottom of the housing 10 correspond to each other in the vertical direction for arranging the partition 20; the partition 20 is arranged at the limiting portions, dividing the receiving cavity 1010 into a first receiving cavity 1011 and a second receiving cavity 1012; a safety module, a first circulation module and a second circulation module are arranged in the first receiving cavity 1011; a water supply module is arranged in the second receiving cavity 1012.

[0057] Exemplarily, the above-mentioned first receiving cavity 1011 may be sequentially provided with a safety module, a first circulation module and a second circulation module from top to bottom to improve the rationality of the hardware arrangement in the first receiving cavity 1011.

[0058] In some feasible embodiments, the limiting portions of the partition 20 may be correspondingly selected according to the hardware volume requirements in the first receiving cavity 1011 and the hardware volume requirements in the second receiving cavity 1012, so as to improve the matching degree between the volume of the first receiving cavity 1011 and the hardware volume in the first receiving cavity 1011, and the matching degree between the volume of the second receiving cavity 1012 and the hardware volume in the second receiving cavity 1012.

[0059] Based on this, the hydraulic module 1 provided by the present application is provided with a plurality of uniformly distributed limiting portions along the horizontal direction at the top and bottom of the housing 10 for arranging the partition 20. The partition 20 divides the receiving cavity formed in the housing 10 into a first receiving cavity 1011 and a second receiving cavity 1012; a water supply module is arranged in the second receiving cavity 1012; which is beneficial to improving the integration of the hydraulic module 1, reducing the volume of the hydraulic module 1, reducing the transportation cost of the hydraulic module 1, and expanding the working conditions applicable to the housing 10 of the hydraulic module 1.

[0060] In some feasible embodiments, the volume of the first receiving cavity 1011 is positively correlated with the sum of the volumes of the first circulation module, the second circulation module and the safety module, and the volume of the second receiving cavity 1012 is positively correlated with the volume of the water supply module.

[0061] Exemplarily, the limiting portions at the top and bottom of the housing 10 where the partition 20 is provided can be selected according to the sum of the volumes of the first circulation module, the second circulation module, and the safety module and the volume of the water supply module, so as to improve the matching degree between the volume of the first accommodation cavity 1011 and the sum of the volumes of the first circulation module, the second circulation module, and the safety module, and the matching degree between the volume of the second accommodation cavity 1012 and the volume of the water supply module, thereby improving the integration of the hydraulic module 1 and the space utilization rate of the accommodation cavities inside the hydraulic module 1.

[0062] In some feasible embodiments, the side wall of the housing 10 is provided with a first water inlet 101 and a second water inlet 102; wherein, the aperture of the first water inlet 101 is positively correlated with the aperture of the first circulation module, and the aperture of the second water inlet 102 is positively correlated with the aperture of the second circulation module.

[0063] It should be noted that the above-mentioned water supply module is also provided with a plurality of water inlets, and the positions of the plurality of water inlets correspond to the first water inlet 101 and the second water inlet 102 respectively, so as to enable water to enter the water supply module from the outside.

[0064] Based on this, for the hydraulic module 1 provided in the present application, by setting the aperture of the first water inlet 101 to be positively correlated with the aperture of the first circulation module, it is beneficial to improve the water inflow and inflow rate of the water supply module, and the matching degree between the water inflow and inflow rate of the first circulation module and the power of the first circulation pump; by setting the aperture of the second water inlet 102 to be positively correlated with the aperture of the second circulation module, it is beneficial to improve the water inflow and inflow rate of the water supply module, and the matching degree between the water inflow and inflow rate of the second circulation module and the power of the second circulation pump, thereby improving the operating efficiency of the hydraulic module 1.

[0065] In some feasible embodiments, the housing 10 is provided with a door body 103 corresponding to the first accommodation cavity 1011. The door body 103 includes: a first door body and a second door body, which are arranged on opposite sides and are respectively provided with switches.

[0066] Exemplarily, the first door body and the second door body can be connected to the housing 10 through hinges. It should be noted that the type of the above-mentioned switch can be selected according to the needs of the user, and no specific limitation is made here.

[0067] It should be noted that the hydraulic module 1 provided in the present application is provided with a door body 103 corresponding to the first accommodation cavity 1011. The door body 103 includes a first door body and a second door body, which are arranged on opposite sides and are respectively provided with switches, which is beneficial to facilitate the two-way maintenance of the first circulation module and the second circulation module.

[0068] In some possible embodiments, the base 30 includes at least two support seats 310, and the at least two support seats 310 are arranged in parallel at the bottom of the housing 10. Among them, the width of the at least two support seats 310 at the end close to the housing 10 is smaller than the width of the support seats 310 at the end far from the housing 10.

[0069] Exemplarily, the cross-section of the above-mentioned support seat 310 is in an inverted "trapezoid" or inverted "several" shape. Specifically, both ends of the at least two support seats 310 can be fixed to the above-mentioned base 30 by bolts.

[0070] Alternatively, the above-mentioned base 30 can also be a single wooden brace structure.

