TRANSPARENT WATERWAY TRAINING APPARATUS WITH BUFFER MODULE AND CONTAMINANT CAPSULE.

TR202609476U5Pending Publication Date: 2026-06-22SAMSUN İLKADIM İLKOKUL HEZARFEN AHMET ÇELEBİ +10
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Patent Information

Application Number
TR202609476U
Authority / Receiving Office
TR · TR
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-06-12
Publication Date
2026-06-22
Estimated Expiration
2036-06-12
Patent Text Reader

Abstract

This invention relates to a transparent waterway training apparatus with a contaminant capsule and buffer module. The apparatus comprises a transparent waterway body, a source water reservoir, a flow inlet nozzle, a contaminant capsule housing, a contaminant capsule, a capsule perforation projection, a contaminant mixing zone, a buffer module housing, a removable buffer module, a pre-buffer observation window, a post-buffer observation window, a graduated diffusion chamber, and a discharge collection chamber. When the contaminant capsule is placed in the contaminant capsule housing, the capsule perforation projection perforates the lower opening surface of the capsule. The contaminant representative content mixes with the water flow in the contaminant mixing zone. The water carrying the contaminant representative content passes through the pre-buffer observation window and then through the removable buffer module placed in the buffer module housing. The water exiting the buffer module is monitored in the post-buffer observation window and collects in the graduated diffusion chamber.The pre-buffer observation window and the post-buffer observation window show the difference in apparent dispersion of the pollutant representative content before and after the buffer module on the same transparent waterway body.
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Description

