Method and apparatus for controlling mineral addition to a spa pool
By acquiring users' soaking needs and water output control parameters, and combining water quality and microbial action, the mineral addition in the hot spring pool machine is precisely controlled, solving the problem of inaccurate mineral addition and improving the soaking effect and user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- GUANGDONG WOTECH RENEWABLE ENERGY & TECH CO LTD
- Filing Date
- 2024-07-26
- Publication Date
- 2026-07-24
AI Technical Summary
The existing methods for adding minerals to hot spring pool machines are not precise enough, resulting in unstable soaking effects and affecting the user experience.
By acquiring user soaking needs parameters and the water output control parameters of the hot spring pool machine, mineral addition control parameters are determined, including the amount, type, and time of mineral addition. Combined with water quality parameters and the relationship between microbial activity, mineral addition is precisely controlled.
This improves the reliability and precision of mineral addition, enhancing the hot spring soaking experience and user experience.
Smart Images

Figure CN118954759B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of hot spring swimming pool machine technology, and in particular to a method and device for controlling the addition of minerals to a hot spring swimming pool machine. Background Technology
[0002] With people's increasing pursuit of a healthy, comfortable, and environmentally friendly lifestyle, the hot spring swimming pool equipment industry has ushered in unprecedented development opportunities. Currently, when users soak in hot spring swimming pool machines to relieve fatigue, the minerals used are generally added in fixed quantities and at fixed times. However, through practice, it has been found that because the soaking environment changes frequently, using a fixed addition method can easily lead to inaccurate mineral addition, and may even cause changes in the properties of the minerals, thus affecting the user's hot spring soaking experience. Therefore, providing a method to improve the accuracy of mineral addition control in hot spring swimming pool machines is particularly important. Summary of the Invention
[0003] This invention provides a method and device for controlling the addition of minerals in a hot spring swimming pool machine, which helps to improve the reliability, accuracy and timeliness of mineral addition in the hot spring swimming pool machine, thereby improving the user's hot spring soaking effect and enhancing the user's hot spring experience.
[0004] To address the aforementioned technical problems, the first aspect of this invention discloses a method for controlling the addition of minerals to a hot spring swimming pool machine, the method comprising:
[0005] The user's soaking needs parameters and the water output control parameters of the hot spring pool machine are obtained; the soaking needs parameters include at least one of soaking time requirements, soaking efficacy requirements, and soaking position requirements; the water output control parameters include at least one of water output control parameters, water output temperature control parameters, and water circulation time parameters.
[0006] Based on the soaking requirement parameters and the water output control parameters, the mineral addition control parameters of the hot spring pool machine are determined; the mineral addition control parameters include at least one of the following: mineral addition amount control parameters, mineral addition type control parameters, and mineral addition time control parameters.
[0007] According to the mineral addition control parameters, the required target minerals are added to the water to be treated corresponding to the hot spring pool machine to obtain the target effluent, which is then used by the user for soaking.
[0008] As an optional implementation, in the first aspect of the present invention, determining the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the water outlet control parameters includes:
[0009] When the water outlet control parameters include the water outlet temperature control parameters, the first water quality parameters of the hot spring pool machine are obtained; the first water quality parameters include at least one of water hardness parameters, water pH parameters, and chemical element content parameters.
[0010] Based on the first water quality parameters and the outlet water temperature control parameters, determine the preset chemical changes for each mineral; the chemical changes include changes in compound composition and / or the time of chemical changes.
[0011] Based on the chemical changes corresponding to each of the minerals, the changes in the first soaking efficacy corresponding to each of the minerals are determined, and based on the soaking requirement parameters and the changes in the first soaking efficacy corresponding to all the minerals, the mineral addition control parameters of the hot spring pool machine are determined.
[0012] As an optional implementation, in the first aspect of the present invention, the method further includes:
[0013] Obtain the target parameters of the water to be treated corresponding to the hot spring pool machine; the target parameters include the current mineral type parameter and / or the current mineral concentration parameter.
[0014] Based on the effluent temperature control parameters and the target parameters of the water to be treated, determine the physical changes corresponding to each mineral; the physical changes include dissolution changes and / or precipitation changes;
[0015] Based on the physical changes corresponding to each mineral, the changes in the second soaking efficacy corresponding to each mineral are determined. Based on the soaking requirement parameters and the changes in the second soaking efficacy corresponding to all the minerals, the mineral addition control parameters of the hot spring pool machine are determined.
[0016] As an optional implementation, in the first aspect of the invention, before determining the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the water outlet control parameters, the method further includes:
[0017] When the outlet water control parameters include the outlet water temperature control parameters, the basic parameters of the microorganisms in the water to be treated corresponding to the hot spring pool machine are obtained; the basic parameters include at least one of the species parameters, content parameters, and activity parameters.
[0018] Based on the basic parameters of the microorganisms and the effluent temperature control parameters, a preset target interaction relationship between each mineral and the microorganisms is determined, and based on the target interaction relationship, it is determined whether the degree of influence corresponding to the target interaction relationship is greater than or equal to a preset degree of influence threshold.
[0019] When it is determined that the degree of influence is less than the threshold of influence, the mineral addition control parameters of the hot spring pool machine are determined according to the soaking requirement parameters and the water output control parameters.
[0020] When it is determined that the degree of influence is greater than or equal to the threshold of influence, the mineral addition control parameters of the hot spring pool machine are determined according to the target effect relationship, the soaking requirement parameters, and the water output control parameters.
[0021] As an optional implementation, in the first aspect of the present invention, determining the preset target interaction relationship between each mineral and the microorganism based on the basic parameters of the microorganism and the effluent temperature control parameters includes:
[0022] The second water quality parameters of the hot spring pool machine are obtained; the second water quality parameters include at least one of water pH, water dissolved oxygen, and redox potential.
