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Hydrological function of berms within a waste landform design

机译:废物地貌设计中巴塞尔斯的水文作用

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Berms remain a persistent feature in waste dump landform designs as they are perceived to provide the benefits of reduced slope length, protection against future batter erosion by partitioning the slope with level or backsloping berms, and reduced flow velocity. Underpinning this rationale is the belief that the berms will be a permanent and unchanging feature that controls erosion over the long term. These assumptions are not true. Berms begin to evolve immediately after their construction by trapping sediment and having a beneficial effect over the short to medium term. Longer term, berms fill with sediment and overtop. The time it takes to overtop depends on the material, the size of the berm, and the climate. Once a berm is breached, previously hydraulically disconnected batter sections become a connected flow network that delivers large volumes of runoff from upper slopes to lower slopes that were never designed to withstand them. This process can be caused, or contributed to, by poor quality construction techniques.
机译:巴塞尔斯仍然是废物转储地貌设计中的持久性特征,因为它们被认为是通过将坡度与水平或后倾斜的松弛的坡度分区和减少的流速来保护减少斜坡长度的益处,防止未来的面糊侵蚀。支持这一理由是信念,即巴塞尔斯将是一个永久性和不变的特征,可在长期控制侵蚀。这些假设不是真的。巴塞尔斯通过捕获沉积物并在短期到中期具有效果后立即在施工后立即发展。长期,巴塞尔斯填充沉积物和拓宽。概述所需的时间取决于材料,浆料的大小和气候。一旦护堤被破坏,预先水力断开面糊部分成为连接流网络,可提供大量径流从山坡上,以降低未曾被设计成能承受他们的斜坡。这种过程可以通过质量劣质施工技术来引起或贡献。

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