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1.
On the theory of burning of monopropellant droplets by
Material type: Text Text; Format: print ; Literary form: Not fiction
Publication details: Bangalore : Indian Institute of Science, 1972
Dissertation note: PhD;1972;Aeronautical Engineering.
Availability: Items available for reference: JRD Tata Memorial Library: Not for loan (1)Call number: 541.362 RAM.

2.
Annual review of physical chemistry. Vol.57 ed by Stephen R. Leone by
Material type: Text Text
Publication details: Palo Alto Annual reviews 2006
Availability: Items available for loan: JRD Tata Memorial Library (1)Call number: 541.305 N50.57 "SER".

3.
Advances in chemical engineering. Vol.31 Computational fluid dynamics ed by Guy B. Marin by
Material type: Text Text
Publication details: Amsterdam Elsevier 2006
Availability: Items available for loan: JRD Tata Memorial Library (1)Call number: 660.205 N56.31 "SER".

4.
Advances in imaging and electron physics. Vol.146 ed by Peter W. Hawkes by
Material type: Text Text
Publication details: Amsterdam Elsevier/AP 2007
Availability: Items available for loan: JRD Tata Memorial Library (1)Call number: 621.38105 N48.146 "SER".

5.
Study of droplet dynamics in heated environment by Binita Pathak by Series: IISc. Dept. of ME. MSc (Engg) Thesis
Material type: Text Text
Publication details: Bangalore IISc 2013
Availability: Items available for reference: JRD Tata Memorial Library: Not for loan (1)Call number: 620.50153644 P13 "THESIS".

6.
Universe in a Helium Droplet (E-BOOK) by Grigory E Volovik by
Material type: Text Text
Publication details: Oxford University Press 2010
Availability: Items available for loan: JRD Tata Memorial Library (1)Call number: 530.42 P10 (e-Book)(PHY).

7.
Combustion theory : by Series: Addison-Wesley Series in Engineering Science
Material type: Text Text; Format: print ; Literary form: Not fiction
Publication details: London : Addison-Wesley Publishing Company, Inc., ©1965
Availability: Items available for loan: JRD Tata Memorial Library (1)Call number: 541.361 WIL.

8.
Numerical study of droplet dynamics in viscoelastic flows by
Material type: Text Text
Publication details: Bangalore IISc 2016
Availability: Items available for reference: JRD Tata Memorial Library: Not for loan (1)Call number: 620.192015320535 P16 (THESIS).

9.
Influence of chemical coating on droplet impact dynamics by Rahul Gupta by
Material type: Text Text
Publication details: Bangalore IISc 2016
Availability: Items available for reference: JRD Tata Memorial Library: Not for loan (1)Call number: 620.1125 P16 (THESIS).

10.
Droplet growth in moist turbulent natural convection in a tube by Deepak Govind Madival by
Material type: Text Text; Format: print ; Literary form: Not fiction
Publication details: Bangalore : Indian Institute of Science, 2017
Dissertation note: PhD;2017;Mechanical Engineering.
Availability: Items available for reference: JRD Tata Memorial Library: Not for loan (1)Call number: 532.517 P17.

11.
Fuel drop splashing on heated solid surfaces by S Akshay; advised by D Sivakumar by
Material type: Text Text
Publication details: Bengaluru IISc 2021
Dissertation note: MTech (Res); IISc; 2021
Online resources:
Availability: Items available for reference: JRD Tata Memorial Library: Not for loan (1)Call number: 600 AKS/F.

12.
Insights of evaporation dynamics of an interacting linear array of droplet system by Keshav Paandey; advised by Saptarshi Basu by
Material type: Text Text
Publication details: Bengaluru IISc 2020
Dissertation note: MTech (Res); IISc; 2020
Online resources:
Availability: Items available for reference: JRD Tata Memorial Library: Not for loan (1)Call number: 620 KES/I.

13.
Interaction behavior and droplet characteristics of multi-injector sprays by Narendra Dev; advised by D Sivakumar by
Material type: Text Text
Publication details: Bengaluru IISc 2020
Dissertation note: MTech (Res); IISc; 2020
Online resources:
Availability: Items available for reference: JRD Tata Memorial Library: Not for loan (1)Call number: 620 NAR/I.