[0023] The target conditions of the microorganisms are determined based on the second water quality parameters, the basic parameters of the microorganisms, and the effluent temperature control parameters; the target conditions include reproduction and / or metabolism.
[0024] Based on the target conditions of the microorganisms, a pre-defined target interaction relationship between each mineral and the microorganisms is determined.
[0025] As an optional implementation, in the first aspect of the present invention, determining the preset target interaction relationship between each mineral and the microorganism based on the target situation of the microorganism includes:
[0026] For each preset mineral, based on the target situation of the microorganism, the material transformation situation produced by the microorganism based on the mineral is determined, and based on the material transformation situation, the final situation of the mineral is determined; the material transformation situation includes the material synthesis situation and / or the material decomposition situation, and the final situation includes the final content situation and / or the final distribution situation;
[0027] For each mineral, the target interaction relationship between each mineral and the microorganism is determined based on the material transformation produced by the microorganism based on the mineral and the final state of the mineral.
[0028] As an optional implementation, in the first aspect of the invention, before determining the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the water outlet control parameters, the method further includes:
[0029] The user's physiological parameters are acquired, and based on these parameters, the user's physiological changes during immersion are predicted; the physiological parameters include at least one of heart rate parameters, respiratory parameters, and health parameters.
[0030] Based on the physiological changes, the soaking requirements, and the water output control parameters, the mineral addition control parameters of the hot spring pool machine are determined.
[0031] A second aspect of this invention discloses a mineral addition control device for a hot spring swimming pool machine, the device comprising:
[0032] The acquisition module is used to acquire the user's soaking requirement parameters and the water output control parameters of the hot spring pool machine; the soaking requirement parameters include at least one of the soaking time requirement parameters, soaking efficacy requirement parameters, and soaking position requirement parameters, and the water output control parameters include at least one of the water output control parameters, water output temperature control parameters, and water output circulation time parameters.
[0033] The first determining module is used to determine the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the water output control parameters; the mineral addition control parameters include at least one of the following: mineral addition amount control parameters, mineral addition type control parameters, and mineral addition time control parameters.
[0034] The addition module is used to add the required target minerals to the water to be treated corresponding to the hot spring pool machine according to the mineral addition control parameters, so as to obtain the target water for the user to soak in.
[0035] As an optional implementation, in a second aspect of the present invention, the first determining module includes:
[0036] The acquisition submodule is used to acquire the first water quality parameters of the hot spring pool machine when the water outlet control parameters include the water outlet temperature control parameters; the first water quality parameters include at least one of water hardness parameters, water pH parameters, and chemical element content parameters.
[0037] The determination submodule is used to determine the chemical change situation corresponding to each preset mineral based on the first water quality parameters and the outlet temperature control parameters; the chemical change situation includes the change situation of compound composition and / or the chemical change time; based on the chemical change situation corresponding to each mineral, the change situation of the first soaking effect corresponding to each mineral is determined, and based on the soaking requirement parameters and the change situation of the first soaking effect corresponding to all minerals, the mineral addition control parameters of the hot spring pool machine are determined.
[0038] As an optional implementation, in a second aspect of the invention, the acquisition submodule is further configured to:
[0039] Obtain the target parameters of the water to be treated corresponding to the hot spring pool machine; the target parameters include the current mineral type parameter and / or the current mineral concentration parameter.
[0040] The determining submodule is further configured to determine the physical changes corresponding to each mineral based on the outlet water temperature control parameters and the target parameters of the water to be treated; the physical changes include dissolution changes and / or precipitation changes; based on the physical changes corresponding to each mineral, determine the changes in the second soaking efficacy corresponding to each mineral; and based on the soaking requirement parameters and the changes in the second soaking efficacy corresponding to all minerals, determine the mineral addition control parameters of the hot spring pool machine.
[0041] As an optional implementation, in a second aspect of the invention, the acquisition module is further configured to:
[0042] Before the first determining module determines the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the water outlet control parameters, when the water outlet control parameters include the water outlet temperature control parameters, the basic parameters of the microorganisms in the water to be treated corresponding to the hot spring pool machine are obtained; the basic parameters include at least one of the following: type parameters, content parameters, and activity parameters.
[0043] The device further includes:
[0044] The second determining module is used to determine the preset target interaction relationship between each mineral and the microorganism based on the basic parameters of the microorganism and the effluent temperature control parameters.
[0045] The judgment module is used to determine whether the degree of influence corresponding to the target interaction relationship is greater than or equal to a preset degree of influence threshold based on the target interaction relationship.
[0046] The first determining module is further configured to determine the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the water output control parameters when the judging module determines that the degree of influence is less than the degree of influence threshold.
[0047] The second determining module is further configured to determine the mineral addition control parameters of the hot spring pool machine based on the target action relationship, the soaking requirement parameters, and the water output control parameters when the judging module determines that the degree of influence is greater than or equal to the degree of influence threshold.
[0048] As an optional implementation, in a second aspect of the present invention, the method by which the second determining module determines the preset target interaction relationship between each mineral and the microorganism based on the basic parameters of the microorganism and the effluent temperature control parameters specifically includes:
[0049] The second water quality parameters of the hot spring pool machine are obtained; the second water quality parameters include at least one of water pH, water dissolved oxygen, and redox potential.
[0050] The target conditions of the microorganisms are determined based on the second water quality parameters, the basic parameters of the microorganisms, and the effluent temperature control parameters; the target conditions include reproduction and / or metabolism.
[0051] Based on the target conditions of the microorganisms, a pre-defined target interaction relationship between each mineral and the microorganisms is determined.
