A heat-insulating and ventilated shower tent
By designing a wastewater collection and drainage mechanism, including a flexible water collection plate and a seepage component, the problem of water immersion caused by wastewater falling onto the ground from the shower tent was solved, realizing centralized collection and discharge of wastewater and improving the ease of use and stability of the equipment.
Patent Information
- Application Number
- CN202521640348.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-04
- Publication Date
- 2026-08-04
- Estimated Expiration
- 2035-08-04
AI Technical Summary
Existing shower tents allow wastewater to fall directly to the ground after showering, causing water to seep into the ground around the tent, which affects the lifespan and cleanliness of the equipment.
A heat-insulating and breathable shower tent with a wastewater collection and drainage mechanism was designed. It uses a flexible water collection plate and a water-permeable component to collect wastewater, and discharges the wastewater in a concentrated manner through a water-diverting inclined trough and a side water-diverting trough.
This system enables centralized collection and discharge of wastewater from the shower tents, preventing the ground around the tents from becoming wet and improving the ease of use and stability of the equipment.
Smart Images

Figure CN224591896U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of shower tent technology, specifically relating to a heat-insulating and breathable shower tent. Background Technology
[0002] The existing shower tent is an outdoor shower device suitable for outdoor activities such as camping, hiking, and fishing, or for providing bathing in temporary locations (such as construction sites or disaster relief sites). It is convenient to keep warm while showering and to allow for ventilation through the ventilation window after showering.
[0003] Existing shower tents are placed directly on the ground for use, and people enter to shower using the showerheads. Because the bottom of the tent is in direct contact with the ground, wastewater falls directly to the ground, making collection and drainage difficult. The water also drains to the sides, causing the surrounding ground to be submerged. This can easily lead to the bottom of the tent and the surrounding water pump being submerged, potentially causing damage over time. This compromises the convenience of collecting and draining wastewater from the bottom of the shower tent during use. Therefore, this invention proposes a heat-insulating and breathable shower tent. Utility Model Content
[0004] The purpose of this utility model is to provide a heat-insulating and breathable shower tent to solve the problems mentioned in the background art, where the bottom of the shower tent is placed in direct contact with the ground, causing the wastewater after showering to fall directly to the ground, which is not convenient for centralized collection and drainage. When the wastewater falls to the ground, it drains to both sides, causing the ground around the shower tent to be soaked in wastewater. This results in the bottom of the tent being easily submerged in water and becoming unclean, and prolonged immersion in water can easily cause it to age faster.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a heat-insulating and breathable shower tent, comprising a shower tent body, the shower tent body including a tent frame, an heat-insulating tarpaulin on the outer surface of the tent frame, a door curtain on the front surface of the heat-insulating tarpaulin, a water inlet main pipe installed at the middle position of the inner top of the tent frame via a fastening clamp, shower heads equidistantly arranged on both sides of the inner top of the tent frame, and the shower heads connected to the water inlet main pipe via flexible hoses, the shower tent body also being provided with:
[0006] Wastewater collection and drainage mechanism, and the wastewater collection and drainage mechanism includes a water collection and protection component installed at the bottom of the inside of the tent frame, the inner surface of the water collection and protection component is provided with a water seepage component, and the inner two sides of the water collection and protection component are provided with water discharge components.
[0007] The reinforcement mechanism includes reinforcement connection components disposed at both ends of the thermal insulation tarpaulin, and the bottom end of the reinforcement connection component is provided with an embedded mounting component.
[0008] Preferably, ventilation windows are equidistantly arranged on both sides of the thermal insulation tarpaulin, and a protective curtain is provided at the top of the ventilation window. A water pump is provided at one end of the thermal insulation tarpaulin, and the water pump is installed on the side of the main water inlet pipe through a connecting pipe. A water supply bag and a water storage tank are provided on one side of the water pump, and the water storage tank and the water supply bag are connected to the water pump through a connecting pipe with a water flow switch.
[0009] Preferably, the water collection and protection component includes a flexible water collection plate laid inside the bottom of the tent frame, and the flexible water collection plate has symmetrical built-in water-guiding inclined grooves on both sides of its interior.
[0010] Preferably, the water infiltration component includes equidistant, integrally formed support columns inside the built-in water-diverting inclined groove, and the ends of the support columns are located inside the flexible water collection plate and support a flexible perforated panel.
[0011] Preferably, the water drainage component includes side water drainage channels located on both sides of the interior of the flexible water collection plate at the bottom of the built-in water drainage inclined channel. The ends of the side water drainage channels are provided with drain outlets on the front surface of the flexible water collection plate, and the drain outlets extend to the outer surface of the thermal insulation tarpaulin.
