Daily water intake management device
By designing a daily water intake management device and using an intelligent water tank and control module to automatically control the amount of water intake, the problem of inconvenience in drinking water for postoperative patients is solved, individualized water intake management and monitoring are achieved, and the risk of deep vein thrombosis is reduced.
Patent Information
- Application Number
- CN202510640480.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-19
- Publication Date
- 2025-10-17
Smart Images

Figure CN120803077A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of health management, and in particular to a daily drinking water amount management device. BACKGROUND
[0002] It is pointed out in documents that long time open surgery can increase the risk of deep vein thrombosis of patients, such a surgery has a larger wound, a longer recovery time, and obvious postoperative pain, more bleeding during the surgery, and a higher risk of postoperative infection. Therefore, the daily drinking water amount of the patient needs to be ensured to be 2000-2500ml. How to scientifically drink water and drink enough water is a need for the patient to master and a focus for the clinical nurse to pay attention to.
[0003] The postoperative patient cannot determine the drinking water amount due to inconvenience in drinking water, untimely prompting by the family members, and inaccurate recording by the family members.
[0004] Moreover, each patient has differences, and it is impossible to effectively supervise the individualized patients.
[0005] Therefore, how to effectively manage the daily drinking water amount of the postoperative patient is a technical problem to be solved at present. SUMMARY
[0006] In view of the above problems, the present application provides a daily drinking water amount management device which overcomes the above problems or at least partially solves the above problems.
[0007] The present application provides a daily drinking water amount management device, comprising:
[0008] An intelligent water tank for containing drinking water;
[0009] The intelligent water tank comprises:
[0010] A plurality of quantitative water storage compartments;
[0011] A total water storage compartment, which is connected with the plurality of quantitative water storage compartments through water pumps respectively;
[0012] A first water outlet switch connected with the quantitative water storage compartments, and the first water outlet switch is arranged at a corresponding position of the patient's bed, and is used to provide quantitative water based on the operation of the user;
[0013] A control module connected with the water pumps, and used to control the opening and closing of the water pumps;
[0014] A processing module connected with the control module, and used to determine the amount of quantitative water based on the medical order information of each patient, and determine the daily drinking water amount of each target patient based on the quantitative water.
[0015] Preferably, it further comprises:
[0016] A prompt module is connected to the processing module and is arranged at a corresponding position of the patient bed;
[0017] The processing module is further configured to:
[0018] Based on the medical order information of each patient, the periodic drinking water amount information is determined.
[0019] When the drinking water amount of the patient in a preset time is less than the periodic drinking water amount, the prompt module is turned on to give a prompt.
[0020] Preferably, the control module is further configured to:
[0021] When the water amount in any of the quantitative water storage compartments is detected to be lower than a preset value, the water pump is controlled to be turned on to replenish the water amount in the quantitative water storage compartment to the preset amount.
[0022] Preferably, each quantitative water storage compartment is provided with any of the following devices for monitoring whether the water amount in the quantitative water storage compartment is lower than a preset value:
[0023] A liquid level sensor and a gravity sensor.
[0024] Preferably, the system further comprises:
[0025] A second water outlet switch connected to the total water storage compartment, for providing water based on the operation of a user and recording the water outlet amount.
[0026] Preferably, a flow sensor is arranged in the second water outlet switch for recording the water outlet amount of each water taking.
[0027] Preferably, the system further comprises:
[0028] A straw connected to the second water outlet switch at one end and worn on the face of the patient at the other end, for the patient to drink water at any time.
[0029] Preferably, a flow rate control valve is arranged on the straw, and the flow rate control valve is connected to the processing module.
[0030] Preferably, the system further comprises a transmission module for:
[0031] Transmitting the daily drinking water amount of each target patient to a terminal device of a nurse station.
[0032] Preferably, the system further comprises:
[0033] A scanning module for scanning the two-dimensional code information of the bracelet of the patient to determine the medical order information of the patient.
[0034] The processing module is configured to allocate a bed and a corresponding quantitative water storage compartment to the patient based on the medical order information of the patient.
