| Literature DB >> 31374105 |
Jose M Nadal-Serrano1, Elia Gomez G de la Pedrosa2, Marisa Lopez-Vallejo1, Alvaro de Guzmán Fernández González1, Carlos Lopez-Barrio1.
Abstract
Artificial smokes focusing on macroscopic or fluid properties of smoke have been available for a long time. This paper presents a simple method to generate fully customizable smoke-like atmospheres at microscopic scale (i.e. considering their constituent particles as discrete elements) using a different approach. Synthetic, reproducible media can be generated combining monodisperse microspheres with known geometrical and optical properties conveniently parameterized. The method is presented as a proof-of-concept, highlighting the design decisions along with their implications. Practical issues such as aerosol nebulization, particle carrier selection or the features of the medium chamber where the smoke-like atmosphere is to be tested are analyzed. A comparison between methanol and ethanol as carriers for polystyrene microsphere nebulization is also made. The method could be the seed for the obtention of standard reference media for calibration or standardized characterization of not only smoke detectors and exhaust smoke sensors but also other instruments relying on optical properties of dispersive media (dust in PV panels, public lighting, etc.).Entities:
Year: 2019 PMID: 31374105 PMCID: PMC6677306 DOI: 10.1371/journal.pone.0220700
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
as a function of wavelength and microsphere diameter.
| Lambda vacuum (nm) | ||||
|---|---|---|---|---|
| 395 | 2.24E-007 | 6.41E-007 | 8.17E-007 | 1.99E-006 |
| 476 | 3.61E-007 | 5.36E-007 | 8.09E-007 | 1.76E-006 |
| 543 | 3.20E-007 | 6.21E-007 | 9.88E-007 | 1.81E-006 |
| 623 | 2.23E-007 | 5.10E-007 | 7.90E-007 | 1.75E-006 |
| 730 | 1.66E-007 | 4.99E-007 | 1.01E-006 | 1.67E-006 |
| 890 | 1.50E-007 | 6.61E-007 | 7.95E-007 | 1.73E-006 |
Main characteristics of the commercial suspensions of polystyrene microspheres used in the validation experiments.
| Manufacturer | Model | Nominal diameter ( | Coefficient of Variance (%) | Solid content (%) |
|---|---|---|---|---|
| Ikerlat Polymers | AJ-1000 | 1 | <0.5 | 10 |
| Polysciences | 19814-15 | 2 | 5 | 2.5 |
| Polysciences | 17134-15 | 3 | 5 | 2.5 |
| Sigma-Aldrich | 89756-5ML-F | 6 | <2 | 2 |
Fig 1Nebulization process.
Time line for nebulization and suitable time interval for the experiments (texp, represented in grey). The beginning of texp is the most convenient time frame for measurements.
tfull in seconds as a function of droplet size and pipe type.
| Droplet size | Pipe configuration (diameter, length in mm) | ||||
|---|---|---|---|---|---|
| 25⊘, 1000 | 25⊘, 400 | 50⊘, 1000 | 50⊘, 400 | ||
| 3 | 3.80 | 1.50 | - (1) | 7.06 | |
| 4 | 3.40 | 1.56 | - (1) | 5.89 | |
| 7 | 3.50 | 1.56 | 15.00 | 4.98 | |
| 3 | 3.80 | 1.70 | 14.90 | 4.96 | |
| 4 | 3.40 | 1.61 | 14.50 | 4.48 | |
| 7 | 3.80 | 1.61 | 19.20 | 5.11 | |
(1) Unable to determine. Very faint.
tnebul for 2ml of carrier in minutes:seconds as a function of droplet size and pipe type.
| Droplet size | Pipe configuration (diameter, length in mm) | |||||
|---|---|---|---|---|---|---|
| No pipe | 25⊘, 1000 | 25⊘, 400 | 50⊘, 1000 | 50⊘, 400 | ||
| 3 | 3:35 | 3:48 | 3:40 | 3:25 | 3:20 | |
| 4 | 3:30 | 3:45 | 3:46 | 3:57 | 3:49 | |
| 7 | 1:56 | 1:46 | 1:49 | 1:47 | 1:47 | |
| 3 | 4:50 | 5:04 | 4:52 | 4:56 | 4:37 | |
| 4 | 4:28 | 4:45 | 4:39 | 4:50 | 4:30 | |
| 7 | 2:44 | 2:45 | 2:46 | 2:45 | 2:47 | |
tdroplet in seconds as a function of droplet size and pipe type (‘-’ stands for “not observed”).
| Droplet size | Pipe configuration (diameter, length in mm) | ||||
|---|---|---|---|---|---|
| 25⊘, 1000 | 25⊘, 400 | 50⊘, 1000 | 50⊘, 400 | ||
| 3 | - | - | - | - | |
| 4 | - | - | - | - | |
| 7 | <10 | <15 | <20 | <20 | |
| 3 | - | - | - | - | |
| 4 | - | - | - | - | |
| 7 | <10 | <10 | <20 | <20 | |
tevap in seconds unless otherwise stated as a function of droplet size and pipe type.
| Droplet size | Pipe configuration (diameter, length in mm) | ||||
|---|---|---|---|---|---|
| 25⊘, 1000 | 25⊘, 400 | 50⊘, 1000 | 50⊘, 400 | ||
| 3 | 15 | 6 | 16 | 40 | |
| 4 | 9 | 7 | 37 | 45 | |
| 7 | 15 | 18 | >3 min | 40 | |
| 3 | >3 min | >3 min | >3 min | >3 min | |
| 4 | >3 min | >3 min | >3 min | >3 min | |
| 7 | >3 min | >3 min | >3 min | >3 min | |