[0052] As an optional implementation, in a second aspect of the present invention, the method by which the second determining module determines the preset target interaction relationship between each mineral and the microorganism based on the target situation of the microorganism specifically includes:
[0053] For each preset mineral, based on the target situation of the microorganism, the material transformation situation produced by the microorganism based on the mineral is determined, and based on the material transformation situation, the final situation of the mineral is determined; the material transformation situation includes the material synthesis situation and / or the material decomposition situation, and the final situation includes the final content situation and / or the final distribution situation;
[0054] For each mineral, the target interaction relationship between each mineral and the microorganism is determined based on the material transformation produced by the microorganism based on the mineral and the final state of the mineral.
[0055] As an optional implementation, in a second aspect of the invention, the acquisition module is further configured to:
[0056] Before the first determining module determines the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the water outlet control parameters, the user's physiological parameters are obtained.
[0057] The device further includes:
[0058] The third determining module determines the user's physiological changes during soaking based on the physiological parameters; the physiological parameters include at least one of heart rate parameters, respiratory parameters, and health parameters; and determines the mineral addition control parameters of the hot spring pool machine based on the physiological changes, the soaking requirement parameters, and the water output control parameters.
[0059] A third aspect of the present invention discloses another mineral addition control device for a hot spring swimming pool machine, the device comprising:
[0060] Memory containing executable program code;
[0061] A processor coupled to the memory;
[0062] The processor calls the executable program code stored in the memory to execute the mineral addition control method for the hot spring swimming pool machine disclosed in the first aspect of the present invention.
[0063] The fourth aspect of the present invention discloses a computer storage medium storing computer instructions, which, when invoked, are used to execute the mineral addition control method for the hot spring swimming pool machine disclosed in the first aspect of the present invention.
[0064] Compared with the prior art, the embodiments of the present invention have the following beneficial effects:
[0065] In this embodiment of the invention, the user's soaking needs and the water output control parameters of the hot spring pool machine are obtained. Based on these parameters, the mineral addition control parameters are determined. According to these parameters, the desired target minerals are added to the corresponding water to be treated in the hot spring pool machine to obtain the target output water, which is then provided to the user for soaking. Therefore, implementing this invention allows for the determination of mineral addition control parameters based on the user's soaking needs and the water output control parameters of the hot spring pool machine. This improves the reliability, accuracy, and timeliness of mineral addition, thereby enhancing the user's hot spring soaking experience and overall hot spring usage experience. Attached Figure Description
[0066] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0067] Figure 1 This is a schematic flowchart of a mineral addition control method for a hot spring swimming pool machine disclosed in an embodiment of the present invention;
[0068] Figure 2 This is a schematic flowchart of another mineral addition control method for a hot spring swimming pool machine disclosed in an embodiment of the present invention;
[0069] Figure 3 This is a schematic diagram of the structure of a mineral addition control device for a hot spring swimming pool machine disclosed in an embodiment of the present invention;
[0070] Figure 4 This is a schematic diagram of the structure of a mineral addition control device for another hot spring swimming pool machine disclosed in an embodiment of the present invention;
[0071] Figure 5 This is a schematic diagram of the structure of a mineral addition control device for a hot spring swimming pool machine disclosed in another embodiment of the present invention. Detailed Implementation
[0072] To enable those skilled in the art to better understand the present invention, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0073] The terms "first," "second," etc., used in the specification, claims, and accompanying drawings of this invention are used to distinguish different objects, not to describe a specific order. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion. For example, a process, method, apparatus, product, or end that includes a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units not listed, or may optionally include other steps or units inherent to these processes, methods, products, or ends.
[0074] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0075] This invention discloses a method and device for controlling the addition of minerals in a hot spring pool machine, which helps to improve the reliability, accuracy and timeliness of adding minerals to the hot spring pool machine, thereby improving the user's hot spring soaking effect and enhancing the user's hot spring experience.
[0076] Example 1
[0077] Please see Figure 1 , Figure 1 This is a schematic flowchart illustrating a mineral addition control method for a hot spring swimming pool machine disclosed in an embodiment of the present invention. Optionally, this method can be implemented by a mineral addition control device, which can be integrated into the hot spring swimming pool machine (such as the hot spring generator of the hot spring swimming pool machine). When the mineral addition control device exists independently, it can also be a local server or cloud server, etc., used to process the mineral addition control process of the hot spring swimming pool machine. The embodiments of the present invention do not impose limitations. Figure 1 As shown, the mineral addition control method of this hot spring pool machine may include the following operations:
[0078] 101. Obtain the soaking needs parameters of the users of the hot spring pool machine and the water output control parameters of the hot spring pool machine.
[0079] In this embodiment of the invention, optionally, the soaking requirement parameters include at least one of the following: soaking duration requirement parameters, soaking efficacy requirement parameters (such as relieving fatigue, promoting metabolism, etc.), and soaking location requirement parameters. Further optionally, the water output control parameters include at least one of the following: water output volume control parameters, water output temperature control parameters, and water circulation time parameters.
[0080] 102. Determine the mineral addition control parameters for the hot spring pool machine based on the soaking requirements and water output control parameters.
[0081] In this embodiment of the invention, optionally, the mineral addition control parameters include at least one of the following: mineral addition amount control parameters, mineral addition type control parameters (such as silicate minerals, carbonate minerals, sulfate minerals, chloride minerals, etc. that need to be added), and mineral addition time control parameters.
[0082] 103. According to the mineral addition control parameters, add the required target minerals to the corresponding water to be treated in the hot spring pool machine to obtain the target effluent, which can then be used by the user for soaking.