[0035] The one or more technical solutions in the embodiments of the present application have at least the following technical effects or advantages:
[0036] The present application provides a daily drinking water management device, comprising: a smart water tank for containing drinking water, the smart water tank comprising: a plurality of quantitative water storage compartments; a total water storage compartment, the total water storage compartment being connected with the plurality of quantitative water storage compartments through water pumps respectively; a first water outlet switch connected with the quantitative water storage compartments, and the first water outlet switch being arranged at a corresponding position of a patient's bed for providing quantitative water based on the operation of a user; a control module connected with the water pumps for controlling the opening and closing of the water pumps; and a processing module connected with the control module for determining the amount of quantitative water based on the medical advice information of each patient, and determining the daily drinking water of each target patient based on the quantitative water, thereby ensuring that each patient can conveniently and quickly obtain drinking water, and the drinking water of each patient can be counted without the need for the patient or family members to record, thereby reasonably managing the postoperative drinking water of the patient. BRIEF DESCRIPTION OF DRAWINGS
[0037] Various other advantages and benefits will become apparent to those of ordinary skill in the art upon reading the following detailed description of the preferred embodiments. The accompanying drawings are included to provide a description of the preferred embodiments and are not intended to limit the scope of the application. Furthermore, the drawings are not necessarily drawn to scale and in the drawings:
[0038] Figure 1 A structure schematic diagram of a daily drinking water management device in an embodiment of the present application is shown. DETAILED DESCRIPTION
[0039] Exemplary embodiments of the present application will be described herein below with reference to the accompanying drawings. Although exemplary embodiments of the present application are shown in the drawings, it should be understood that the present application can be implemented in various forms and should not be limited by the embodiments set forth herein. Rather, these embodiments are provided so that the present application can be more thoroughly understood and so that the scope of the present application can be accurately conveyed to those skilled in the art.
[0040] An embodiment of the present application provides a daily drinking water management device, as shown in Figure 1 comprising:
[0041] a smart water tank 101 for containing drinking water;
[0042] The smart water tank 101 comprises:
[0043] a plurality of quantitative water storage compartments 1011;
[0044] The total water storage compartment 1012 is connected with the plurality of quantitative water storage compartments 1011 through the water pump 1013 respectively;
[0045] The first water outlet switch 1014 is connected with the quantitative water storage compartment and is arranged at the corresponding position of the patient bed, and is used to provide the quantitative water based on the operation of the user.
[0046] The control module 102 is connected with the water pump 1013 and is used to control the opening and closing of the water pump 1013.
[0047] The processing module 103 is connected with the control module 102 and is used to determine the amount of the quantitative water based on the medical order information of each patient, and determine the daily drinking water amount of each target patient based on the quantitative water.
[0048] In the hospital ward, one daily drinking water amount management device can be provided to monitor the daily drinking water amount of the plurality of patients in the ward. Of course, the daily drinking water amount of the patients in the plurality of wards of the whole floor of the hospital can also be monitored.
[0049] Specifically, the intelligent water tank 101 is used to store drinking water, and the intelligent water tank 101 is connected with the input port of the water source and stores water at irregular intervals.
[0050] The intelligent water tank 101 further comprises a plurality of quantitative water storage compartments 1011 and a total water storage compartment 1012.
[0051] The quantitative water storage compartment 1011 can correspond to the drinking water of the patient of a single bed, the total water storage compartment 1012 is connected with the quantitative water storage compartment 1011 through the connecting pipeline, and the water pump 1013 is arranged on the connecting pipeline to supply water to the quantitative water storage compartment by controlling the water pump 1013.
[0052] By allocating the quantitative water storage compartment 1011 to each patient, not only the drinking water of the patient can be calculated individually, but also the drinking water amount of the patient can be limited to effectively monitor the drinking water of the postoperative patient.
[0053] The first water outlet switch 104 is arranged at the corresponding position of the patient bed, is connected with the quantitative water storage compartment 1011, and is used to provide the quantitative water based on the operation of the user.
[0054] The water amount stored in the quantitative water storage compartment 1011 is determined according to the medical order of different patients. If the postoperative patient needs to drink 500ml of water quantitatively, the quantitative water storage compartment is set to 500ml.
[0055] The user obtains corresponding drinking water through the first water outlet switch 104. Of course, the user can obtain all the quantitative drinking water at one time or obtain the drinking water in multiple times.
