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Measurement accuracy of weighing and tipping-bucket rainfall intensity gauges under dynamic laboratory testing

机译:动态实验室测试下称重和倾卸式雨量计的测量精度

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摘要

The contribution of any single uncertainty factor in the resulting performance of infield rain gauge measurements still has to be comprehensively assessed due to the high number of real world error sources involved, such as the intrinsic variability of rainfall intensity (RI), wind effects, wetting losses, the ambient temperature, etc. In recent years the World Meteorological Organization (WMO) addressed these issues by fostering dedicated investigations, which revealed further difficulties in assessing the actual reference rainfall intensity in the field. This work reports on an extensive assessment of the OTT Pluvio2 weighing gauge accuracy when measuring rainfall intensity under laboratory dynamic conditions (time varying reference flow rates). The results obtained from the weighing rain gauge (WG) were also compared with a MTX tipping-bucket rain gauge (TBR) under the same test conditions. Tests were carried out by simulating various artificial precipitation events, with unsteady rainfall intensity, using a suitable dynamic rainfall generator. Real world rainfall data measured by an Ogawa catching-type drop counter at a field test site located within the Hong Kong International Airport (HKIA) were used as a reference for the artificial rain generation system. Results demonstrate that the differences observed between the laboratory and field performance of catching-type gauges are only partially attributable to the weather and operational conditions in the field. The dynamics of real world precipitation events is responsible for a large part of the measurement errors, which can be accurately assessed in the laboratory under controlled environmental conditions. This allows for new testing methodologies and the development of instruments with enhanced performance in the field.
机译:由于涉及大量现实误差源,例如降雨强度(RI)的内在变异性,风影响,湿润性等,因此任何单个不确定性因素对野外雨量计测量结果的影响仍然必须进行综合评估。近年来,世界气象组织(WMO)通过开展专门的调查来解决这些问题,这揭示了评估该领域实际参考降雨强度的进一步困难。这项工作报告了在实验室动态条件(时变参考流量)下测量降雨强度时,对OTT Pluvio2称重仪精度的广泛评估。在相同的测试条件下,还将称重雨量计(WG)的结果与MTX翻斗式雨量计(TBR)进行了比较。通过使用合适的动态降雨发生器模拟各种降雨强度不稳定的人工降雨事件来进行测试。由位于香港国际机场(HKIA)内的现场测试现场的小川捕获型滴落计数器测量的真实世界降雨量数据被用作人工降雨系统的参考。结果表明,在捕获型仪表的实验室性能和现场性能之间观察到的差异仅部分归因于现场的天气和操作条件。现实世界中降水事件的动力学是造成很大一部分测量误差的原因,可以在实验室中受控环境条件下准确评估这些误差。这样就可以采用新的测试方法,并开发出在现场具有更高性能的仪器。

著录项

  • 来源
    《Atmospheric research》 |2014年第7期|186-194|共9页
  • 作者单位

    University of Genova, Department of Civil, Chemical and Environmental Engineering, Via Montallegro 1, 16145 Genoa, Italy;

    University of Genova, Department of Civil, Chemical and Environmental Engineering, Via Montallegro 1, 16145 Genoa, Italy,WMO/CIMO Lead Centre 'B. Castelli' on Precipitation Intensity, Genoa, Italy;

    University of Genova, Department of Civil, Chemical and Environmental Engineering, Via Montallegro 1, 16145 Genoa, Italy;

    Hong Kong Observatory, 134A Nathan Road, Kowloonx, Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Rain gauge; Accuracy; Laboratory test; Dynamic conditions;

    机译:雨量计准确性;实验室测试;动态条件;

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