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Cost/benefit Considerations For Recent Saltcedar Control, Middle Pecos River, New Mexico

机译:新墨西哥州佩科斯河中部近期Saltcedar控制的成本/收益考虑

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Major benefits were weighed against major costs associated with recent saltcedar control efforts along the Middle Pecos River, New Mexico. The area of study was restricted to both sides of the channel and excluded tributaries along the 370 km between Sumner and Brantley dams. Direct costs (helicopter spraying, dead tree removal, and revegetation) within the study area were estimated to be $2.2 million but possibly rising to $6.4 million with the adoption of an aggressive revegetation program. Indirect costs associated with increased potential for erosion and reservoir sedimentation would raise the costs due to increased evaporation from more extensive shallows in the Pecos River as it enters Brantley Reservoir. Actions such as dredging are unlikely given the conservative amount of sediment calculated (about 1% of the reservoir pool). The potential for water salvage was identified as the only tangible benefit likely to be realized under the current control strategy. Estimates of evapotranspiration (ET) using Landsat TM data allowed estimation of potential water salvage as the difference in ET before and after treatment, an amount totaling 7.41 million m~3 (6010 acre-ft) per year. Previous saltcedar control efforts of roughly the same magnitude found that salvaged ET recharged groundwater and no additional flows were realized within the river. Thus, the value of this recharge is probably less than the lowest value quoted for actual in-channel flow, and estimated to be < $63,000 per year. Though couched in termsrnof costs and benefits, this paper is focused on what can be considered the key trade-off under a complete eradication strategy: water salvage vs. erosion and sedimentation. It differs from previous efforts by focusing on evaluating the impacts of actual control efforts within a specific system. Total costs (direct plus potential indirect) far outweighed benefits in this simple comparison and are expected to be ongoing. Problems induced by saltcedar control may permanently reduce reservoir capacity and increase reservoir evaporation rates, which could further deplete supplies on this water short system. These potential negative consequences highlight that such costs and benefits need to be considered before initiating extensive saltcedar control programs on river systems of the western United States.
机译:在新墨西哥州中佩科斯河沿岸近期盐碱控制措施的相关重大成本中,权衡了主要收益。研究区域仅限于海峡两岸,不包括萨姆纳和布兰特利大坝之间370公里处的支流。研究区域内的直接成本(直升机喷洒,清除死树和重新植被)估计为220万美元,但随着采用积极的植被恢复计划,可能会增加至640万美元。与增加的侵蚀和储层沉降潜力相关的间接成本将增加成本,这是由于佩科斯河进入布兰特利水库的过程中,从更广泛的浅滩中蒸发增加了。考虑到计算出的沉积物量保守(大约占水库的1%),诸如挖泥之类的行动是不太可能的。潜在的节水潜力被确定为在当前控制策略下可能实现的唯一切实利益。利用Landsat TM数据对蒸散量(ET)进行估算,可以估算潜在的水回收量,即处理前后的ET差异,每年总计741万m〜3(6010英亩-英尺)。先前的盐杉控制工作量大致相同,发现回收的ET补给了地下水,河中未实现额外的流量。因此,该补给的价值可能小于实际渠道内流量所引用的最低价值,并且估计为每年<$ 63,000。尽管从成本和收益两方面进行了阐述,但本文仍侧重于在完整的根除策略下可以视为关键的权衡:水的拯救与侵蚀和沉降。它与以前的工作有所不同,其重点是评估特定系统中实际控制工作的影响。在这种简单的比较中,总成本(直接成本和潜在间接成本)远远超过了收益,而且预计这种成本还将持续下去。盐杉控制引起的问题可能会永久性地降低储层容量并增加储层蒸发速率,这可能会进一步耗尽该缺水系统的供水。这些潜在的负面后果表明,在针对美国西部河流系统启动广泛的盐杉控制计划之前,必须考虑这些成本和收益。

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