[0056] In a specific embodiment, the first water outlet switch 104 can be connected to a flow-controllable straw. When the patient is in a bed stage and cannot get up to drink water, one end of the straw is connected to the first water outlet switch 104, and the other end is worn on the face of the patient, so that the patient can drink water at any time, which is convenient for the patient to use. Moreover, the straw is provided with a flow rate control valve connected to the processing module 103. By controlling the flow rate control valve, the flow rate of the straw is controlled to adapt to the drinking water needs of different patients.
[0057] The device further comprises a control module 102 connected to the water pump 1013 for controlling the opening and closing of the water pump 1013; and a processing module 103 connected to the control module 102 for determining the amount of quantitative water based on the medical order information of each patient, and determining the daily drinking water amount of each target patient based on the quantitative water.
[0058] First, the processing module 103 allocates the water storage amount of different quantitative water storage compartments 1011 according to the medical order information of each patient. The water storage amount is the maximum amount of drinking water for the patient at one time.
[0059] When determining the daily drinking water amount of the target patient, the daily drinking water amount of the target patient can be calculated according to the number of times the water pump is turned on within a day and the corresponding water storage amount. Specifically, the daily drinking water amount can be obtained by multiplying the number of times the water pump is turned on by the amount of quantitative water, and then by the water amount in the current quantitative water storage compartment.
[0060] The device further comprises a prompt module connected to the processing module 103 and arranged at a corresponding position of the patient's bed.
[0061] The processing module 103 is further configured to determine periodic drinking water amount information based on the medical order information of each patient, and to open a prompt through the prompt module when the drinking water amount of the patient within a preset time is less than the periodic drinking water amount.
[0062] For example, the medical order information records that the drinking water amount every 2 hours is guaranteed to be 500 ml, i.e., the periodic drinking water amount is 500 ml. Then, the drinking water amount of the patient within a preset time is determined by counting the number of times the water pump 1013 is turned on within two hours and the water amount in the current quantitative water storage compartment. By comparing with the periodic drinking water amount, it is determined whether the drinking water is insufficient. If it is insufficient, a prompt is opened through the prompt module, such as a red light or the like.
[0063] The control module 102 is further configured to:
[0064] When the water amount in the quantitative water storage compartment is monitored to be lower than the preset value, the water pump is controlled to be turned on so as to replenish the water amount in the quantitative water storage compartment to the preset amount.
[0065] The trigger condition for the control module 102 to control the replenishment of the water amount is that the water amount is lower than the preset value, which can be monitored by the liquid level sensor or by the gravity sensor. Generally, the liquid level sensor is arranged at the lowest position, i.e., the water pump 1013 is controlled to be turned on when there is no water. The weight setting is also set according to the water consumption of the quantitative water in the quantitative water storage compartment 1011.
[0066] When any one of the weight or the water level condition is met, the water pump 1013 is controlled to be turned on so as to replenish the water amount in the quantitative water storage compartment to the preset amount.
[0067] In an optional embodiment, the device further comprises:
[0068] The second water outlet switch is connected to the total water storage compartment 1012 and is used to provide water based on the operation of the user.
[0069] The second water outlet switch is used to provide the water demand of other users by taking water from the total water storage compartment 1012, which does not affect the water taking statistics of the patient.
[0070] Moreover, a flow sensor is arranged in the second water outlet switch to record the water amount of each water taking. The water consumption of the user other than the patient can be counted.
[0071] A liquid level sensor is arranged in the total water storage compartment 1012, and when the total water amount is lower than the preset water level, the water source is controlled to be added to the total water storage compartment 1012.
[0072] In an optional embodiment, the device further comprises a transmission module for sending the daily water consumption of each target patient to the terminal device of the nurse station, so that the nurses at the nurse station can monitor the water consumption of each patient in real time without having to ask individually in the ward, thereby improving the work efficiency.
[0073] In an optional embodiment, the device further comprises a scanning module for scanning the bracelet two-dimensional code information of the patient to determine the medical order information of the patient, and a processing module 103 for allocating a bed and a corresponding quantitative water storage compartment to the patient based on the medical order information of the patient.