[0071] Based on this, the hydraulic module 1 provided in this application has at least two support seats 310 arranged in parallel at the bottom of the housing 10. Among them, the width of the at least two support seats 310 at the end close to the housing 10 is smaller than the width of the support seats 310 at the end far from the housing 10, which is beneficial to providing stable support for the hydraulic module 1.

[0072] In some possible embodiments, a diversion hole 104 can also be opened at the bottom of the housing 10 to facilitate the diversion of water from the above-mentioned hydraulic module 1.

[0073] In some possible embodiments, corresponding to the first accommodation cavity 1011, heat insulation cotton can be respectively provided on the inner wall of the above-mentioned housing 10 and the above-mentioned water pipe group to achieve heat insulation and sound insulation and prevent water condensation.

[0074] In some possible embodiments, the above-mentioned housing 10 can also be provided with a threaded coupling with ears 105 to improve the firmness of pipe fitting connection and fixation.

[0075] In some possible embodiments, the housing 10 can be provided with an electronic control component transparent cover 106, and the above-mentioned transparent cover adopts a windowed design to facilitate electronic control operation.

[0076] In the third aspect of the embodiments of this application, an air conditioner is proposed, which includes the hydraulic module 1 described in any one of the above.

[0077] Those of ordinary skill in the art can understand the specific details and beneficial effects of the hydraulic module and the air conditioner by reading the above relevant descriptions of the hydraulic module. For the sake of brevity, they will not be elaborated here.

[0078] It should be noted that in the above embodiments, the descriptions of each embodiment have their own emphases. For the parts not described in detail in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.

[0079] The above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

[0080] Although the preferred embodiments of this specification have been described, those skilled in the art can make additional changes and modifications once they learn the basic creative concepts. Therefore, the appended claims are intended to be construed to include the preferred embodiments and all changes and modifications that fall within the scope of this specification.

[0081] Obviously, those skilled in the art can make various changes and modifications to this specification without departing from the spirit and scope of this specification. Thus, if these modifications and variations of this specification fall within the scope of the claims of this specification and their equivalent technologies, this specification is also intended to include these modifications and variations.

Claims

1. A hydraulic module system, characterized in that, The hydraulic module system includes: a water supply module, a first circulation module, a second circulation module, and a safety module, wherein the water supply module is respectively connected to the first circulation module, the second circulation module, and the safety module; wherein the water supply module is used to supply water to the circulation module; the first circulation module is used to provide power for water circulation, so that water enters the first circulation module from the water supply module and flows out of the hydraulic module system through the first circulation module; the second circulation module is used to provide power for water circulation, so that water enters the second circulation module from the water supply module and flows out of the hydraulic module system through the second circulation module; the safety module is activated when the pressure value of the water supply module is greater than or equal to a preset pressure threshold, so that the pressure value of the water supply module is less than the preset pressure threshold.

2. The hydraulic module system according to claim 1, characterized in that, The power of the first circulation module is greater than or equal to the power of the second circulation module.

3. The hydraulic module system according to claim 1, characterized in that, The connecting pipes between the water supply module, the first circulation module, the second circulation module, and the safety module include: polypropylene random copolymer pipes, corrugated pipes, and / or stainless steel pipes.

4. The hydraulic module system according to claim 3, wherein The safety module and the water supply module are connected by the corrugated pipe; The first circulation module and the water supply module are connected by the stainless steel pipe for hot water circulation; The second circulation module and the water supply module are connected by the polypropylene random copolymer pipe for cold water circulation.

5. A hydraulic module, characterized in that, Suitable for the hydraulic module system according to any one of claims 1 to 4, including: a housing, a partition, and a base; the housing forms a receiving cavity, and a plurality of uniformly distributed limiting parts are respectively arranged horizontally at the top and bottom of the housing. Among them, the limiting parts arranged at the top of the housing and the limiting parts arranged at the bottom of the housing correspond to each other in the vertical direction for arranging the partition; the partition is arranged on the limiting parts, dividing the receiving cavity into a first receiving cavity and a second receiving cavity; the first receiving cavity is provided with the safety module, the first circulation module, and the second circulation module; the second receiving cavity is provided with the water supply module.

6. The hydraulic module according to claim 5, characterized in that The volume of the first receiving cavity is positively correlated with the sum of the volumes of the first circulation module, the second circulation module, and the safety module, and the volume of the second receiving cavity is positively correlated with the volume of the water supply module.

7. The hydraulic module according to claim 6, characterized in that The side wall of the housing is provided with a first water inlet and a second water inlet; wherein, the aperture of the first water inlet is positively correlated with the aperture of the first circulation module, and the aperture of the second water inlet is positively correlated with the aperture of the second circulation module.

8. The hydraulic module according to claim 7, characterized in that, Corresponding to the first receiving cavity of the housing, a door body is provided. The door body includes: a first door body and a second door body, and the first door body and the second door body are arranged on opposite sides and are respectively provided with switches.

9. The hydraulic module according to claim 8, characterized in that, The base includes at least two support seats, and the at least two support seats are arranged in parallel at the bottom of the housing. Among them, the width of one end of the at least two support seats close to the housing is smaller than the width of the end of the support seat far from the housing.

10. An air conditioner, characterized in that, Including the hydraulic module according to any one of claims 5 to 9.