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Gassen, Lisa; Esters, Leonie; Ribas-Ribas, Mariana; Wurl, Oliver (2024): Pre-rainfall experiment calibration to determine droplet velocity at 15 different positions within an area of 1.21 m² [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.964953, In: Gassen, L et al. (2024): Measurements of sea surface temperature and salinity in a large seawater basin under varying precipitation intensities and droplet characteristics [dataset bundled publication]. PANGAEA, https://doi.org/10.1594/PANGAEA.964902

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Published: 2024-03-26DOI registered: 2024-04-10

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Abstract:
We provide data from experiments with artificial rain over a 5100-liter basin with a retractable roof, where temperature and conductivity (to calculate salinity) were measured at different depths in the upper sea surface, as well as rain properties (intensity, rain temperature, droplet size and velocity). Three different nozzle types were used to investigate the impacts of droplet properties on temperature and salinity anomalies at the sea surface. To measure droplet sizes and velocities, we made calibration measurements with an optical laser disdrometer before the actual experiments. In the first experiments, we excluded external influences such as wind-driven mixing to show on a very small vertical and horizontal scale how very different rainfall intensities and properties such as droplet sizes and velocities affect sea surface temperature and salinity. In a second series of experiments, we used different stages of a flow pump to add turbulence to the basin and find out how quickly the rain water mixes with the seawater at the near-surface layer. The duration of the artificial rain was 15 minutes for all experiments. We used an acoustic doppler velocimeter (ADV) to calculate turbulent kinetic energy at two different depths (14 and 44 cm) within the basin. Additional samples from the sea surface microlayer (SML) were collected before and after the artificial rain in both experiments.
Keyword(s):
droplet properties; mesocosm experiment; sea surface microlayer; Sea surface salinity; Sea surface temperature
Comment:
Before performing the experiments, we performed a calibration of the different nozzle types and rain intensities to see what droplet properties were produced. We measured the droplet diameter and velocity at 15 different positions within an area of 1.21 m².
Location of the mesocosm experiment: Sea-SurFace Facility (SURF), Institute of Chemistry and Biology of the marine Environment, Schleusenstraße 1, 26382 Wilhelmshaven, Coordinates: 53.5148, 8.1463
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
Type of studyStudy typeGassen, Lisa
Droplet velocityDroplet Vm/sGassen, LisaLaser-based distrometer, Thies Clima, Model no. 270 5.4110.10.xxx
CountsCounts#Gassen, LisaLaser-based distrometer, Thies Clima, Model no. 270 5.4110.10.xxxdroplet counts
IdentificationIDGassen, LisaNozzle, Spraying Systems Germany GmbH, 1/8" GG1, GG2, and GG3GG1, GG2, and GG3 here referred to as N1, N2, and N3
Treatment: rain intensityT:rainmm/hGassen, Lisacalculated based on the flow meter (Flowmax 42i, MIB GmbH) measurements, area and time the rainfall was simulated
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
630 data points

Data

Download dataset as tab-delimited text — use the following character encoding:


Study type

Droplet V [m/s]

Counts [#]

ID

T:rain [mm/h]
mesocosm0.022.20N118
mesocosm0.2363.67N118
mesocosm0.4562.47N118
mesocosm0.6710.60N118
mesocosm0.8837.53N118
mesocosm1.01360.00N118
mesocosm1.41545.53N118
mesocosm1.81594.27N118
mesocosm2.21425.87N118
mesocosm2.61102.07N118
mesocosm3.0804.47N118
mesocosm3.4950.53N118
mesocosm4.2451.93N118
mesocosm5.0209.60N118
mesocosm5.8112.20N118
mesocosm6.674.20N118
mesocosm7.441.07N118
mesocosm8.221.67N118
mesocosm9.010.00N118
mesocosm10.04.07N118
mesocosm11.00.00N118
mesocosm0.00.33N218
mesocosm0.245.33N218
mesocosm0.4225.60N218
mesocosm0.6361.13N218
mesocosm0.8429.87N218
mesocosm1.0813.60N218
mesocosm1.4876.60N218
mesocosm1.81008.07N218
mesocosm2.21068.40N218
mesocosm2.6983.87N218
mesocosm3.0829.27N218
mesocosm3.4990.07N218
mesocosm4.2547.13N218
mesocosm5.0306.33N218
mesocosm5.8135.93N218
mesocosm6.649.47N218
mesocosm7.416.47N218
mesocosm8.25.20N218
mesocosm9.01.80N218
mesocosm10.00.33N218
mesocosm11.00.00N218
mesocosm0.06.27N228
mesocosm0.2142.93N228
mesocosm0.4478.60N228
mesocosm0.6740.80N228
mesocosm0.8919.93N228
mesocosm1.01820.80N228
mesocosm1.42107.00N228
mesocosm1.82239.93N228
mesocosm2.22203.53N228
mesocosm2.61957.73N228
mesocosm3.01634.87N228
mesocosm3.42159.13N228
mesocosm4.21419.13N228
mesocosm5.0796.47N228
mesocosm5.8413.20N228
mesocosm6.6247.20N228
mesocosm7.4173.27N228
mesocosm8.2119.60N228
mesocosm9.0112.00N228
mesocosm10.0118.80N228
mesocosm11.00.00N228
mesocosm0.0114.73N256
mesocosm0.2543.93N256
mesocosm0.4800.87N256
mesocosm0.6978.87N256
mesocosm0.81168.20N256
mesocosm1.01991.80N256
mesocosm1.42372.47N256
mesocosm1.82367.60N256
mesocosm2.22224.67N256
mesocosm2.61987.67N256
mesocosm3.01730.33N256
mesocosm3.42289.13N256
mesocosm4.21790.33N256
mesocosm5.01383.40N256
mesocosm5.8948.60N256
mesocosm6.6633.13N256
mesocosm7.4393.93N256
mesocosm8.2222.47N256
mesocosm9.0132.93N256
mesocosm10.065.00N256
mesocosm11.00.00N256
mesocosm0.00.27N328
mesocosm0.225.40N328
mesocosm0.4112.67N328
mesocosm0.6243.33N328
mesocosm0.8402.87N328
mesocosm1.01046.60N328
mesocosm1.41648.93N328
mesocosm1.82139.27N328
mesocosm2.22193.20N328
mesocosm2.62122.80N328
mesocosm3.01799.40N328
mesocosm3.41971.07N328
mesocosm4.2960.27N328
mesocosm5.0429.80N328
mesocosm5.8179.87N328
mesocosm6.665.93N328
mesocosm7.424.07N328
mesocosm8.29.73N328
mesocosm9.04.13N328
mesocosm10.01.00N328
mesocosm11.00.00N328
mesocosm0.0103.00N356
mesocosm0.21057.67N356
mesocosm0.41462.33N356
mesocosm0.61694.53N356
mesocosm0.81901.80N356
mesocosm1.03333.73N356
mesocosm1.43774.40N356
mesocosm1.83797.93N356
mesocosm2.23728.73N356
mesocosm2.63414.73N356
mesocosm3.03048.20N356
mesocosm3.43906.33N356
mesocosm4.23138.20N356
mesocosm5.02319.80N356
mesocosm5.81511.33N356
mesocosm6.6923.67N356
mesocosm7.4564.13N356
mesocosm8.2329.67N356
mesocosm9.0238.40N356
mesocosm10.0234.20N356
mesocosm11.00.00N356