[0083] In an embodiment of the present invention, for example, when a user needs to promote skin cell metabolism by soaking in a hot spring and needs to soak for 1 hour, based on the outlet water temperature of the hot spring pool machine at 38°C, it can be determined that silicate minerals need to be added to the hot spring pool machine, and the amount to be added is ag / L. At this time, according to the mineral addition control parameter, groundwater / mineral water rich in silicate minerals can be mixed with the water to be treated in the hot spring generator included in the hot spring pool machine, or the corresponding chemical reagents can be directly added to the water to be treated, thereby completing the mineral addition process of the water to be treated in the hot spring pool machine and obtaining the target outlet water.
[0084] It is evident that implementing the embodiments of the present invention can determine the mineral addition control parameters based on the user's soaking needs and the water output control parameters of the hot spring pool machine, so as to perform mineral addition operations on the water to be treated in the hot spring pool machine. This is beneficial to improving the reliability, accuracy, and timeliness of mineral addition in the hot spring pool machine, thereby enhancing the user's hot spring soaking effect and improving the user's hot spring experience.
[0085] In an optional embodiment, the step 102 above, determining the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the water outlet control parameters, includes:
[0086] When the water outlet control parameters include the water outlet temperature control parameters, obtain the first water quality parameters of the hot spring pool machine.
[0087] Based on the water quality parameters of the first water source and the outlet water temperature control parameters, determine the chemical changes corresponding to each preset mineral.
[0088] Based on the chemical changes corresponding to each mineral, the changes in the first soaking efficacy corresponding to each mineral are determined. Based on the soaking requirement parameters and the changes in the first soaking efficacy corresponding to all minerals, the mineral addition control parameters of the hot spring pool machine are determined.
[0089] In this optional embodiment, the first water quality parameters may optionally include at least one of water hardness, water pH, and chemical element content. Further optionally, the chemical change details may include changes in compound composition and / or the time of chemical change.
[0090] For example, in the circulating water process of a hot spring swimming pool machine, due to the high oxygen content and high water temperature, it is particularly effective against water rich in Fe. 2+The minerals, after being added to the water to be treated, may gradually oxidize to Fe. 3 + This affects the original soaking efficacy of the minerals; therefore, it may be necessary to appropriately increase the amount of Fe-rich minerals. 2+ The amount of minerals added.
[0091] As can be seen, this optional embodiment can determine the chemical changes corresponding to preset minerals based on the outlet water temperature control parameters and the first water quality parameters. Then, based on the chemical changes corresponding to the minerals, it can determine the corresponding changes in the first soaking effect, thereby determining the mineral addition control parameters of the hot spring pool machine. This helps to improve the reliability and accuracy of analyzing the changes in minerals during the circulating water process, and further improves the reliability and accuracy of determining the mineral addition control parameters of the hot spring pool machine. As a result, the target outlet water of the hot spring pool machine can meet the user's soaking needs.
[0092] In another alternative embodiment, the method further includes:
[0093] Obtain the target parameters of the water to be treated corresponding to the hot spring pool machine;
[0094] Based on the effluent temperature control parameters and the target parameters of the water to be treated, determine the physical changes corresponding to each mineral.
[0095] Based on the physical changes of each mineral, the changes in the second soaking effect of each mineral are determined. Based on the soaking requirement parameters and the changes in the second soaking effect of all minerals, the mineral addition control parameters of the hot spring pool machine are determined.
[0096] In this optional embodiment, the target parameters may optionally include current mineral type parameters and / or current mineral concentration parameters. Further optionally, physical changes may include changes in dissolution and / or changes in precipitation.
[0097] For example, during the circulation process of a hot spring pool machine, if the water to be treated has a high sodium chloride content and a low outlet temperature, then after adding minerals rich in sodium chloride to the water, excessive sodium chloride crystals may gradually precipitate out, thus affecting the original soaking effect of the minerals. Therefore, it may be necessary to appropriately reduce the amount of these sodium chloride-rich minerals added.
[0098] As can be seen, this optional embodiment can determine the physical changes of preset minerals based on the outlet water temperature control parameters and the target parameters of the water to be treated. Then, based on the physical changes of the minerals, it can determine the corresponding changes in the second soaking effect, thereby determining the mineral addition control parameters of the hot spring pool machine. This helps to improve the comprehensiveness, reliability, and accuracy of the analysis of mineral changes during the circulating water process, and further improves the reliability and accuracy of determining the mineral addition control parameters of the hot spring pool machine. As a result, the target outlet water of the hot spring pool machine can better meet the user's soaking needs.
[0099] In yet another optional embodiment, before determining the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the water outlet control parameters, the method further includes:
[0100] Obtain the user's physiological parameters and determine the physiological changes of the user during immersion based on the physiological parameters;
[0101] Based on physiological changes, soaking requirements, and water output control parameters, the mineral addition control parameters for the hot spring pool machine are determined.
[0102] In this optional embodiment, the mineral addition control parameters of the hot spring pool machine are further determined by incorporating the user's physiological parameters to ensure that the user's heart rate, breathing, and other vital signs remain normal during soaking. Optionally, the physiological parameters include at least one of heart rate parameters, breathing parameters, and health parameters.
[0103] As can be seen, this optional embodiment can determine the user's physiological changes during soaking based on the user's physiological parameters, and then determine the mineral addition control parameters of the hot spring pool machine in combination with the physiological changes. This can improve the flexibility in determining the mineral addition control parameters of the hot spring pool machine, thereby improving the reliability and accuracy of subsequent mineral addition control of the hot spring pool machine, and thus reducing the occurrence of abnormal physiological conditions of the user during soaking.
[0104] Example 2
[0105] Please see Figure 2 , Figure 2 This is a schematic flowchart illustrating another method for controlling the addition of minerals in a hot spring swimming pool machine, as disclosed in an embodiment of the present invention. Optionally, this method can be implemented by a mineral addition control device, which can be integrated into the hot spring swimming pool machine (such as the hot spring generator of the hot spring swimming pool machine). When the mineral addition control device exists independently, it can also be a local server or cloud server, etc., used to process the mineral addition control process of the hot spring swimming pool machine. The embodiments of the present invention do not impose limitations. Figure 2As shown, the mineral addition control method of this hot spring pool machine may include the following operations:
[0106] 201. Obtain the soaking needs parameters of the users of the hot spring pool machine and the water output control parameters of the hot spring pool machine.