[0012] Preferably, the reinforcing connection assembly includes reinforcing wide strips installed at both ends of the thermal insulation tarpaulin by stitching, and the two reinforcing wide strips are arranged symmetrically.
[0013] Preferably, the embedded mounting assembly includes a rigid base plate fixed to the bottom end of a reinforcing wide band by screws, an embedded rod penetrating the interior of the rigid base plate, and auxiliary rods provided on both sides of the bottom end of the embedded rod.
[0014] Compared with the prior art, the beneficial effects of this utility model are:
[0015] By designing a wastewater collection and drainage mechanism, the flexible water collection board is laid inside the insulation tarpaulin at the bottom, contacting the ground. The flexible perforated panel is supported by support columns and laid inside the flexible water collection board. When wastewater from showering falls onto the surface of the flexible perforated panel, it seeps into the interior of the flexible water collection board and is guided through the built-in inclined water channel to the side, where it enters the side water channel. The water is then guided through the side water channel and drained into the drain pipe to be discharged to the outside. This design facilitates the centralized collection and treatment of wastewater during showering, preventing water from appearing around the shower area and ensuring the safe placement and use of the equipment. It also improves the convenience of wastewater collection and drainage at the bottom of the shower tent during use. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of this utility model;
[0017] Figure 2 This is a schematic diagram of the tent frame, water inlet pipe, and shower head structure of this utility model;
[0018] Figure 3 This is a schematic diagram of the internal cross-sectional structure of the thermal insulation tarpaulin and tent frame of this utility model;
[0019] Figure 4 This is a partial cross-sectional view of the flexible water collection plate and flexible perforated panel of this utility model.
[0020] Figure 5 This is a partial structural diagram of the flexible water collection plate, side water diversion channel and supporting column of this utility model;
[0021] Figure 6 This utility model Figure 1 Enlarged structural diagram of section A;
[0022] In the diagram: 100, Shower tent body; 101, Insulated tarpaulin; 1011, Drain outlet; 1012, Flexible water collection plate; 1013, Flexible perforated panel; 1014, Built-in water inlet sloping groove; 1015, Side water inlet groove; 1016, Supporting column; 102, Tent frame; 1021, Reinforced wide strip; 1022, Rigid base plate; 1023, Embedded rod; 103, Ventilation window; 104, Main water inlet pipe; 105, Water pump; 106, Water storage tank; 107, Water supply bag; 108, Shower head. Detailed Implementation
[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0024] Please see Figures 1 to 6This utility model provides a technical solution: a heat-insulating and breathable shower tent, including a shower tent body 100, a shower tent body 100 including a tent frame 102, an heat-insulating tarpaulin 101 on the outer surface of the tent frame 102, a door curtain on the front surface of the heat-insulating tarpaulin 101, and ventilation windows 103 equidistantly arranged on both sides of the heat-insulating tarpaulin 101. A protective curtain is provided at the top of the ventilation window 103. During showering, the protective curtain can be closed over the surface of the ventilation window 103 for protection. The heat-insulating tarpaulin 101 provides heat insulation and protection for the interior, isolates the outside environment, and can be used as a changing room before and after showering, making it convenient for the showerer to change clothes. After showering, the protective curtain can be opened again to allow ventilation through the ventilation window 103. A water inlet pipe 104 is installed at the middle position of the top of the interior of the tent frame 102 by a fastening clamp. Shower nozzles 108 are equidistantly arranged on both sides of the top of the interior of the tent frame 102, and the shower nozzles 108 are connected to the water inlet pipe 104 by a hose.
[0025] A water pump 105 is installed at one end of the thermal tarpaulin 101. The water pump 105 is connected to the side of the main water inlet pipe 104 via a connecting pipe. A water supply bag 107 and a water storage tank 106 are installed on one side of the water pump 105. The water storage tank 106 and the water supply bag 107 are connected to the water pump 105 via a connecting pipe with a flow switch. The shower tent body 100 is also equipped with:
[0026] The wastewater collection and drainage mechanism includes a water collection and protection component located at the bottom of the tent frame 102. The inner surface of the water collection and protection component is provided with a water seepage component, and the two sides of the inner surface of the water collection and protection component are provided with water drainage components. When the shower tent body 100 is used for showering, the wastewater from the shower is collected and discharged to the outside by the wastewater collection and drainage mechanism at the bottom of the inner surface of the heat insulation tarpaulin 101, and the drainage is convenient.
