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首页> 外文期刊>Journal of sea research >Sedvel: An Underwater Balance For Measuring In Situ Settling Velocities And Suspended Cohesive Sediment Concentrations
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Sedvel: An Underwater Balance For Measuring In Situ Settling Velocities And Suspended Cohesive Sediment Concentrations

机译:Sedvel:用于测量就地沉降速度和悬浮粘性沉积物浓度的水下天平

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摘要

An automated instrument (SEDVEL-Sedimentation Velocity) was developed to directly measure the mass-concentration and the mass-distribution of settling velocities of suspended particuiate matter (SPM) in situ. This instrument consists of an underwater balance, which directly measures the variation in time of the immersed weight of particuiate matter (PM) as it settles on a plate located at the bottom of a settling tube, under quiescent conditions. SEDVEL operates underwater and samples in situ for deployment periods of a few days. SEDVEL produced consistent and reproducible results when tested both in the laboratory and in the field under SPM dry-concentrations of 5 to 200 mg I~(-1). Errors in the estimates of maximum dry-concentrations from SEDVEL measurements were less than 30% in 69% of the cycles analysed in the laboratory. The corresponding figure for in situ measurements was 50%. These errors are likely related to uncertainties in the calculation of the dry-density of flocs and in the definition of the zero position (ZP) of the SEDVEL balance. The slow settling particles/floes (W_s<1 mm s~(-1)) represented 32-98% of the total mass of SPM at two sites of deployment in Cleveland Bay (Australia). Distinct settling behaviours were observed between the two sites and among different tidal stages associated with differences in the floc population; the aggregation of which probably varied as a function of the bottom grain size, shear stress, resuspension, advection and organic content of SPM.
机译:开发了一种自动仪器(SEDVEL-Sedimentation Velocity)来直接测量原位悬浮颗粒物(SPM)沉降速度的质量浓度和质量分布。该仪器由一个水下天平组成,它可以在静止状态下直接测量颗粒物(PM)的沉入重量随时间的变化,当它沉降在位于沉降管底部的板上时。 SEDVEL在水下操作并在几天内就地采样。在SPM干浓度为5至200 mg I〜(-1)的实验室和现场测试时,SEDVEL产生一致且可重复的结果。在实验室分析的69%的循环中,根据SEDVEL测量得出的最大干浓度估计值的误差小于30%。原位测量的相应数字为50%。这些错误可能与絮凝物干密度的计算中不确定性以及SEDVEL天平的零位(ZP)定义有关。在克利夫兰湾(澳大利亚)的两个部署地点,缓慢沉降的颗粒/絮状物(W_s <1 mm s〜(-1))占SPM总质量的32-98%。在两个地点之间以及与潮汐种群差异有关的不同潮汐阶段之间,观察到了不同的沉降行为。 SPM的聚集可能随底部晶粒尺寸,剪切应力,重悬浮,对流和有机物含量而变化。

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