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Applications of Geotextiles: 1. Hydraulic Engineering: Sea dykes, river embankments, lake embankments up to standard; reservoir reinforcement projects; reclamation projects; flood prevention and rescue operations. 2. Highway, rail, and airport engineering: soft foundation reinforcement; slope protection; reflective crack-resistant pavement structural layer; drainage system; green buffer strips. 3. Electrical Engineering: Nuclear Power Plant Foundation Engineering; Electric Ash Dam Engineering; Hydroelectric Power Plant Engineering. Port Channel Engineering: Port Geotextiles are divided into two types: non-woven geotextiles and woven geotextiles. Nonwoven geotextiles are available in needle-punched and hydroentangled varieties, as well as short and long fiber types. Non-woven fabric refers to materials that do not require weaving in the manufacturing process. Engineering fabrics refer to materials used in construction projects. A portion of these fabrics can be produced without weaving, which is known as non-woven geotextiles. Nonwoven materials have a wide range of applications. For instance, the Hessian wet wipes we use are made of nonwoven, as are the shoe polish cloths found in hotels. Detailed Introduction to Polyester Geotextile: 1: Isolation utilizing needle-punched geotextile made from polyester short fibers for materials with varying physical properties (particle size, distribution, viscosity, and density, etc.) Isolate construction materials (such as soil and sand particles, soil and concrete, etc.) to prevent loss and mixing between two or more materials. This maintains the overall structure and functionality of the materials, enhancing the load-bearing capacity of the structure. 2: Filter as water flows from fine-grained soil layers to coarse-grained soil layers, utilizing the excellent breathability and permeability of polyester short fiber needle-punched geotextile to allow water passage while effectively carrying soil particles, fine sand, small stone materials, etc., to maintain the stability of water and soil engineering. 3: The drainage polyester short fiber needle-punched geotextile has excellent water conductivity, forming drainage channels within the soil mass to expel excess liquids and gases from the soil structure. 4: Reinforced with polyester short fiber needle-punched geotextile to enhance the tensile and deformation resistance of soil mass, strengthening the stability of the building structure, and improving the soil quality. 5: During the scouring of soil by protective water flow, effectively diffuse, transmit, or decompose concentrated stress to prevent soil from being damaged by external forces.

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