[0074] The bracelet two-dimensional code information of the patient contains the medical order information, and the corresponding medical order information of different patients is different. Different patients are allocated to different beds and corresponding quantitative water storage compartments according to different medical order information, so as to provide water for the patient according to the allocated quantitative water storage compartment.
[0075] The one or more technical solutions in the embodiments of the present application have at least the following technical effects or advantages:
[0076] The present application provides a daily drinking water management device, comprising: a smart water tank for containing drinking water, the smart water tank comprising: a plurality of quantitative water storage compartments; a total water storage compartment, the total water storage compartment being connected with the plurality of quantitative water storage compartments through water pumps respectively; a first water outlet switch connected with the quantitative water storage compartments, and the first water outlet switch being arranged at a corresponding position of a patient's bed, for providing quantitative water based on the operation of a user; a control module connected with the water pumps, for controlling the opening and closing of the water pumps; and a processing module connected with the control module, for determining the amount of quantitative water based on the medical order information of each patient, and determining the daily drinking water of each target patient based on the quantitative water, by arranging the first water outlet switch at the bed of each patient and providing quantitative drinking water, it is ensured that each patient can conveniently and quickly obtain drinking water, and the drinking water of each patient can be counted without the need for the patient or family members to record, so that the postoperative drinking water of the patient is reasonably managed.
[0077] Although the preferred embodiments of the present application have been described, those skilled in the art can make further changes and modifications to these embodiments once they know the basic inventive concept. Therefore, the appended claims are intended to cover all such changes and modifications that fall within the scope of the present application.
[0078] Obviously, various modifications and changes can be made to the present application by those skilled in the art without departing from the spirit and scope of the present application. Thus, it is intended that the present application cover the modifications and changes as they fall within the scope of the claims and their equivalents.
Claims
1. A daily water intake management device, characterized in that: include: Smart water tank for drinking water; The intelligent water tank comprises: Multiple quantitative water storage compartments; A total water storage compartment, wherein the total water storage compartment is connected to a plurality of quantitative water storage compartments respectively via water pumps; A first water outlet switch is connected to the quantitative water storage compartment and is provided at a corresponding position of the patient's bed, for providing quantitative water based on user operation; A control module, connected to the water pump, for controlling the opening and closing of the water pump; The processing module is connected to the control module and is used to determine the amount of quantitative water used based on the medical order information of each patient, and to determine the daily water intake of each target patient based on the amount of quantitative water used.
2. The daily water intake management device according to claim 1, wherein: Also includes: A prompt module, connected to the processing module, is arranged at a corresponding position of the patient's bed; The processing module is further configured to: Determine periodic water intake information based on each patient's medical advice information; When the amount of water the patient drinks within the preset time is less than the periodic water intake, the prompt module is used to start a prompt.
3. The daily water intake management device according to claim 1, wherein: The control module is further configured to: When it is monitored that the amount of water in any quantitative water storage compartment is lower than a preset value, the water pump is controlled to be turned on so that the amount of water in the quantitative water storage compartment is replenished to the preset amount.
4. The daily water intake management device according to claim 3, wherein: Each quantitative water storage compartment is provided with any of the following devices for monitoring whether the water level in the quantitative water storage compartment is lower than a preset value: Liquid level sensor and gravity sensor.
5. The daily water intake management device according to claim 1, wherein: Also includes: The second water outlet switch is connected to the main water storage compartment and is used to provide water based on user operation and record the water output.
6. The daily water intake management device according to claim 5, characterized in that: A flow sensor is provided in the second water outlet switch for recording the water output each time water is taken.
7. The daily water intake management device according to claim 5, wherein: Also includes: One end of the straw is connected to the second water outlet switch, and the other end is worn on the patient's face so that the patient can drink water at any time.
8. The daily water intake management device according to claim 7, wherein: A flow rate control valve is provided on the suction pipe, and the flow rate control valve is connected to the processing module.
9. The daily water intake management device according to claim 1, wherein: Also includes: Transport module for: The daily water intake of each target patient is sent to the terminal device at the nurse station.
10. The daily water intake management device according to claim 1, wherein: Also includes: The scanning module is used to scan the QR code information of the patient's wristband to determine the patient's medical advice information; The processing module is used to allocate a bed and a corresponding quantitative water storage compartment to the patient based on the patient's medical order information.