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- W4312969433 abstract "Through the Regulation of the Minister of Energy and Mineral Resources, Republic of Indonesia Number 24 of 2021, concerning the supply and use of biodiesel, the Indonesian government recommends biodiesel for all diesel engines. The existence of this policy certainly requires supporting studies related to biodiesel. Furthermore, the application of biodiesel in diesel engines requires studies related to the droplet combustion flame-spread behavior. Previous research has known that the flame-spread limit distance (S/d0 limit) of biodiesel (B20) droplet=7. However, experiments related to the flame-spread behavior of biodiesel B20 are limited to a small number of droplets. The previous research has not been able to describe the behavior of flame-spread in large droplet numbers. This research continues the modeling of the flame-spread behavior of biodiesel B20 in.a large number of droplets. This research focuses on modeling the 3-Dimensional (3D) flame-spread behavior of biodiesel B20 using a percolation approach. The modeling of the flame-spread of biodiesel B20 was carried out based on the study results of Saputro et al., 2020. The modeling used 20-2500 droplets randomly distributed at the lattice size (NL/d0) = 100 and the lattice point interval (L/d0)=2. The results showed that as the occupation fraction increased, the Occurrence Probability of Group Combustion (OPGC) rapidly increased around the specific value (p = 0.0110). When the mean droplet spacing (S/d0m)≤9.1, it is certain that group combustion will always occur. However, if the mean droplet spacing (S/d0m)≥11, group combustion will not occur." @default.
- W4312969433 created "2023-01-05" @default.
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- W4312969433 date "2022-01-01" @default.
- W4312969433 modified "2023-10-17" @default.
- W4312969433 title "The study of 3-dimensional modeling of flame-spread behavior of biodiesel (B20) droplet through the percolation approach: A case study for lattice size 100" @default.
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- W4312969433 doi "https://doi.org/10.1063/5.0116822" @default.
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