Automated Author ProfileAmano, Yuki
Amano, Yuki
Current S-Index
Sum of Dataset Indices for all datasets
Average Dataset Index per Dataset
Average Dataset Index per dataset
Total Datasets
Total datasets for this author
Average FAIR Score
Average FAIR Score per dataset
Total Citations
Total citations to the author's datasets
Total Mentions
Total mentions of the author's datasets
S-Index Interpretation
The S-Index (Sharing Index) is a comprehensive metric that represents the cumulative impact of all your datasets. It is calculated as the sum of Dataset Index scores across all your claimed datasets.
What it means:
- A higher S-index indicates greater overall impact of your datasets relative to typical datasets in their fields of research
- The S-Index grows as you add more datasets or as existing datasets gain more citations and mentions
- It provides a single number to track your research data impact over time
Current S-Index: 2.5 (sum of 3 datasets Dataset Index scores)
More information here.
S-Index Over Time
Cumulative Citations Over Time
Cumulative Mentions Over Time
Datasets
This paper reports the first case of hot zone formation in a combustion test simulating an organic solvent fire in a reprocessing plant. Our goal is to add a boilover component to a computational model for quantitatively predicting the accident progression of the fire. Although the scale of boilover combustion increases when hot zones are formed in the solvent, it has not been clarified whether a hot zone is formed in the combustion of a 30% tributyl phosphate (TBP)/dodecane solvent mixture. To clarify this point, we conducted beaker-scale combustion tests and measured the temperature distribution in the burning solvent with thermocouples to obtain the following results. (1) No hot zone was formed by the combustion of only dodecane. (2) In the combustion of 30% TBP/dodecane, hot zones were not formed as long as dodecane remained in the solvent. (3) A hot zone was formed when only TBP was burned. These results suggest that boilover combustion with hot zones may occur in the case of a fire caused by the leakage of organic solvents with nitric acid solution in a reprocessing plant.
Authors
- Ohno, Takuya ;
- Tashiro, Shinsuke ;
- Amano, Yuki ;
- Yoshida, Naoki ;
- Yoshida, Ryoichiro ;
- Yamane, Yuichi
This paper reports the first case of hot zone formation in a combustion test simulating an organic solvent fire in a reprocessing plant. Our goal is to add a boilover component to a computational model for quantitatively predicting the accident progression of the fire. Although the scale of boilover combustion increases when hot zones are formed in the solvent, it has not been clarified whether or not a hot zone is formed in the combustion of a 30% tributyl phosphate (TBP)/dodecane solvent mixture. To clarify this point, we conducted beaker-scale combustion tests and measured the temperature distribution in the burning solvent with thermocouples to obtain the following results. (1) No hot zone was formed by the combustion of only dodecane. (2) In the combustion of 30% TBP/dodecane, hot zones were not formed as long as dodecane remained in the solvent. (3) A hot zone was formed when only TBP was burned. These results suggest that boilover combustion with hot zones may occur in the case of a fire caused by the leakage of organic solvents with nitric acid solution in a reprocessing plant.
Authors
- Ohno, Takuya ;
- Tashiro, Shinsuke ;
- Amano, Yuki ;
- Yoshida, Naoki ;
- Yoshida, Ryoichiro ;
- Yamane, Yuichi
This paper reports the first case of hot zone formation in a combustion test simulating an organic solvent fire in a reprocessing plant. Our goal is to add a boilover component to a computational model for quantitatively predicting the accident progression of the fire. Although the scale of boilover combustion increases when hot zones are formed in the solvent, it has not been clarified whether a hot zone is formed in the combustion of a 30% tributyl phosphate (TBP)/dodecane solvent mixture. To clarify this point, we conducted beaker-scale combustion tests and measured the temperature distribution in the burning solvent with thermocouples to obtain the following results. (1) No hot zone was formed by the combustion of only dodecane. (2) In the combustion of 30% TBP/dodecane, hot zones were not formed as long as dodecane remained in the solvent. (3) A hot zone was formed when only TBP was burned. These results suggest that boilover combustion with hot zones may occur in the case of a fire caused by the leakage of organic solvents with nitric acid solution in a reprocessing plant.
Authors
- Ohno, Takuya ;
- Tashiro, Shinsuke ;
- Amano, Yuki ;
- Yoshida, Naoki ;
- Yoshida, Ryoichiro ;
- Yamane, Yuichi