TRANSPARENT WATERWAY WITH BUFFER MODULE AND POLLUTANET CAPSULE TRAINING DEVICE 1. TECHNICAL FIELD This invention is used in environmental education devices, water pollution education setups, and classroom flow monitoring. systems, transparent channel-structured educational apparatus, pollutant dispersion demonstration devices, Modular buffer training systems and hands-on waterway training tools for children. It is related to. The invention specifically comprises a transparent water channel body, a water source reservoir, a flow inlet nozzle, and a contaminant capsule. housing, contaminant capsule, capsule puncture protrusion, contaminant mixing zone, buffer module housing, removable buffer module, pre-buffer observation window, post-buffer Training system including observation window, graduated spreading chamber and discharge collection chamber. It relates to the apparatus. The device described in the invention contains a locked container in which the pollutant representation content is dispersed onto a free surface instead of being dispersed. controlled release of the pollutant from the pollutant capsule housing into a transparent linear waterway; pollutant dispersion from two separate observation windows, one before the buffer module and one after the buffer module It enables comparative monitoring. 2. STATE OF KNOWLEDGE OF THE ART In the current state of the art, water pollution includes basin pollution, diffuse pollutant transport, and stormwater runoff. Different training setups are used for training on water flow, water treatment processes, and filtration. Patent number US5427530A describes a portable basin model that simulates water pollution. This document explains the basin surface, water body, point source pollutants, and distribution. The exhibits include pollutant sources, simulated pollutants, and a liquid dispersant representing rain. This model posits that pollutants are transported from the basin surface into the water body by the effect of rain. However, this document shows the pollutant representation content in a transparent linear waterway. Controlled release interlocking contaminant capsule housing, capsule puncture protrusion, buffer module housing, Removable buffer module, pre-buffer observation window and post-buffer observation window. The window is not included. Application number US20080020360A1 and the water purification training model within the same family, drinking water 35 water treatment and purification processes are demonstrated using a portable model. In this system... a representation of the water source, treatment units, wastewater treatment sections and water treatment processes. There are structures aimed at 1-5. However, this structure is a linear transparent waterway for children. Controlled opening of the contaminant capsule and pre- and post-release of the buffer module. It is not based on the principle of showing the difference in two separate observation windows. Utility model number CN202921035U, filtration mechanism for teaching laboratory. This document describes the experimental setup. It includes the raw water tank, high-level tank, and filter. The structure includes a column, a dosing bottle, pumps, and a transparent filter column. It demonstrates the filtration mechanism at the laboratory level. In contrast, the application... The subject of the invention is not the filter column; it is the transparent linear waterway observed by the child. contaminant capsule housing, capsule puncture protrusion, removable buffer module, pre-buffer observation window, post-buffer observation window and graded dispersion chamber It is based on their unity. Utility model number CN204474489U is a comprehensive model for urban wastewater treatment technology. The applied training system is explained. In this system, the screening tank, sedimentation tank, anaerobic pool, oxidation ditch, secondary sedimentation tank, disinfection tank, clean water This document outlines wastewater treatment plant components such as tanks and monitoring systems. The application focuses on the educational modeling of a water treatment plant. The invention in question is wastewater treatment. It is not a water treatment plant model; it is one in which the pollutant capsule is opened in a controlled manner into a transparent waterway, and The propagation before the buffer module and the propagation after the buffer module are two separate entities. It is a small-scale educational apparatus that is compared in the observation field. Utility model CN202916252U is used for watershed pesticide water pollution research. This describes a simulated flowing water system. This system includes a clean water pool and a drug feeding system. The system includes a test water tank, multiple channel layers, a circulation system, and a recovery pool. It is located here. This document is a research document concerning a flowing water system. Application The subject of the invention is a multi-layered channel system for research purposes, instead of a classroom teaching system. single transparent linear waterway used, lockable contaminant capsule holder, removable bumper The module includes two observation windows and a graduated dispersion chamber. There are also watershed training models on the market, such as EnviroScape. In these models... As rain falls across the land, the soil releases chemical compounds and oils. The process of transporting substances into the body of water is visually demonstrated by NOAA. In the "Watershed in a Box" activity, students also create a watershed model, and specific They add pollutants to 35 areas and observe how rain carries the pollutants away. This type of Educational materials teach about pollution transport via watershed surface and rainwater runoff. In the invention that is the subject of the application, pollutants are not sprinkled onto the model surface; the pollutant is represented. The contents are kept inside the capsule, which is then opened in a controlled manner within its housing, into a transparent linear channel. 2 5 is given and through the pre- and post-buffer module observation windows They are being compared. In academic literature, the role of waterfront buffer zones in reducing pollutants and sediments is discussed. The effect of agricultural spread in buffer zones known as riparian buffer zones has been studied. There are studies examining the impact of pollution on water quality. These studies... buffer zones are natural and engineering-based structures that reduce pollutant transport. This demonstrates that the invention in question measures the actual environmental buffer zone performance. It is not a system; it utilizes the buffer zone concept within the classroom via a removable buffer module. It is a physical education device that makes observation possible. Therefore, in the current state of the technology, basin models, water treatment training models, filtration experimental setups, wastewater treatment training systems, pesticide pollution research Despite the existence of scientific studies on channels and buffer zones; the invention in question located lockable contaminant capsule housing, capsule puncture protrusion, transparent linear waterway, Removable buffer module, pre-buffer observation window, post-buffer observation A combined training window and graduated emission chamber in a single training device. It is not explained. 