[0107] 202. When the outlet water control parameters include outlet water temperature control parameters, obtain the basic parameters of microorganisms in the water to be treated corresponding to the hot spring pool machine.
[0108] In this embodiment of the invention, the basic parameters may optionally include at least one of the following: species parameters (such as sulfur-oxidizing bacteria, calcium carbonate precipitating bacteria, etc. contained in the water to be treated), content parameters, and activity parameters.
[0109] 203. Based on the basic parameters of microorganisms and the effluent temperature control parameters, determine the preset target interaction relationship between each mineral and microorganism, and based on the target interaction relationship, determine whether the degree of influence corresponding to the target interaction relationship is greater than or equal to the preset degree of influence threshold.
[0110] In this embodiment of the invention, if the judgment result of step 203 is negative, step 204 is executed; if the judgment result of step 203 is positive, step 205 is executed.
[0111] In this embodiment of the invention, it can be understood that when the interaction between microorganisms and minerals in the water to be treated is low, the mineral addition control parameters of the hot spring pool machine are determined directly based on the soaking requirement parameters and the water output control parameters. Otherwise, it is necessary to further combine the target interaction relationship between microorganisms and minerals, such as the transformation and fixation of minerals through microbial activity, to determine the mineral addition control parameters.
[0112] 204. Determine the mineral addition control parameters for the hot spring pool machine based on the soaking requirements and water output control parameters.
[0113] 205. Based on the target interaction, soaking requirements, and water output control parameters, determine the mineral addition control parameters for the hot spring pool machine.
[0114] 206. According to the mineral addition control parameters, add the required target minerals to the corresponding water to be treated in the hot spring pool machine to obtain the target effluent, which can then be used by the user for soaking.
[0115] In this embodiment of the invention, for other descriptions of steps 201, 204 and 206, please refer to the detailed description of steps 102 and 103 in Embodiment 1. These descriptions will not be repeated in this embodiment of the invention.
[0116] As can be seen, implementing the embodiments of the present invention can determine the target interaction relationship between minerals and microorganisms based on the basic parameters of microorganisms in the water to be treated and the outlet water temperature control parameters, and determine whether the degree of influence corresponding to the target interaction relationship is too large. If so, the mineral addition control parameters of the hot spring pool machine can be further determined in combination with the target interaction relationship. In this way, the reliability and accuracy of the analysis of the target interaction relationship between minerals and microorganisms can be improved, thereby improving the reliability, accuracy and efficiency of determining the mineral addition control parameters. This allows the minerals to be better converted and fixed, meeting the user's soaking needs.
[0117] In an optional embodiment, step 203 above, which involves determining the preset target interaction relationship between each mineral and the microorganisms based on the basic parameters of the microorganisms and the effluent temperature control parameters, includes:
[0118] Obtain the secondary water quality parameters for the hot spring pool machine;
[0119] The target conditions for microorganisms are determined based on the water quality parameters of the second water source, the basic parameters of microorganisms, and the effluent temperature control parameters.
[0120] Based on the target characteristics of the microorganisms, the pre-defined target interaction relationship between each mineral and the microorganisms is determined.
[0121] In this optional embodiment, the second water quality parameter may optionally include at least one of water pH, dissolved oxygen, and redox potential. Further optionally, the target conditions may include reproductive and / or metabolic conditions.
[0122] In this optional embodiment, further, based on the target characteristics of the microorganisms, a preset target interaction relationship between each mineral and the microorganisms is determined, including:
[0123] For each preset mineral, based on the target conditions of the microorganisms, determine the material transformation of the microorganisms based on the minerals, and based on the material transformation, determine the final state of the minerals;
[0124] For each mineral, the target interaction relationship between each mineral and the microorganism is determined based on the material transformation produced by the microorganism based on the mineral and the final state of the mineral.
[0125] In this optional embodiment, the substance transformation may optionally include substance synthesis and / or substance decomposition. Further optionally, the final state may include final content and / or final distribution.
[0126] For example, during the circulation of water in a hot spring pool machine, some microorganisms may be present in the water to be treated, such as calcium carbonate precipitating bacteria, which can induce calcium carbonate precipitation. These bacteria can influence the crystallization process of calcium carbonate by secreting specific biomolecules (such as polysaccharides and proteins), causing it to precipitate on or around the bacteria. Therefore, the activity of calcium carbonate precipitating bacteria not only promotes the transformation and fixation of carbonates in hot spring water, but also affects the water quality and ecosystem structure of the hot spring by forming calcium carbonate precipitates. At the same time, carbonates and other substances in the hot spring also provide the necessary nutrients and living environment for calcium carbonate precipitating bacteria, enabling them to play an important role in this environment.
[0127] As can be seen, this optional embodiment can determine the target conditions of microorganisms based on the secondary water quality parameters, basic microbial parameters, and outlet water temperature control parameters of the hot spring pool machine. Then, based on the target conditions of microorganisms, the target interaction relationship between minerals and microorganisms can be determined. This can improve the reliability and accuracy of the analysis of the target interaction relationship between minerals and microorganisms, thereby improving the accuracy of determining the mineral addition control parameters. This can improve the accuracy and efficiency of the subsequent mineral addition operation of the hot spring pool machine.
