Johannsen Lisbeth Lolk, Zambon Nives, Strauss Peter, Dostal Tomas, Neumann Martin, Zumr David, Cochrane Thomas A, Blöschl Günter, Klik Andreas
Department of Water, Atmosphere and Environment, University of Natural Resources and Life Sciences, Vienna, Austria.
Institute of Land and Water Management Research, Petzenkirchen, Austria.
Hydrol Sci J. 2020 Jan 21;65(4):524-535. doi: 10.1080/02626667.2019.1709641. eCollection 2020.
Optical disdrometers can be used to estimate rainfall erosivity; however, the relative accuracy of different disdrometers is unclear. This study compared three types of optical laser-based disdrometers to quantify differences in measured rainfall characteristics and to develop correction factors for kinetic energy (KE). Two identical PWS100 (Campbell Scientific), one Laser Precipitation Monitor (Thies Clima) and a first-generation Parsivel (OTT) were collocated with a weighing rain gauge (OTT Pluvio) at a site in Austria. All disdrometers underestimated total rainfall compared to the rain gauge with relative biases from 2% to 29%. Differences in drop size distribution and velocity resulted in different KE estimates. By applying a linear regression to the KE-intensity relationship of each disdrometer, a correction factor for KE between the disdrometers was developed. This factor ranged from 1.15 to 1.36 and allowed comparison of KE between different disdrometer types despite differences in measured drop size and velocity.
光学雨滴谱仪可用于估算降雨侵蚀力;然而,不同雨滴谱仪的相对精度尚不清楚。本研究比较了三种基于光学激光的雨滴谱仪,以量化测量的降雨特征差异,并开发动能(KE)校正因子。在奥地利的一个地点,两台相同的PWS100(坎贝尔科学公司)、一台激光降水监测仪(蒂斯气候公司)和一台第一代Parsivel(OTT公司)与一个称重雨量计(OTT Pluvio)并置。与雨量计相比,所有雨滴谱仪都低估了总降雨量,相对偏差为2%至29%。雨滴大小分布和速度的差异导致了不同的动能估计。通过对每个雨滴谱仪的动能-强度关系进行线性回归,开发了雨滴谱仪之间的动能校正因子。该因子范围为1.15至1.36,尽管测量的雨滴大小和速度存在差异,但仍可对不同类型雨滴谱仪之间的动能进行比较。