3. THE PURPOSE OF THE INVENTION The purpose of this invention is to deliver the pollutant representation content in a transparent linear waterway in a controlled manner. The goal is to create an educational device with contaminant capsules that facilitates the delivery of contaminants. Another objective of the invention is to deliver the pollutant representation content to the water flow not from a free surface, but in a locked-in system. The goal is to ensure that the contaminant is delivered through the capsule housing. Another purpose of the invention is to allow the contaminant capsule to be released from a designated point via a capsule piercing projection. The aim is to open it and direct the pollutant representative content into the mixing zone. Another objective of the invention is to buffer pollutant dispersion thanks to a removable buffer module. The aim is to enable monitoring in separate observation windows before and after the buffer zone. Another purpose of the invention is to regulate water flow through the buffer module when the buffer module is installed. The goal is to create a module slot and sealing edge that allows it to pass through. Another objective of the invention is to represent the pollutant content in water via a graduated dispersion chamber. The goal is to visually demonstrate the level of spread it has reached. 35 Another aim of the invention is to create a transparent, modular system used with safe representational content within the classroom. Reusable waterway training that provides comparison through observation windows. The goal is to create the apparatus. 3 5 4. EXPLANATION OF THE FIGURES No form is included in the application. 5. EXPLANATION OF REFERENCES IN THE FIGURES Since no figures are included in the application, a reference list is not provided. DETAILED DESCRIPTION OF THE 6TH INVENTION 6.1 General structure 6.1.1 The invention relates to a transparent water channel training apparatus with a buffer module and contaminant capsule. 6.1.2 Training apparatus; transparent water channel body, source water reservoir, flow inlet nozzle, contaminant capsule housing, contaminant capsule, capsule puncture protrusion, contaminant mixing zone, buffer module slot, removable buffer module, pre-buffer observation window, buffer post-observation window, graduated diffusion chamber, contrast backplate, discharge collection It includes a reservoir and a base support body. 6.1.3 Transparent water channel body, linear flow line of water from the source water reservoir It is the main channel structure through which it progresses and where the polluting representation content is observed. 6.1.4 The water reservoir is the reservoir that supplies water to the transparent waterway body during training. 6.1.5 The flow inlet nozzle directs water from the source water reservoir through a narrowed cross-section into a transparent channel. It directs water into the waterway body. 6.1.6 The contaminant capsule housing is fixed on the transparent waterway body of the contaminant capsule. It is a locked storage structure where the device is held in place. 6.1.7 Contaminant capsule, containing representative contents of the contaminant and opened via the capsule piercing projection. It is a closed capsule structure. 6.1.8 Pollutant mixing zone, transparent channel where the pollutant representative content mixes with the water flow. It is a section. 6.1.9 Buffer module housing, inside the transparent waterway body of the removable buffer module It is the module bearing in which the flow line is placed. 6.1.10 Removable buffer module, porous retaining layer through which water flows, and It is a training module containing a module framework. 6.1.11 Pre-buffer observation window, pollutant representation content into the buffer module It is a transparent window area that shows the appearance before arrival. 35 6.1.12 Post-buffer observation window, pollutant representation content from buffer module It is a transparent window area that shows the subsequent appearance. 6.1.13 Graded diffusion chamber, where post-buffer flow is collected and the diffusion level is determined. It is a transparent container that is monitored via graduated markings. 4 5 6.2 Transparent waterway body 6.2.1 The transparent waterway body is the main channel structure that carries the water flow. 6.2.2 Transparent waterway body; inlet connection port, linear flow channel, upper transparent channel wall, translucent channel walls, channel base surface, contaminant mixing zone, buffer module The housing includes the connection area, the viewing window area, and the outlet connection port. 6.2.3 The inlet connection port allows water from the source water reservoir to enter the linear flow channel. It provides. 6.2.4 Linear flow channel, a transparent channel in which water flows in a single defined direction. It is a section. 6.2.5 The upper transparent channel wall and the side transparent channel walls allow the representation of the contaminant content in the channel. It allows the movement inside to be monitored from the outside. 6.2.6 Channel bottom surface, flat bottom to ensure balanced water flow along the channel. It is its structure. 6.2.7 The outlet connection port allows water to be transferred to the graduated distribution chamber. 6.3 Source water reservoir 6.3.1 The water source reservoir supplies the water used in the training apparatus to a linear flow channel. It is a reservoir. 6.3.2 Source water reservoir; reservoir body, filling spout, volume indicator markings, flow outlet It includes a spout, flow shut-off slide, and reservoir seating surface. 6.3.3 The reservoir body is the main reservoir structure that carries the water. 6.3.4 The filling opening allows water to be drawn into the reservoir. 6.3.5 Volume indicator markings show the amount of water in the source water reservoir. 6.3.6 The flow outlet allows water to pass through to the flow inlet nozzle. 6.3.7 The flow shut-off slider is set to the closed position for water flow prior to the training cycle. It holds. 