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Uncertainty of solute flux estimation in ungauged small streams: potential implications for input-output nutrient mass balances at stream reach scale

机译:未加料的小溪中溶质通量估算的不确定性:对于溪流达标规模的投入产出营养素质量平衡的潜在影响

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Input-output mass balances within stream reaches provide in situ estimates of stream nutrient retention/release under a wide spectrum of hydrological conditions. Providing good estimates of the mass balances for nutrients depends on precise hydrological monitoring and good chemical characterisation of stream water at the input and output ends of the stream reach. There is a need to optimise the hydrological monitoring and the frequencies of water sampling to yield precise annual mass balances, so as to avoid undue cost-high resolution monitoring and subsequent chemical analysis can be labour intensive and costly. In this paper, simulation exercises were performed using a data set created to represent the instantaneous discharge and solute dynamics at the input and output ends of a model stream reach during a one year period. At the output end, stream discharge and water chemistry were monitored continuously, while the input end was assumed to be ungauged; water sampling frequency was changed arbitrarily. Instantaneous discharge at the ungauged sampling point was estimated with an empirical power model linking the discharge to the catchment area (Hooper, 1986). The model thus substitutes for the additional gauge station. Simulations showed that 10 days was the longest chemical sampling interval which could provide reach annual mass balances of acceptable precision. Presently, the relationship between discharge and catchment area is usually assumed to be linear but simulations indicate that small departures from the linearity of this relationship could cause dramatic changes in the mass balance estimations.
机译:河段内的投入产出质量平衡提供了在广泛的水文条件下河段养分保留/释放的原位估计。对营养物质的质量平衡进行良好的估算取决于精确的水文监测以及在河段输入端和输出端对溪流水的良好化学特性。需要优化水文监测和水采样的频率以产生精确的年度质量平衡,以避免不必要的成本-高分辨率监测,并且随后的化学分析可能是劳动密集型的并且成本高昂的。在本文中,使用创建的数据集进行了模拟练习,该数据集表示一年中模型流达到输入和输出端的瞬时流量和溶质动力学。在输出端,连续监测水流排放和水的化学性质,而假定输入端未打开。水采样频率任意改变。通过将排放量与集水区联系起来的经验功率模型,估算了未采样点的瞬时排放量(Hooper,1986)。因此,该模型替代了额外的计量站。模拟显示,最长的化学采样间隔为10天,可以达到可接受的精度的年度质量平衡。目前,排放量和集水面积之间的关系通常被认为是线性的,但是模拟表明,偏离这种关系的线性度可能会导致质量平衡估算值发生巨大变化。

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