[0128] Example 3
[0129] Please see Figure 3 , Figure 3 This is a schematic diagram of the structure of a mineral addition control device for a hot spring swimming pool machine disclosed in an embodiment of the present invention. Figure 3 As shown, the mineral addition control device of this hot spring pool machine may include:
[0130] The acquisition module 301 is used to acquire the user's soaking demand parameters and the water output control parameters of the hot spring pool machine.
[0131] The first determining module 302 is used to determine the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the water output control parameters.
[0132] The addition module 303 is used to add the required target minerals to the water to be treated in the hot spring pool machine according to the mineral addition control parameters, so as to obtain the target water for users to soak in.
[0133] In this embodiment of the invention, the soaking requirement parameters include at least one of the soaking time requirement parameters, soaking efficacy requirement parameters, and soaking location requirement parameters; the water output control parameters include at least one of the water output control parameters, water output temperature control parameters, and water output circulation time parameters; and the mineral addition control parameters include at least one of the mineral addition amount control parameters, mineral addition type control parameters, and mineral addition time control parameters.
[0134] It is evident that implementation Figure 3 The mineral addition control device of the described hot spring pool machine can determine the mineral addition control parameters according to the user's soaking needs and the water output control parameters of the hot spring pool machine, so as to add minerals to the water to be treated in the hot spring pool machine. This helps to improve the reliability, accuracy and timeliness of mineral addition in the hot spring pool machine, thereby improving the user's hot spring soaking effect and enhancing the user's hot spring experience.
[0135] In an optional embodiment, the first determining module 302 includes:
[0136] The acquisition submodule 3021 is used to acquire the first water quality parameters of the hot spring pool machine when the water outlet control parameters include the water outlet temperature control parameters.
[0137] The determination submodule 3022 is used to determine the chemical change of each preset mineral based on the first water quality parameters and the outlet temperature control parameters; to determine the change of the first soaking effect of each mineral based on the chemical change of each mineral; and to determine the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the change of the first soaking effect of all minerals.
[0138] In this optional embodiment, the first water quality parameters include at least one of water hardness parameters, water pH parameters, and chemical element content parameters; the chemical change situation includes changes in compound composition and / or chemical change time.
[0139] It is evident that implementation Figure 4 The mineral addition control device of the described hot spring pool machine can determine the chemical changes corresponding to preset minerals based on the outlet water temperature control parameters and the initial water quality parameters. Then, based on the corresponding chemical changes of the minerals, it determines the corresponding changes in the initial soaking effect, thereby determining the mineral addition control parameters of the hot spring pool machine. This helps to improve the reliability and accuracy of analyzing the changes in minerals during the circulating water process, and further improves the reliability and accuracy of determining the mineral addition control parameters of the hot spring pool machine, so that the target outlet water of the hot spring pool machine meets the user's soaking needs.
[0140] In another optional embodiment, the acquisition submodule 3021 is further configured to:
[0141] Obtain the target parameters of the water to be treated corresponding to the hot spring pool machine;
[0142] The determination submodule 3022 is also used to determine the physical changes of each mineral based on the outlet water temperature control parameters and the target parameters of the water to be treated; to determine the changes in the second soaking effect of each mineral based on the physical changes of each mineral; and to determine the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the changes in the second soaking effect of all minerals.
[0143] In this optional embodiment, the target parameters include the current mineral type parameter and / or the current mineral concentration parameter; the physical changes include changes in dissolution and / or changes in precipitation.
[0144] It is evident that implementation Figure 4 The mineral addition control device of the described hot spring pool machine can determine the physical changes of preset minerals based on the outlet water temperature control parameters and the target parameters of the water to be treated. Then, based on the physical changes of the minerals, it determines the corresponding changes in the second soaking effect, thereby determining the mineral addition control parameters of the hot spring pool machine. This helps to improve the comprehensiveness, reliability, and accuracy of the analysis of mineral changes during the circulating water process, and further improves the reliability and accuracy of determining the mineral addition control parameters of the hot spring pool machine. As a result, the target outlet water of the hot spring pool machine can better meet the user's soaking needs.
[0145] In yet another optional embodiment, the acquisition module 301 is further configured to:
[0146] Before the first determining module 302 determines the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the water outlet control parameters, when the water outlet control parameters include the water outlet temperature control parameters, the basic parameters of the microorganisms in the water to be treated corresponding to the hot spring pool machine are obtained.
[0147] The device also includes:
[0148] The second determining module 304 is used to determine the preset target interaction relationship between each mineral and the microorganism based on the basic parameters of the microorganism and the effluent temperature control parameters.
[0149] The judgment module 305 is used to determine whether the degree of influence corresponding to the target action relationship is greater than or equal to the preset degree of influence threshold based on the target action relationship.
[0150] The first determining module 302 is also used to determine the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the water output control parameters when the judging module 305 determines that the degree of influence is less than the threshold of the degree of influence.
[0151] The second determining module 304 is also used to determine the mineral addition control parameters of the hot spring pool machine based on the target action relationship, soaking requirement parameters and water output control parameters when the judgment module 305 determines that the degree of influence is greater than or equal to the degree of influence threshold.
[0152] In this optional embodiment, the basic parameters include at least one of the following: species parameters, content parameters, and activity parameters.
[0153] It is evident that implementation Figure 4 The mineral addition control device of the described hot spring pool machine can determine the target interaction relationship between minerals and microorganisms based on the basic parameters of microorganisms in the water to be treated and the outlet water temperature control parameters. It can also determine whether the degree of influence corresponding to the target interaction relationship is too large. If so, it can further determine the mineral addition control parameters of the hot spring pool machine in combination with the target interaction relationship. In this way, the reliability and accuracy of the analysis of the target interaction relationship between minerals and microorganisms can be improved, thereby improving the reliability, accuracy and efficiency of determining the mineral addition control parameters. This allows the minerals to be better converted and fixed, meeting the user's soaking needs.
