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Design considerations related to the performance of erosion control systems combined with soil bioengineering techniques

机译:与侵蚀控制系统结合土壤生物工程技术的性能相关的设计考虑因素

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The combined use of erosion control systems (commonly referred to as "nonliving systems") and live plants for the restoration of waterways requires the standardization of terminologies, material performance, and design criteria for each system. This will yield the combination of a correct engineering approach with the appropriate best management practices to produce the desired long term performance. This paper focuses on combining soil bioengineering techniques with sound engineering practices when dealing with soil erosion or overall instability problems. The performance will be discussed with a proposed multidisciplinary approach, in order to achieve the desired environmental effect. The concept of "Minimum Energy Level" will also be discussed to identify the best environmentally compatible solutions, typically ranging from simple to complex design scenarios. Due to the combined presence of inert materials and living plants, the field performance of the various solutions will evolve over time. The contributing factor will require one to test the strength characteristics of the systems both in the short and in the long term, in close relationship with the field performance criteria, in order to understand their function in waterways. The dynamics of the project site and the overall structural stability are greatly affected by these decisions.
机译:侵蚀控制系统的结合使用(通常称为“非生效系统”)和活植物用于恢复水道,需要对每个系统的术语,材料性能和设计标准进行标准化。这将使正确的工程方法与适当的最佳管理实践相结合,以产生所需的长期性能。本文侧重于在处理土壤侵蚀或整体不稳定问题时将土壤生物工程技术与健全的工程实践相结合。将以拟议的多学科方法讨论性能,以达到所需的环境效果。还将讨论“最小能级”的概念以确定最佳环境兼容的解决方案,通常从简单到复杂的设计方案。由于惰性材料和生物植物的结合存在,各种溶液的场性能将随着时间的推移而发展。贡献因素需要一个人在短期内和长期内测试系统的强度特征,与现场性能标准密切相关,以便理解其在水道中的功能。项目现场的动态和整体结构稳定性受到这些决定的大大影响。

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