[0027] In order to facilitate the centralized collection and discharge of wastewater through the water collection and protection component, in this embodiment, preferably, the water collection and protection component includes a flexible water collection plate 1012 laid inside the bottom of the tent frame 102. The flexible water collection plate 1012 has symmetrical built-in water-guiding inclined grooves 1014 on both sides inside. When showering, one can stand inside the flexible water collection plate 1012, and the wastewater directly enters the interior of the flexible water collection plate 1012 for collection and discharge.
[0028] In order to facilitate the drainage of wastewater from the surface of the shower using the permeable component, in this embodiment, preferably, the permeable component includes a support column 1016 integrally formed at equal intervals inside the built-in inclined water-guiding groove 1014. The end of the support column 1016 is located inside the flexible water collection plate 1012 and supports a flexible perforated panel 1013. When in use, the flexible perforated panel 1013 can be laid inside the flexible water collection plate 1012 supported by the support column 1016. When showering, the showerer stands on the surface of the flexible perforated panel 1013 and the wastewater seeps into the bottom for collection and drainage. When not in use, the flexible water collection plate 1012 and the flexible perforated panel 1013 can be disassembled and rolled up for storage.
[0029] In order to facilitate the drainage of infiltrated water to the outside through the water drainage component, in this embodiment, preferably, the water drainage component includes side water drainage channels 1015 located on both sides of the bottom of the built-in water drainage inclined channel 1014 inside the flexible water collection plate 1012. The end of the side water drainage channel 1015 is provided with a drain outlet 1011 on the front surface of the flexible water collection plate 1012, and the drain outlet 1011 extends to the outer surface of the thermal insulation tarpaulin 101. Water can be drawn into the interior of the side water drainage channel 1015 by the built-in water drainage inclined channel 1014 and then enter the drain outlet 1011 and drain pipe to be discharged to the outside, which facilitates drainage treatment.
[0030] The reinforcement mechanism includes reinforcement connection components disposed at both ends of the thermal insulation tarpaulin 101. The bottom end of the reinforcement connection component is provided with an embedded installation component. When the thermal insulation tarpaulin 101 and the tent frame 102 are installed and used, the reinforcement mechanism can reinforce the installation between the tent frame 102 and the thermal insulation tarpaulin 101 again, making the use more stable.
[0031] In order to facilitate the reinforcement of the thermal insulation tarpaulin 101 and the tent frame 102 at the location of use by means of a reinforced connection component, in this embodiment, preferably, the reinforced connection component includes a reinforcing wide band 1021 that is sewn onto both ends of the thermal insulation tarpaulin 101, and the two reinforcing wide bands 1021 are symmetrically arranged. After the thermal insulation tarpaulin 101 and the tent frame 102 are installed at the location of use, the reinforcing wide band 1021 can be extended to the bottom end for fixed reinforcement, making the use more stable.
[0032] To facilitate the fixing of the bottom end of the reinforcing broadband 1021 to the ground via the embedded installation assembly, in this embodiment, preferably, the embedded installation assembly includes a rigid base plate 1022 fixed to the bottom end of the reinforcing broadband 1021 by screws. An embedded rod 1023 passes through the interior of the rigid base plate 1022. Auxiliary rods are provided on both sides of the bottom end of the embedded rod 1023. When the embedded rod 1023 is embedded in the ground, it is reinforced by the auxiliary rods, thereby fixing the rigid base plate 1022 to the bottom end of the reinforcing broadband 1021, which facilitates the fixing and installation.
[0033] The working principle and usage process of this utility model are as follows: When using this heat-insulating and breathable shower tent, firstly, the tent frame 102 is installed and supported on the ground. Then, the heat-insulating tarpaulin 101 is closed on the outer surface of the tent frame 102. When showering, hot water is injected into the water supply bag 107 and cold water is injected into the water storage tank 106. When showering inside the heat-insulating tarpaulin 101, the heat-insulating tarpaulin 101 isolates the outside world for heat preservation. The water pump 105 is activated to draw water from the water storage tank 106 and the water supply bag 107 and enter the water inlet pipe 104 through the hose. When drawing water, the switch connected to the end of the water supply bag 107 is adjusted to make the hot water flow slower and the switch connected to the end of the water storage tank 106 is adjusted to make the cold water flow faster for constant temperature treatment before being drawn out. Then, the switch connected to the shower head 108 is turned on to shower.
