Department of Civil Engineering, National Taipei University of Technology, Taipei, Taiwan.
Environ Monit Assess. 2012 Oct;184(10):6423-36. doi: 10.1007/s10661-011-2430-y. Epub 2011 Nov 29.
Discharge measurement in a tidal stream is always a difficult task. Owing to the complex flow conditions, discharge measurement in tidal streams has to be finished quickly, and must be highly efficient in order to yield an accurate measurement of real-time discharge. Measuring the discharge of tidal streams is done in three steps: (1) establishing the stage and cross-sectional area relation, (2) estimating the index velocity by using a velocity distribution equation based on the probability concept, (3) establishing the relationship between the index and mean velocities. Then the cross-sectional area and mean velocity can be estimated by the gage height and index velocity, respectively. The discharge of tidal streams is computed as the product of the cross-sectional area and mean velocity. The velocity distribution of the Taipei Bridge and Guan-du Bridge in the Tanshui River were established and analyzed to demonstrate the use of discharge measurement by index velocity for estimating the discharge of this tidal stream. The results reveal no large difference between the discharges measured by the conventional methods and the index velocity. This pilot study proposed a cost-effectiveness and efficient method. It is an easy, quick, and accurate model for measuring the real-time discharge of a tidal stream. It makes automatic, real-time, and continuous monitoring of the discharge in a tidal stream become possible.
在潮流中进行流量测量一直是一项艰巨的任务。由于复杂的水流条件,潮流中的流量测量必须快速完成,并且必须非常高效,才能准确测量实时流量。测量潮流的流量分为三个步骤:(1)建立水位与横断面面积关系,(2)根据基于概率概念的速度分布方程估算指标速度,(3)建立指标速度与平均速度之间的关系。然后可以通过测压高度和指标速度分别估算横断面面积和平均速度。潮流的流量是横断面面积和平均速度的乘积。建立和分析了淡水河的台北桥和关渡桥的速度分布,以演示通过指标速度测量流量来估算该潮流的流量。结果表明,常规方法测量的流量与指标速度测量的流量之间没有很大差异。这项初步研究提出了一种具有成本效益和高效率的方法。这是一种简单、快速、准确的潮流实时流量测量模型。它使得对潮流的自动、实时和连续监测成为可能。