Innovative Research Award
Shashank Prabhakar
IIT Delhi, India
| Shashank Prabhakar | |
|---|---|
| Affiliation | IIT Delhi |
| Country | India |
| Scholar ID | mX0zyNMAAAAJ |
| Documents | 6 |
| Citations | 68 |
| h-index | 3 |
| Subject Area | Pinch Analysis |
| Event | International Research Awards on Network Science & Graph Analytics |
Shashank Prabhakar is a researcher affiliated with IIT Delhi whose stated subject area is pinch analysis, a systematic approach used to examine energy integration and improve resource efficiency in process systems. The available research indicators include six documents, 68 citations, and an h-index of 3, providing a quantitative snapshot of scholarly activity.
Contents
Abstract
This academic recognition profile presents Shashank Prabhakar’s research background at IIT Delhi, with emphasis on pinch analysis. Pinch analysis has an established role in process-system energy integration by identifying thermodynamic constraints and opportunities for reducing external energy requirements.[1] The documented scholarly indicators provide context for evaluating research activity and potential contribution to energy-efficient process design.
Keywords
Pinch Analysis, Process Integration, Energy Efficiency, Heat Integration, Sustainable Engineering, IIT Delhi, Research Recognition.
Introduction
Pinch analysis is widely associated with process integration and the systematic design of energy-efficient industrial systems. The methodology provides a framework for understanding heat recovery opportunities and establishing energy targets before detailed process modifications are implemented.[1] In this context, research in pinch analysis can contribute to improved thermal efficiency, reduced utility demand, and more informed engineering decisions.
Research Profile
- Affiliated with IIT Delhi, India.
- Primary subject area: Pinch Analysis.
- Google Scholar identifier: mX0zyNMAAAAJ.
- Reported scholarly record: 6 documents, 68 citations, and h-index 3.
Research Contributions
The available information places Prabhakar’s research within the broader field of process energy analysis. Pinch-based approaches can support the identification of heat-transfer constraints, energy targets, and integration opportunities in industrial processes.[2] Such work is relevant to engineering strategies that seek greater energy utilization efficiency while maintaining practical process requirements.
Publications
The supplied profile records six scholarly documents. Specific publication titles, journals, publication years, and DOI identifiers were not provided in the source information; therefore, no individual publications are attributed here beyond the documented research area.
Research Impact
The reported 68 citations indicate that the documented publications have received scholarly attention. Citation counts and h-index values are useful bibliometric indicators, although they should be interpreted alongside publication quality, methodological contribution, collaboration, and broader research relevance rather than as standalone measures of academic impact.
Award Suitability
Prabhakar’s documented affiliation, research specialization in pinch analysis, publication record, citations, and h-index provide a basis for consideration for an innovative research recognition. The relevance of process energy integration to efficient engineering systems further supports the profile’s alignment with research-oriented recognition, subject to the award’s formal evaluation and verification procedures.
Conclusion
Shashank Prabhakar’s profile reflects research activity at IIT Delhi in pinch analysis and process energy integration. With six reported documents, 68 citations, and an h-index of 3, the available bibliometric information establishes a measurable scholarly record. Further assessment of individual publications and research outcomes would provide additional evidence for evaluating long-term academic contribution.
External Links
References
- Linnhoff, B., & Hindmarsh, E. (1983). The pinch design method for heat exchanger networks. Chemical Engineering Science, 38(5), 745–763.
https://doi.org/10.1016/0009-2509(83)80103-1 - Optimization of EC parameters using Fe and Al electrodes for hydrogen production and wastewater treatment
https://scholar.google.com/citations?view_op=view_citation&hl=en&user=mX0zyNMAAAAJ&citation_for_view=mX0zyNMAAAAJ:u5HHmVD_uO8C - Google Scholar. (n.d.). Shashank Prabhakar, Scholar Profile.
https://scholar.google.com/citations?user=mX0zyNMAAAAJ