[0034] Then, before showering, after the tent frame 102 is installed, the flexible water collection plate 1012 is laid on the bottom of the inner bottom of the thermal tarpaulin 101. The end of the drain outlet 1011 extends to the front surface of the thermal tarpaulin 101 and is connected to the drain pipe, with the tail end of the drain pipe inside the drain channel. When showering inside the thermal tarpaulin 101, the showerer stands on the surface of the flexible perforated panel 1013 inside the flexible water collection plate 1012, supported by the support columns 1016, making it less prone to deformation and damage. When the wastewater from the shower falls onto the surface of the flexible perforated panel 1013, it seeps into the interior of the flexible water collection plate 1012 and is guided to the side through the built-in water guide inclined groove 1014, entering the interior of the side water guide groove 1015. The water is then guided through the side water guide groove 1015 and enters the drain pipe through the drain outlet 1011 to be discharged to the outside. This design facilitates the collection and treatment of wastewater during showering, making it less likely for water to appear around the shower and ensuring the safe placement and use of the equipment. It also improves the convenience of collecting and draining wastewater from the bottom of the shower tent body 100 during use.
[0035] Finally, before using the shower tent body 100, after the tent frame 102 is fixed to the fixed insulation tarpaulin 101, the reinforcing wide strip 1021 is extended to the bottom again, the rigid base plate 1022 contacts the ground, the embedded rod 1023 and the auxiliary rod are embedded into the ground to fix the rigid base plate 1022 and the reinforcing wide strip 1021, and the tent frame 102 is reinforced after the reinforcing wide strip 1021 is fixed, so that the shower tent body 100 is more stable to install and use, and more stable when used in windy weather, thus improving the stability of the shower tent body 100 during use.
[0036] Although embodiments of the present invention have been shown and described (see the detailed description above), it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A heat-insulating and breathable shower tent, comprising a shower tent body (100), the shower tent body (100) comprising a tent frame (102), the outer surface of the tent frame (102) being provided with a heat-insulating tarpaulin (101), the front surface of the heat-insulating tarpaulin (101) being provided with a door curtain, a water inlet main pipe (104) being installed at the middle position of the inner top of the tent frame (102) by a fastening clamp, and shower heads (108) being equidistantly arranged on both sides of the inner top of the tent frame (102), and the shower heads (108) being connected to the water inlet main pipe (104) by a hose, characterized in that: The main body (100) of the shower tent is also equipped with: Wastewater collection and drainage mechanism, and the wastewater collection and drainage mechanism includes a water collection and protection component set at the bottom of the tent frame (102), the inner surface of the water collection and protection component is provided with a water seepage component, and the inner two sides of the water collection and protection component are provided with water discharge components; The reinforcement mechanism includes reinforcement connection components disposed at both ends of the thermal insulation tarpaulin (101), and the bottom end of the reinforcement connection components is provided with an embedded installation component.
2. The insulated, ventilated shower tent of claim 1, wherein: Ventilation windows (103) are equidistantly arranged on both sides of the thermal insulation tarpaulin (101). A protective curtain is provided at the top of the ventilation window (103). A water pump (105) is provided at one end of the thermal insulation tarpaulin (101). The water pump (105) is connected to the side of the water inlet main pipe (104) through a connecting pipe. A water supply bag (107) and a water storage tank (106) are provided on one side of the water pump (105). The water storage tank (106) and the water supply bag (107) are connected to the water pump (105) through a connecting pipe with a water flow switch.
3. The insulated, vented shower tent of claim 1, wherein: The water collection and protection component includes a flexible water collection plate (1012) laid inside the bottom of the tent frame (102), and the flexible water collection plate (1012) has symmetrical built-in water-guiding inclined grooves (1014) on both sides inside.
4. The insulated, vented shower tent of claim 3, wherein: The water infiltration component includes equidistant, integrally formed support columns (1016) inside the built-in water-diverting inclined groove (1014), and the end of the support column (1016) is located inside the flexible water collection plate (1012) and supports a flexible perforated panel (1013).
5. The insulated, vented shower tent of claim 3, wherein: The water drainage assembly includes side water channels (1015) located on both sides of the interior of the flexible water collection plate (1012) at the bottom of the built-in water diversion inclined channel (1014). The end of the side water channel (1015) is provided with a drain outlet (1011) on the front surface of the flexible water collection plate (1012), and the drain outlet (1011) extends to the outer surface of the thermal insulation tarpaulin (101).
6. The insulated, vented shower tent of claim 1, wherein: The reinforcing connection assembly includes reinforcing broadband (1021) installed at both ends of the thermal insulation tarpaulin (101) by stitching, and the two reinforcing broadband (1021) are arranged symmetrically.
7. A thermal, breathable shower tent according to claim 6, characterized in that: The embedded mounting assembly includes a rigid base plate (1022) fixed to the bottom end of the reinforcing wide band (1021) by screws, and an embedded rod (1023) runs through the interior of the rigid base plate (1022). Auxiliary rods are provided on both sides of the bottom end of the embedded rod (1023).