[0154] In another optional embodiment, the second determining module 304 determines the preset target interaction relationship between each mineral and the microorganisms based on the basic parameters of the microorganisms and the effluent temperature control parameters, specifically including:
[0155] Obtain the secondary water quality parameters for the hot spring pool machine;
[0156] The target conditions for microorganisms are determined based on the water quality parameters of the second water source, the basic parameters of microorganisms, and the effluent temperature control parameters.
[0157] Based on the target characteristics of the microorganisms, the pre-defined target interaction relationship between each mineral and the microorganisms is determined.
[0158] In this optional embodiment, the second water quality parameters include at least one of water pH, dissolved oxygen, and redox potential; the target conditions include reproductive and / or metabolic conditions.
[0159] In this optional embodiment, the second determining module 304 further determines the preset target interaction relationship between each mineral and the microorganism based on the target situation of the microorganism, specifically including:
[0160] For each preset mineral, based on the target conditions of the microorganisms, determine the material transformation of the microorganisms based on the minerals, and based on the material transformation, determine the final state of the minerals;
[0161] For each mineral, the target interaction relationship between each mineral and the microorganism is determined based on the material transformation produced by the microorganism based on the mineral and the final state of the mineral.
[0162] In this optional embodiment, the material transformation includes material synthesis and / or material decomposition, and the final situation includes final content and / or final distribution.
[0163] It is evident that implementation Figure 4 The mineral addition control device of the described hot spring pool machine can determine the target conditions of microorganisms based on the secondary water quality parameters, basic microbial parameters, and outlet water temperature control parameters of the hot spring pool machine. Then, based on the target conditions of microorganisms, it can determine the target interaction relationship between minerals and microorganisms. This can improve the reliability and accuracy of the analysis of the target interaction relationship between minerals and microorganisms, thereby improving the accuracy of determining the mineral addition control parameters. As a result, it can improve the accuracy and efficiency of the subsequent mineral addition operation of the hot spring pool machine.
[0164] In yet another optional embodiment, the acquisition module 301 is further configured to:
[0165] Before the first determining module 302 determines the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the water outlet control parameters, it obtains the user's physiological parameters.
[0166] The device also includes:
[0167] The third determining module 306 determines the user's physiological changes during soaking based on physiological parameters; and determines the mineral addition control parameters of the hot spring pool machine based on the physiological changes, soaking requirements parameters, and water output control parameters.
[0168] In this optional embodiment, the physiological parameters include at least one of heart rate parameters, respiratory parameters, and health parameters.
[0169] It is evident that implementation Figure 4The mineral addition control device of the described hot spring pool machine can determine the user's physiological changes during soaking based on the user's physiological parameters, and then determine the mineral addition control parameters of the hot spring pool machine in combination with the physiological changes. This can improve the flexibility in determining the mineral addition control parameters of the hot spring pool machine, thereby improving the reliability and accuracy of subsequent mineral addition control of the hot spring pool machine, and thus reducing the occurrence of abnormal physiological conditions of users during soaking.
[0170] Example 4
[0171] Please see Figure 5 , Figure 5 This is a schematic diagram of the structure of a mineral addition control device for a hot spring swimming pool machine, as disclosed in an embodiment of the present invention. Figure 5 As shown, the mineral addition control device of this hot spring pool machine may include:
[0172] Memory 401 storing executable program code;
[0173] Processor 402 coupled to memory 401;
[0174] The processor 402 calls the executable program code stored in the memory 401 to execute the steps in the mineral addition control method of the hot spring swimming pool machine described in Embodiment 1 or Embodiment 2 of the present invention.
[0175] Example 5
[0176] This invention discloses a computer storage medium storing computer instructions. When these computer instructions are invoked, they are used to execute the steps in the mineral addition control method for a hot spring swimming pool machine described in Embodiment 1 or Embodiment 2 of this invention.
[0177] Example 6
[0178] This invention discloses a computer program product, which includes a non-transitory computer-readable storage medium storing a computer program, and the computer program is operable to cause a computer to perform the steps in the mineral addition control method for a hot spring pool machine described in Embodiment 1 or Embodiment 2.
[0179] The device embodiments described above are merely illustrative. The modules described as separate components may or may not be physically separate. The components shown as modules may or may not be physical modules; that is, they may be located in one place or distributed across multiple network modules. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs. Those skilled in the art can understand and implement this without any creative effort.
[0180] Through the detailed description of the above embodiments, those skilled in the art can clearly understand that each implementation method can be implemented by means of software plus necessary general-purpose hardware platforms, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solutions, in essence or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer-readable storage medium, including read-only memory (ROM), random access memory (RAM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), one-time programmable read-only memory (OTPROM), electrically-Erasable Programmable Read-Only Memory (EEPROM), compact disc read-only memory (CD-ROM) or other optical disc storage, disk storage, magnetic tape storage, or any other computer-readable medium that can be used to carry or store data.
[0181] Finally, it should be noted that the mineral addition control method and device for a hot spring swimming pool machine disclosed in the embodiments of the present invention are merely preferred embodiments of the present invention and are only used to illustrate the technical solutions of the present invention, not to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions 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 invention.
