首页> 外文期刊>North American Journal of Fisheries Management >Evaluation of a Prototype Surface Flow Bypass for Juvenile Salmon andSteelhead at the Powerhouse of Lower Granite Dam, Snake River,Washington, 1996-2000
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Evaluation of a Prototype Surface Flow Bypass for Juvenile Salmon andSteelhead at the Powerhouse of Lower Granite Dam, Snake River,Washington, 1996-2000

机译:1996-2000年,在华盛顿蛇河下花岗岩坝动力站对幼鲑鱼和头鱼进行原型地表绕过的评估

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A surface flow bypass takes advantage of the natural surface orientation of most juvenile salmon Oncorhynchus spp. and steelhead O. mykiss by providing a route in the upper water column that downstream migrant fishes can use to pass a hydroelectric dam safely. A prototype structure, called the surface bypass and collector (SBC), was retrofitted on the powerhouse of Lower Granite Dam and was evaluated annually with biotelemetry and hydroacoustic techniques during the 5-year life span of the structure (1996-2000) to determine the entrance configuration that maximized passage efficiency and minimized forebay residence time. The best tested entrance configuration had maximum inflow (99 m super(3)/s) concentrated in a single surface entrance (5 m wide, 8.5 m deep). We identified five important considerations for future surface flow bypass development in the lower Snake River and elsewhere: (1) an extensive flow net should be formed in the forebay by use of relatively high surface flow bypass discharge (7% of total project discharge); (2) a gradual increase in water velocity with increasing proximity to the surface flow bypass (ideally, acceleration 1 m/s per meter) should be created; (3) water velocities at an entrance should be high enough (3 m/s) to entrain the subject juvenile fishes; (4) the shape and orientation of the surface entrance(s) should be adapted to fit site-specific features; and (5) construction of a forebay wall to increase fish availability to the surface flow bypass should be considered. The efficiency of the SBC was not high enough (maximum of 62% relative to passage at turbine units 4- 5) for the SBC to operate as a stand-alone bypass. Anywhere that surface-oriented anadromous fish must negotiate hydroelectric dams, surface flow bypass systems can provide cost-effective use of typically limited water supplies to increase the nonturbine passage, and presumably survival, of downstream migrants.
机译:表面流旁路利用了大多数幼鲑Oncorhynchus spp的自然表面取向。和Steelhead O. mykiss,在上游水域提供一条路线,下游移徙鱼类可使用该路线安全地通过水电大坝。原型结构被称为表面旁路和集水器(SBC),在下花岗岩坝的厂房上进行了改装,并在结构的5年使用寿命(1996-2000)中每年进行生物遥测和水声技术评估,以确定其结构。入口配置可最大程度提高通道效率,并最大程度地减少前湾停留时间。经过测试的最佳入口配置最大流入量(99 m super(3)/ s)集中在一个表面入口(宽5 m,深8.5 m)中。我们确定了未来在蛇河下游和其他地方进行地表径流旁路开发的五个重要考虑因素:(1)前海湾应通过使用相对较高的地表径流旁路流量(大于项目总流量的7%)形成广泛的流量网。 ; (2)应随着与地面水旁路的接近程度的增加而逐渐提高水速(理想情况下,加速度<1 m / s /米); (3)入口处的水流速度应足够高(> 3 m / s),以带走幼鱼; (4)表面入口的形状和方向应适应特定地点的特征; (5)应考虑建造前湾墙以增加鱼流到地表水旁路的利用率。 SBC的效率不够高(相对于涡轮机4-5处的通过最大62%),因此SBC不能用作独立的旁路。面对表面的无鳍鱼类必须与水电大坝交涉的任何地方,地表流旁路系统都可以经济有效地利用通常有限的水源来增加下游移民的非涡轮通道和生存率。

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