6.3.8 Reservoir seating surface, fixed on the base support body of the source water reservoir. It makes it stop. 6.4 Flow inlet nozzle 6.4.1 The flow inlet nozzle directs the water from the source water reservoir through a defined narrow cross-section. It is a component structure that directs 35 linear flow channels. 6.4.2 Flow inlet nozzle; nozzle body, inlet throat, narrowed flow cross-section, outlet nozzle, nozzle It includes a fixing edge and a flow alignment surface. 6.4.3 The inlet orifice receives water from the outlet of the source water reservoir. 5 6.4.4 The narrowed flow cross-section limits the flow width of water entering the linear flow channel. 6.4.5 The outlet directs the water towards the contaminant mixing zone. 6.4.6 Flow alignment surface ensures the orderly progress of water along the channel bottom surface. It provides. 6.5 Contaminant capsule housing 6.5.1 Contaminant capsule housing, the contaminant capsule is designated on the transparent waterway body. It is a locked structure that holds it in place. 6.5.2 Contaminant capsule housing; capsule entry opening, capsule seating surface, capsule locking mechanism. claw, capsule puncture protrusion, sealing edge, contaminant discharge opening, and safety It includes a flap. 6.5.3 The capsule entry port allows the contaminant capsule to be placed in the housing. 6.5.4 The capsule seating surface ensures that the contaminant capsule remains in a fixed position within the housing. It provides. 6.5.5 The capsule locking tab prevents the contaminant capsule from separating from the housing during training. It prevents. 6.5.6 Capsule puncture protrusion: When the contaminant capsule is pressed into the housing, the bottom of the capsule opens. It pierces the surface. 6.5.7 The sealing edge prevents the capsule contents from leaking out of the contaminant discharge opening. It prevents. 6.5.8 Contaminant discharge opening, representative content of contaminant exiting the capsule into the contaminant mixture. It directs to the region. 6.5.9 The safety flap must remain closed when the contaminant capsule is removed, preventing the capsule opening from being blocked. It holds. 6.6 Contaminant capsule 6.6.1 The contaminant capsule is a sealed training capsule containing representative contaminant contents. 6.6.2 Contaminant capsule; capsule body, upper gripping surface, lower opening surface, representative contents The compartment includes a capsule seat edge and a capsule lock strike plate. 6.6.3 The capsule body is the main part that carries the representative contents compartment. 35 6.6.4 The upper gripping surface allows for the manual placement of the contaminant capsule into the housing. 6.6.5 The lower opening surface is the thin surface that opens with the capsule piercing projection. 6.6.6 Representation content compartment, colored particle, colored liquid representation content and sediment representation particle It is a safe space containing educational content. 6 5 6.6.7 Capsule seating edge ensures the contaminant capsule sits perfectly on the capsule seating surface. It provides. 6.6.8 The capsule lock strike plate engages with the capsule locking tab, securing the capsule in its housing. It fixes it in place. 6.7 Pollutant mixing zone 6.7.1 The contaminant mixing zone is the area where the representative contents from the contaminant capsule are carried by water flow. It is the transparent channel section where they join. 6.7.2 Contaminant mixing zone; capsule discharge inlet opening, flow mixing surface, transparent It includes a mixing wall, a guide vane, and a mixing outlet section. 6.7.3 Capsule discharge inlet opening, representative content from contaminant discharge opening. It is receiving. 6.7.4 The flow mixing surface ensures the distribution of the representative content within the water flow. 6.7.5 The transparent mixing wall allows the mixing process to be observed from the outside. 6.7.6 The steering vane directs the representation content to the middle region of the linear flow channel. It directs. 6.7.7 Mixture outlet cross-section, pre-buffering observation of water containing representative pollutant content. It transfers it to the window. 6.8 Observation window before tampon insertion 6.8.1 Pre-buffer observation window, pollutant representation content into the buffer module It is a transparent observation area that shows the situation before arrival. 6.8.2 Pre-buffering observation window; transparent window wall, pre-observation scale, contrast It includes a backplate, flow direction marking, and window mounting edge. 6.8.3 Transparent window wall, representing the concentration of pollutant content in the flow It allows for observation. 6.8.4 The preliminary observation scale indicates the apparent dispersion level of the pollutant representative content. 6.8.5 Contrast background allows for clearer viewing of color representation content through the window. It provides. 6.8.6 The flow direction symbol indicates the direction of water flow towards the buffer module. 35 6.9 Buffer module slot 6.9.1 Buffer module housing, on the transparent waterway body of the removable buffer module It is the module bearing in which the flow line is placed. 7 5 6.9.2 Buffer module housing; module inlet opening, module seating surface, sealing channel, flow inlet opening, flow outlet opening, module locking tab, and module stop surface It includes. 6.9.3 Module inlet port, for inserting the removable buffer module into the slot. It provides. 6.9.4 Module seating surface ensures the buffer module remains stable on the flow line. It provides. 6.9.5 The sealing channel prevents water from escaping around the buffer module. 6.9.6 Flow inlet opening, water from the pre-buffer observation window into the buffer. It enables entry into the module. 6.9.7 Flow outlet opening, observation of water exiting the buffer module after buffering. It transfers it to the window. 6.9.8 The module locking tab holds the buffer module securely in its housing during training. 6.9.9 Module stopping surface, designated final placement position of the buffer module. It prevents it from overcoming the obstacle. 6.10 Removable buffer module 6.10.1 Removable buffer module, through which the water flow passes and the pollutant representation content It is a modular training component that changes its visible spread. 6.10.2 Removable buffer module; module frame, flow passage window, porous retainer layer, plant root representation surface, sediment retention compartment, module holding handle, sealing edge and includes a module lock counterpart. 6.10.3 The module frame is the main supporting structure of the buffer module. 6.10.4 The flow passage window allows water to pass through the buffer module. 6.10.5 Porous retaining layer, color particle and sediment representation particles in flow. It is a physical layer that reduces its spread. 