Claims
1. A method for controlling the addition of minerals to a hot spring swimming pool machine, characterized in that, The method includes: The user's soaking needs parameters and the water output control parameters of the hot spring pool machine are obtained; the soaking needs parameters include at least one of soaking time requirements, soaking efficacy requirements, and soaking position requirements; the water output control parameters include at least one of water output control parameters, water output temperature control parameters, and water circulation time parameters. Based on the soaking requirement parameters and the water output control parameters, the mineral addition control parameters of the hot spring pool machine are determined; the mineral addition control parameters include at least one of the following: mineral addition amount control parameters, mineral addition type control parameters, and mineral addition time control parameters. According to the mineral addition control parameters, the required target minerals are added to the water to be treated corresponding to the hot spring pool machine to obtain the effluent, which is then used by the user for soaking. The step of determining the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the water output control parameters includes: When the water outlet control parameters include the water outlet temperature control parameters, the first water quality parameters of the water to be treated in the hot spring pool machine are obtained; the first water quality parameters of the water to be treated include at least one of water hardness parameters, water pH parameters, and chemical element content parameters. Based on the first water quality parameters of the water to be treated and the outlet temperature control parameters, the chemical changes corresponding to each preset mineral are determined; the chemical changes include changes in compound composition and / or the time of chemical changes. Based on the chemical changes corresponding to each mineral, the changes in the first soaking efficacy corresponding to each mineral are determined, and based on the soaking requirement parameters and the changes in the first soaking efficacy corresponding to all minerals, the mineral addition control parameters of the hot spring pool machine are determined. And, before determining the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the water outlet control parameters, the method further includes: When the outlet water control parameters include the outlet water temperature control parameters, the basic parameters of the microorganisms in the water to be treated corresponding to the hot spring pool machine are obtained; the basic parameters include at least one of the species parameters, content parameters, and activity parameters. Based on the basic parameters of the microorganisms and the effluent temperature control parameters, a preset target interaction relationship between each mineral and the microorganisms is determined, and based on the target interaction relationship, it is determined whether the degree of influence corresponding to the target interaction relationship is greater than or equal to a preset degree of influence threshold. When it is determined that the degree of influence is less than the threshold of influence, the mineral addition control parameters of the hot spring pool machine are determined according to the soaking requirement parameters and the water output control parameters. When it is determined that the degree of influence is greater than or equal to the threshold of influence, the mineral addition control parameters of the hot spring pool machine are determined according to the target effect relationship, the soaking requirement parameters, and the water output control parameters.
2. The mineral addition control method for the hot spring swimming pool machine according to claim 1, characterized in that, The method further includes: Obtain the target parameters of the water to be treated corresponding to the hot spring pool machine; the target parameters include the current mineral type parameter and / or the current mineral concentration parameter. Based on the effluent temperature control parameters and the target parameters of the water to be treated, determine the physical changes corresponding to each mineral; the physical changes include dissolution changes and / or precipitation changes; Based on the physical changes corresponding to each mineral, the changes in the second soaking efficacy corresponding to each mineral are determined. Based on the soaking requirement parameters and the changes in the second soaking efficacy corresponding to all the minerals, the mineral addition control parameters of the hot spring pool machine are determined.
3. The mineral addition control method for the hot spring swimming pool machine according to claim 1, characterized in that, The step of determining the preset target interaction relationship between each mineral and the microorganism based on the basic parameters of the microorganism and the effluent temperature control parameters includes: Obtain the second water quality parameters of the water to be treated from the hot spring pool machine; the second water quality parameters of the water to be treated include at least one of water pH parameter, water dissolved oxygen parameter, and redox potential parameter. Based on the secondary water quality parameters of the water to be treated, the basic parameters of the microorganisms, and the effluent temperature control parameters, the target conditions of the microorganisms are determined; the target conditions include reproduction and / or metabolism. Based on the target conditions of the microorganisms, a pre-defined target interaction relationship between each mineral and the microorganisms is determined.
4. The mineral addition control method for the hot spring swimming pool machine according to claim 3, characterized in that, The step of determining the preset target interaction relationship between each mineral and the microorganism based on the target situation of the microorganism includes: For each preset mineral, based on the target situation of the microorganism, the material transformation situation produced by the microorganism based on the mineral is determined, and based on the material transformation situation, the final situation of the mineral is determined; the material transformation situation includes the material synthesis situation and / or the material decomposition situation, and the final situation includes the final content situation and / or the final distribution situation; For each mineral, the target interaction relationship between each mineral and the microorganism is determined based on the material transformation produced by the microorganism based on the mineral and the final state of the mineral.
5. The mineral addition control method for the hot spring swimming pool machine according to claim 1, characterized in that, Before determining the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the water outlet control parameters, the method further includes: The user's physiological parameters are acquired, and the physiological changes of the user during immersion are determined based on the physiological parameters; the physiological parameters include heart rate parameters and / or respiratory parameters; Based on the physiological changes, the soaking requirements, and the water output control parameters, the mineral addition control parameters of the hot spring pool machine are determined.
6. A mineral addition control device for a hot spring swimming pool machine, characterized in that, The apparatus is used to perform the mineral addition control method of the hot spring pool machine as described in any one of claims 1-5, and the apparatus comprises: The acquisition module is used to acquire the user's soaking requirement parameters and the water output control parameters of the hot spring pool machine; the soaking requirement parameters include at least one of the soaking time requirement parameters, soaking efficacy requirement parameters, and soaking position requirement parameters, and the water output control parameters include at least one of the water output control parameters, water output temperature control parameters, and water output circulation time parameters. The first determining module is used to determine the mineral addition control parameters of the hot spring pool machine based on the soaking requirement parameters and the water output control parameters; the mineral addition control parameters include at least one of the following: mineral addition amount control parameters, mineral addition type control parameters, and mineral addition time control parameters. The addition module is used to add the required target minerals to the water to be treated corresponding to the hot spring pool machine according to the mineral addition control parameters, so as to obtain the water to be used by the user for soaking.
7. A mineral addition control device for a hot spring swimming pool machine, characterized in that, The device includes: Memory containing executable program code; A processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the mineral addition control method of the hot spring swimming pool machine as described in any one of claims 1-5.
8. A computer storage medium, characterized in that, The computer storage medium stores computer instructions, which, when invoked, are used to execute the mineral addition control method of the hot spring swimming pool machine as described in any one of claims 1-5.