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首页> 外文期刊>Journal of hydrologic engineering >Effect of Passive Surface Water Flux Meter Design on Water and Solute Mass Flux Estimates
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Effect of Passive Surface Water Flux Meter Design on Water and Solute Mass Flux Estimates

机译:被动地表水通量计设计对水和溶质质量通量估计值的影响

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Standard methods for determining pollutant loads in streams typically require the collection of separate instantaneous measurements of water velocities and solute concentrations at discrete points in space and time. A recently developed device, the passive surface water flux meter (PSFM), has been introduced as an alternate method for the measurement of time-integrated surface water flux (velocity) and solute mass flux. This paper extends PSFM development by evaluating and comparing two PSFM designs in laboratory flumes, as well as reporting on initial steady-state field testing. The shape of the PSFM body determines the velocity with which water passes through the device, and different designs may thus be preferred for different applications. Experiments compared the accuracy of flux measurement by the previously introduced hydrofoil-shaped PSFM and nitrate-sorbing cartridge with that of a newly designed cylindrical-shaped PSFM and phosphate-sorbing cartridges. Testing was performed in a laboratory flume at steady water velocities between 0.2-0.58 m/s and results verified the ability of the new PSFM designs to accurately measure solute and water flux under steady-state conditions. Water fluxes were measured to be within 4 and 7% of true water fluxes for the hydrofoil PSFM and cylindrical PSFM, respectively. The accuracy of solute flux estimates was similar to those found in the water flux experiments. While both PSFM designs exhibited similar accuracy, the cylindrical-shaped PSFM with phosphate-sorbing cartridges was chosen for field testing because of the relative ease of construction compared to the hydrofoil-shaped device. Field experiments performed under natural steady-flow stream velocities in Sweetwater Branch, Gainesville, Florida indicated that in relatively stable field conditions, the cylindrical PSFM was able to accurately measure water and phosphate mass fluxes to within 3 and 7% of true fluxes, respectively.
机译:用于确定河流中污染物负荷的标准方法通常要求在空间和时间的离散点处分别收集水的速度和溶质浓度的瞬时测量值。引入了一种最新开发的无源表面水通量仪(PSFM),作为测量时间积分表面水通量(速度)和溶质通量的替代方法。本文通过评估和比较实验室水槽中的两种PSFM设计以及最初的稳态现场测试报告,扩展了PSFM的开发。 PSFM主体的形状决定了水流经设备的速度,因此对于不同的应用,可能需要采用不同的设计。实验比较了先前介绍的水翼形PSFM和硝酸盐吸收盒与新设计的圆柱形PSFM和磷酸盐吸收盒的通量测量精度。测试是在实验室水槽中以0.2-0.58 m / s的稳定水速进行的,结果证实了新PSFM设计在稳态条件下准确测量溶质和水通量的能力。对于水翼PSFM和圆柱PSFM,测得的水通量分别在真实水通量的4%和7%之内。溶质通量估算的准确性与水通量实验中发现的相似。尽管两种PSFM设计均显示出相似的精度,但由于与水翼形装置相比相对易于构造,因此选择了带有磷酸盐吸收盒的圆柱形PSFM进行现场测试。在佛罗里达州盖恩斯维尔的Sweetwater Branch的自然稳定流速度下进行的野外实验表明,在相对稳定的野外条件下,圆柱形PSFM能够准确测量水和磷酸盐质量通量,分别在真实通量的3%和7%之内。

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