6.10.6 The plant root representation surface is the surface that visually represents the buffer zone concept. 6.10.7 Sediment trap compartment, module that traps a portion of the sediment representation particles arriving by flow. It holds it inside. 6.10.8 The module retaining handle facilitates the insertion and removal of the buffer module from the housing. It provides 35. 6.10.9 Sealing edge in contact with the sealing channel in the buffer module housing. is doing. 8 5 6.10.10 Module lock counterpart, buffer module by establishing a relationship with the module locking tab. It secures it in place. 6.11 Post-tampon observation window 6.11.1 Post-buffer observation window, pollutant representation content from buffer module It is a transparent observation area that shows the subsequent view. 6.11.2 Post-buffering observation window; transparent window wall, final observation scale, contrast The back plate includes comparison markings and a window mounting edge. 6.11.3 Transparent window wall, visible from the outside to the flow exiting the buffer module. It makes it traceable. 6.11.4 The final observation scale represents the level of representative content seen after the buffer modulus. It shows. 6.11.5 The contrasting backplate makes it easier to observe the difference in representation content. 6.11.6 Comparison signals, observation window before buffer and observation window after buffer. It allows the difference between the windows to be monitored on the same panel. 6.12 Graded diffusion chamber 6.12.1 Graded expansion chamber, where post-buffering water is collected and the expansion level It is a transparent container in which observation is made. 6.12.2 Graded diffusion chamber; chamber body, inlet opening, transparent level wall, graduated The distribution markers include the bottom sediment area, the upper clarity area, and the outlet. 6.12.3 The reservoir body is the main reservoir structure that carries the water after the buffer. 6.12.4 The inlet receives water from the post-buffering observation window. 6.12.5 Transparent leveling wall allows external monitoring of the spreading status inside the reservoir. It provides. 6.12.6 Graded dispersion signals indicate the visible level of the representation content within the reservoir. It shows. 6.12.7 Bottom sediment area, sediment representation: accumulation of sediment particles at the bottom of the reservoir. It shows. 6.12.8 The upper clarity area shows the clearer water appearance in the upper section of the reservoir. 35 6.12.9 The outlet allows water to be transferred to the drainage collection tank. 6.13 Discharge collection container 6.13.1 The drain collection tank is the tank that collects the water at the end of the training cycle. 9 5 6.13.2 Discharge collection hopper; collection hopper body, inlet connection, removable It includes a container lid, carrying handle, volume indicator markings, and a discharge spout. 6.13.3 Collection chamber body, transparent waterway body and graduated spreading chamber It collects the incoming water. 6.13.4 The inlet connection connects to the outlet of the graduated dispersion chamber. 6.13.5 The removable container lid allows for easy cleaning of the container after training. 6.13.6 The carrying handle enables the collection container to be carried by hand. 6.13.7 Volume indicator signs show the amount of water collected. 6.13.8 The drain opening allows for controlled emptying of the water from the collection tank. 6.14 Base support body 6.14.1 Base support body, the main component that ensures the training apparatus remains stable on the table. It is a support structure. 6.14.2 Base support body; lower support plate, water reservoir seating area, transparent water road body seating channel, graded spreading chamber seating area, discharge collection chamber It includes a seating area and non-slip base surfaces. 6.14.3 The lower support plate carries the apparatus components on the same plane. 6.14.4 Transparent waterway body seating channel, linear flow channel fixed during training It ensures that it remains in that position. 6.14.5 Non-slip base surfaces prevent the device from sliding on the table. 6.15 Working relationship 6.15.1 The water reservoir is being filled with water. 6.15.2 The contaminant capsule is placed in the contaminant capsule housing. 6.15.3 When the contaminant capsule is pressed into the housing, the capsule's puncture protrusion opens the lower opening surface. It is piercing. 6.15.4 Pollutant representation content, from the pollutant discharge opening to the pollutant mixing zone. It is passing. 6.15.5 Water from the source water reservoir flows into the linear flow channel via the flow inlet nozzle. It is heading in that direction. 35 6.15.6 The pollutant representative content mixes with water flow in the pollutant mixing zone. 6.15.7 Water containing a pollutant representative content passes through the pre-buffer observation window. 6.15.8 Water flow when the removable buffer module is placed in the buffer module housing It passes through the buffer module. 5 6.15.9 Water exiting the buffer module passes through the post-buffer observation window. 6.15.10 Post-tamping water is transferred to a graduated spreading chamber. 6.15.11 Markers in the graded dispersion chamber indicate the apparent dispersion level of the representation content. It shows. 6.15.12 At the end of the training cycle, water is collected in the drain collection tank. 7. INDUSTRIAL APPLICABILITY The invention is a transparent waterway training apparatus with a buffer module and pollutant capsule; made of plastic. injection molding, transparent plastic sheet forming, channel body manufacturing, capsule housing manufacturing, Module frame production, mechanical claw assembly, reservoir production, and classroom training equipment. It is produced on an industrial scale using assembly techniques. Transparent waterway body, pre-buffer observation window, post-buffer observation window The graduated dispersion chamber is manufactured from transparent plastic material. Contaminant capsule holder, capsule puncture protrusion, capsule locking tab, safety flap. and sealing edge with plastic injection and mechanical assembly techniques. is being created. Removable buffer module; module frame, porous retaining layer, plant root representation. the surface will include a sediment retention compartment, sealing edge and module holding handle It is produced. The device in question is suitable for kindergartens, primary schools, secondary schools, adult education centers, science centers, and environmental settings. It is used in training workshops, water awareness training, and sustainability training. 11

