促进鱼类在Ialomicioara洞附近Ialomiţa河排放口上方的洄游

R. Voicu, Lawrence G. Dominguez
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引用次数: 6

摘要

水道纵向连通性恢复是科学家(生物学家、水利工程师、化学家等)的主要任务,他们通过会议、项目、研讨会、大学和机构的技术交流,展示了河流生态系统自然(非人为)功能的重要意义。在Ialomiţa河上,位于Padina小屋下游的排放屏障阻碍了一些鱼类的迁徙,如褐鳟(Salmo trutta)和牛头鱼(Cottus gobio),禁止它们进入觅食区和泉水。水框架指令60/2000 / EC为恢复水道纵向和横向连通性的“良好状态”提供了法律框架。我们提出的解决方案1可以应用于其他泄洪坝和3米至6米高的水坝,并且在可行的情况下可以利用一些泄洪坝的现有电源。方案二的概念允许混凝土板内部的凹槽作为迁徙物种的休息和恢复区域。在确保上游/下游鱼类迁移的同时,允许排放管理继续进行,这在传统系统中是无法实现的。方案II应用后,流量仍不失去任何基线特性,同时保持原有的水利技术设计目标,即消洪。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Facilitation Fish Migration above the Discharge Sill Located on the Ialomiţa River Near Cave Ialomicioara
Abstract Longitudinal connectivity restoration of watercourses is a major duty for scientists (biologists, hydro engineers, chemists etc.) that, by the means of technical exchange via conferences, projects, workshops, universities, and institutions demonstrate the major importance of a natural (non-anthropic) function of the lotic ecosystems. On the Ialomiţa River, the discharge sills located downstream from Padina chalet block the migration of some fish species, such as the brown trout (Salmo trutta) and the bullhead (Cottus gobio), prohibiting access to foraging areas and springs. Water Framework Directive 60/2000 / EC provides a legal framework for restoring “good status” of longitudinal and lateral connectivity of watercourses. Our proposed solution I can be applied to other discharge sills and dams sized between 3m and 6m high, and, where feasible can utilize existing power sources of some discharge sills. Solution II’s concepts allow the dimples inside the concrete plate to serve as a rest and recovery area for migratory species. Such benefits that ensure upstream/downstream fish migration while allowing discharge management to continue is unattainable in conventional systems. After solution II is applied the discharge sill does not lose any baseline characteristics while maintaining the original hydro-technical design objective, flood dissipation.
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