Annapurna Parjuli
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Biography and Research Information
OverviewAI-generated summary
Annapurna Parjuli's research focuses on subatmospheric pool boiling of water on copper surfaces and exploring the relationship between boiling hysteresis and maximum wall temperature at low pressures. Her work includes the development and dissemination of open datasets related to these phenomena. Parjuli has also conducted a review of open datasets and machine learning approaches for two-phase heat transfer, employing a spatial-temporal taxonomy. Her research collaborations at the University of Arkansas at Fayetteville include shared publications with Han Hu, Christy Dunlap, Mohammad Ishraq Hossain, and Chinmaya Joshi.
Metrics
- Publications: 6
Selected Publications
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Dataset of subatmospheric pool boiling of water on copper surfaces (2026)
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Boiling hysteresis versus maximum wall temperature at 10 kPa (2026)
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Dataset of subatmospheric pool boiling of water on copper surfaces (2026)
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Boiling hysteresis versus maximum wall temperature at 10 kPa (2026)
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Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy (2026)
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Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy (2026)
Collaboration Network
Top Collaborators
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Boiling hysteresis versus maximum wall temperature at 10 kPa
- Dataset of subatmospheric pool boiling of water on copper surfaces
- Boiling hysteresis versus maximum wall temperature at 10 kPa
Showing 5 of 6 shared publications
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Boiling hysteresis versus maximum wall temperature at 10 kPa
- Dataset of subatmospheric pool boiling of water on copper surfaces
- Boiling hysteresis versus maximum wall temperature at 10 kPa
Showing 5 of 6 shared publications
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Boiling hysteresis versus maximum wall temperature at 10 kPa
- Dataset of subatmospheric pool boiling of water on copper surfaces
- Boiling hysteresis versus maximum wall temperature at 10 kPa
- Dataset of subatmospheric pool boiling of water on copper surfaces
- Boiling hysteresis versus maximum wall temperature at 10 kPa
- Dataset of subatmospheric pool boiling of water on copper surfaces
- Boiling hysteresis versus maximum wall temperature at 10 kPa
- Dataset of subatmospheric pool boiling of water on copper surfaces
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
- Open datasets and machine learning for two-phase heat transfer: a review following a spatial-temporal taxonomy
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