Claims

1. It is a transparent waterway training apparatus with a buffer module and contaminant capsule; its feature is transparency. water channel body, spring water reservoir, spring water reservoir and transparent water channel body The flow inlet nozzle located between them, the contaminant located on the transparent waterway body. capsule holder, contaminant capsule inserted into and removed from the contaminant capsule holder, contaminant The capsule piercing protrusion located inside the capsule housing releases contaminants from the capsule. a contaminant mixing zone that combines the representation content with water flow, transparent waterway body The bumper module slot located on it allows the bumper module to be inserted into and removed from the bumper module slot. Removable buffer module, pre-buffer located before buffer module housing. observation window, post-buffer observation located after the buffer module slot window, graduated diffusion chamber where post-buffer flow is collected, and graduated It includes a drainage collection chamber that collects the water coming from the expansion chamber.

2. Is it a transparent waterway training apparatus with a buffer module and contaminant capsule according to Claim 1? Features include: transparent water channel body inlet connection port, linear flow channel, and transparent top. channel wall, lateral transparent channel walls, channel bottom surface, pollutant mixing zone, buffer module housing connection area, observation window area and output connection It involves the mouth.

3. Is it a transparent waterway training apparatus with a buffer module and contaminant capsule according to Claim 1? Features include: reservoir body, filling spout, and volume indicator of the water source reservoir. The markings include the flow outlet, flow shut-off slide, and reservoir seating surface.

4. Is it a transparent waterway training apparatus with a buffer module and contaminant capsule according to Claim 1? Features include: flow inlet nozzle body, inlet throat, narrowed flow cross-section, outlet. It includes the mouth, nozzle mounting edge, and flow alignment surface.

5. Is it a transparent waterway training apparatus with a buffer module and contaminant capsule according to Claim 1? Features; contaminant capsule housing, capsule inlet mouth, capsule seating surface, capsule locking tab, capsule puncture protrusion, sealing edge, contaminant discharge It has 35 openings and includes a safety flap. 12 5 6. According to claim 5, is it a transparent waterway training apparatus with a buffer module and contaminant capsule? Its feature is that the capsule's puncture protrusion releases the contaminant when the contaminant capsule is pressed into the housing. The capsule is positioned to pierce the lower opening surface.

