A reverse-rotating turbine assembly for the movement of floating plants.

TH27837UActive Publication Date: 2026-04-17SURANAREE UNIVERSITY OF TECHNOLOGY
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Patent Information

Authority / Receiving Office
TH · TH
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2025-06-26
Publication Date
2026-04-17

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Abstract

OCR 06WT This reverse-direction turbine assembly for floating plant movement consists of a set of blades arranged in... The turbine assembly runs horizontally along its entire length, divided into two sets, with covers at the front and back to prevent floating vegetation from growing on it. Water splashes against the well wall and is secured to the drive shaft by a flange, which is then attached to the bearing housing and connected to... A gear reduction system, powered by an electric motor, drives the propeller to rotate in the opposite direction, allowing the floating plants to move. Efficiently assembled, the entire structure is mounted to the well using outer well-edge clamps and upper clamps. The central dividing wall of the pond contains L-shaped metal plates that can be adjusted in alignment and spacing to securely fasten to the pond edge. Without causing damage, by applying pressure through the screws that hold and prevent cracking of the well edges. จากแรงกดดังกล่าว
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Claims

OCR 06WT 1. The reverse-direction turbine assembly, designed to improve the efficiency of small floating plants, consists of: - Propeller assembly (101) The propellers are arranged continuously horizontally along the length of the propeller assembly or along the length. of the pond area by dividing the impeller into 2 sets with plates covering the head and tail of the impeller set (102) covering the head and The rear of each turbine blade assembly serves to prevent floating plants from being thrown against the pond walls. It is mounted onto the drive shaft of the assembly. The turbine (103) is located at the head and tail of each set of blades (101), with the center of the head and tail covers of The turbine assembly (102) is drilled with holes for fitting the turbine drive shaft (103) and the end plates of the turbine assembly are secured. The impeller (102) is connected to the turbine drive shaft (103) using a flange as a mount for the turbine drive shaft (103) on one side. The drive shaft of the turbine assembly (103) is held in place by a pillow block bearing (104) which is connected to the reduction gear assembly (106). It is connected to an electric motor (105) and acts as a power transmission system to drive the turbine assembly. Its special characteristics include: - The reversing rotation of each set of propellers causes the small floating plants to move together. - Outer edge mounting bracket (107) for both outer edges of the well, secured to the well edge, and also made Function as a bearing holder (104) - - The central partition wall mounting bracket (108) is attached to the central partition wall by being fixed to the edge of the central partition wall. It also serves as a holder for pillow block bearings (104) and reduction gears (106). - The outer edge mounting bracket (107) and the inner edge mounting bracket (108) are fitted with a cross-sectional metal plate. It is L-shaped (111) and fits into the head and tail grooves of the outer well clamp (107) and the wall clamp. The middle barrier of the pit (108) is made of pieces that always fit together and control the direction of movement in and out. A plane to adjust the distance according to the thickness of the well edge, in which an L-shaped cross-section metal plate (111) is screwed. (112) attached to the side of the outer well edge mounting bracket (107) and the middle well edge mounting bracket (108). Press the metal sheet into an L-shape (111) and press the edges of the well and the middle wall of the well tightly. The metal sheet The L-shaped cut (111) also helps to support the pressure from the screw (112), preventing the edges of the well from cracking or being damaged. Due to the pressure of the screw (112)