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Evaluation of Environmental and Hydraulic Performance of Bio-Composite Revetment Blocks

机译:生物复合护岸块的环境和水力性能评估

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摘要

It is necessary to develop a concrete revetment block which can cater for environment and at the same time it will be effective in protecting river banks (stabilize the slope of banks) from scouring during flood. In the present study, the environmental and hydraulic performance of the proposed revetment block was evaluated through laboratory and field tests. The tested revetment block is called bio-composite because it is composed of concrete, plastic mesh and biological material (coconut husk). The dimensions of the bio-composite revetment block are 400 mm x 400 mm x 100 mm (length x width x thickness) and has a central opening with a dimensions of 280 mm x 140 mm that has a 10 mm layer of coconut husks protected by two layers of plastic mesh. The coconut husk was selected based on laboratory experiments. The experiments showed that the coconut husk is a good media for grass growth and it allows faster growth of grass compared with other tested types of biological wastes (sugar cane husk and oil palm husk). Field tests were conducted on a selected stream which is located at the Universiti Putra Malaysia, Selangor, Malaysia. The stream banks were protected from scouring by using the bio-composite blocks and monitoring after installation revealed that rate of grass growth was 15% per week. However, it was found that the rate of grass growth is depends on the slope of stream banks. This confirms that the proposed bio-composite block is friendly to the environment and can give a good aesthetic appearance. For a given water depth, hydraulic tests showed that the value of Manning coefficient of roughness for the bio-composite revetment blocks depends mainly on the rate of grass growth. The values of Manning coefficient roughness for the stream were found to range from 0.031 to 0.055
机译:有必要开发一种既能适应环境又能有效保护河岸(稳定河岸边坡)免遭洪水冲刷的混凝土护坡砌块。在本研究中,通过实验室和现场测试评估了拟建护岸砌块的环境和水力性能。经过测试的护岸板被称为生物复合材料,因为它由混凝土,塑料网和生物材料(椰子壳)组成。生物复合护岸块的尺寸为400毫米x 400毫米x 100毫米(长x宽x厚),并具有280毫米x 140毫米的中心开口,其中有10毫米的椰子壳被保护两层塑料网。根据实验室实验选择了椰子皮。实验表明,椰子皮是草生长的良好介质,与其他经过测试的生物废物类型(甘蔗皮和油棕皮)相比,椰子皮的生长速度更快。在位于马来西亚雪兰莪的马来西亚布特拉大学的选定溪流上进行了现场测试。通过使用生物复合材料块保护溪流免受冲刷,安装后的监测表明草的生长速度为每周15%。但是,发现草的生长速度取决于溪流的坡度。这证实了提出的生物复合材料块对环境友好并且可以给出良好的美学外观。对于给定的水深,水力测试表明,生物复合护岸块的曼宁粗糙度系数值主要取决于草的生长速度。发现该流的曼宁系数粗糙度值在0.031至0.055的范围内

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