7. Is it a transparent waterway training apparatus with a buffer module and contaminant capsule according to Claim 1? Its features include; the capsule body of the contaminant capsule, the upper gripping surface, and the lower opening surface, The representation includes a content compartment, a capsule seating edge, and a capsule locking mechanism.

8. According to claim 7, is it a transparent waterway training apparatus with a buffer module and contaminant capsule? Its feature is the representation of the content compartment, which includes colored particles, colored liquid representation content, and sediment. It is arranged in a volume large enough to carry the representation particle.

9. According to Claim 1, is it a transparent waterway training apparatus with a buffer module and contaminant capsule? Its feature is the capsule discharge inlet opening of the contaminant mixture zone, flow mixing. surface, transparent mixing wall, guiding vane and mixing outlet cross-section It includes.

10. According to Claim 1, is it a transparent waterway training apparatus with a buffer module and contaminant capsule? Features include: transparent window wall of the pre-buffer observation window, pre-observation scale, It includes a contrasting backplate, flow direction marking, and window fixing edge.

11. According to Claim 1, is it a transparent waterway training apparatus with a buffer module and contaminant capsule? Features; buffer module housing module inlet opening, module seating surface, sealing channel, flow inlet opening, flow outlet opening, module locking tab and The module includes a stopping surface.

12. According to claim 11, is a transparent waterway training apparatus with a buffer module and contaminant capsule? Its feature is that the water flow of the sealing channel passes around the buffer module. The reason is that the buffer module is arranged in a position within its housing that will prevent obstruction. 35 13. According to Claim 1, it is a transparent waterway training apparatus with a buffer module and contaminant capsule. Features include: removable buffer module frame, flow transition window, porous retaining layer, plant root representation surface, sediment retaining compartment, module retention It includes a handle, a sealing edge, and a module lock strike plate. 13 5 14. According to claim 13, it is a transparent waterway training apparatus with a buffer module and contaminant capsule. Its feature is that the porous retaining layer is positioned within the flow passage window. It is the fact that.

15. According to claim 13, is a transparent waterway training apparatus with a buffer module and contaminant capsule? Its feature is the sealing channel in the buffer module housing of the sealing edge. They are arranged around the module frame in such a way that they will make contact.

16. According to Claim 1, it is a transparent waterway training apparatus with a buffer module and contaminant capsule. Its feature is the transparent window wall of the observation window after buffering, the final observation. scale, contrast backplate, comparison marks and window fixing edge It includes.

17. According to Claim 1, it is a transparent waterway training apparatus with a buffer module and contaminant capsule. Its features include: a graduated diffusion chamber with a chamber body, inlet opening, and transparent leveling wall. Graded dispersal markers include bottom sediment area, upper clarity area and outlet.

18. According to claim 17, it is a transparent waterway training apparatus with a buffer module and contaminant capsule. Its feature is that the graded spread markings are at different heights on a transparent leveling wall. It is organized at different levels.

19. According to Claim 1, it is a transparent waterway training apparatus with a buffer module and contaminant capsule. Features; discharge collection hopper, collection hopper body, inlet connection, Removable container lid, carrying handle, volume indicator markings and emptying mechanism. It involves the mouth.

20. According to Claim 1, it is a transparent waterway training apparatus with a buffer module and contaminant capsule. Features include: lower support plate of the base carrier body, seating area for the water reservoir, transparent waterway body seating channel, graduated spreading chamber seating area, discharge It includes a collection container, a seating area, and non-slip base surfaces. 35 21. According to Claim 1, it is a transparent waterway training apparatus with a buffer module and contaminant capsule. The feature is the observation window before the buffer and the observation window after the buffer. 14 5 transparent waterway bodies positioned along the same observation line It is the fact that.

22. According to Claim 1, it is a transparent waterway training apparatus with a buffer module and contaminant capsule. Features include: contaminant capsule holder, pre-buffer observation window, buffer module. linear flow of the housing, post-buffer observation window and graded diffusion chamber They are arranged in a sequential position along a straight line.