14.
Internal boiling to flame flickering: insights into various spatio-temporal dynamics of nanofuel droplet combustion by Khushboo Pandey; advised by Saptarshi Basu and Kamanio Chattopadhyay by
Material type: Text Text
Publication details: Bengaluru IISc 2020
Dissertation note: PhD; IISc; 2020
Online resources:
Availability: Items available for reference: JRD Tata Memorial Library: Not for loan (1)Call number: 622 KHU/I.

15.
Droplet Isothermal amplification for nucleic acid quantification by V Priyanka; advised by Rahul Roy by
Material type: Text Text
Publication details: Bengaluru IISc 2022
Dissertation note: PhD; IISc; 2022
Online resources:
Availability: Items available for reference: JRD Tata Memorial Library: Not for loan (1)Call number: 660 PRI/D.

16.
Insights into evaporation, atomization, and precipitate formation of polymer droplets by
Material type: Text Text; Format: print ; Literary form: Not fiction
Publication details: Bangalore: Indian Institute of Science, 2023
Dissertation note: PhD; 2023; Mechanical Engineering
Online resources:
Availability: Items available for reference: JRD Tata Memorial Library: Not For Loan (1)Call number: 547.704 RAG.

17.
From Impact to Encapsulation: Advancing Droplet Technologies with Liquid Marbles by
Material type: Text Text; Format: print ; Literary form: Not fiction
Publication details: Bangalore: Indian Institute of Science, 2023
Dissertation note: Phd;2023;Centre for Nano Science and Engineering
Online resources:
Availability: Items available for reference: JRD Tata Memorial Library: Not for loan (1)Call number: 620.1920 VAS.

18.
Aerobreakup of a polymeric droplet by
Material type: Text Text; Format: print ; Literary form: Not fiction
Language: en
Publication details: Bangalore : Indian Institute of Science, 2024
Dissertation note: Aerobreakup of a liquid droplet refers to the process of breaking the droplet into smaller fragments by subjecting it to a sufficiently high-speed stream of gas (generally air). This process lies at the core of various natural and industrial processes like fuel atomization in IC engines, breakup of falling raindrops, spray atomization of paints and pharmaceutical chemicals, breakup of sneezed ejecta, etc. The present study investigates the aerobreakup of a polymeric droplet. A polymeric liquid exhibits viscoelastic nature due to the presence of long-chain polymer molecules, and the aerobreakup of such viscoelastic droplets can be drastically different from that of a purely viscous (Newtonian) droplet. Studying the aerobreakup of a polymeric droplet draws special attention because of two reasons. First, many liquids of practical importance are inherently viscoelastic, and second, polymers can be added as a rheological modifier to gain control over the aerobreakup process. While extensive research has been conducted on the aerobreakup of Newtonian droplets, studies on viscoelastic droplets are scarce, and the mechanism through which liquid elasticity influences the process remains elusive. The present study delves into both the mechanism and the impact of liquid elasticity on the aerobreakup of a polymeric droplet. The study is structured into three major parts. The first part provides an experimental study on the shock-induced aerobreakup of a polymeric droplet. Here, we explore the role of liquid elasticity on the aerobreakup process for a wide range of Weber number (∼10^2 - 10^4) and elasticity number (∼10^(-4) - 10^2) by subjecting polymeric droplets (aqueous solutions of polyethylene oxide) of different concentrations to a strong airflow induced behind a moving shock wave. Experiments revealed that the impact of liquid elasticity is negligible in the early stages of droplet breakup, which involves droplet deformation and growth of different hydrodynamic instabilities (Kelvin-Helmholtz and Rayleigh-Taylor). However, a dominant role of liquid appears in the final stages of droplet breakup in terms of the morphology of the liquid mass. In this first part of our study, the viscosity of the polymeric solutions differed from that of the Newtonian solvent (DI water), and some of these polymeric solutions displayed shear-thinning behavior. Therefore, isolating the effect of elasticity from the viscosity and shear-thinning behavior remains an unresolved issue. This forms the basis for the second part of the research work. Here, we employ Boger fluids, which do not show a strain rate-dependent viscosity in shear flows (like Newtonian liquids) but exhibit viscoelastic properties. By comparing the shock-induced aerobreakup of a Boger fluid droplet with that of a Newtonian droplet having similar shear viscosity, we eliminate any effect that may come from the shear-thinning behavior. The third part of this work provides an experimental study on the aerodynamic bag breakup of a polymeric droplet at a fixed Weber number of ≈15, while the elasticity number is varied in the range of ∼ 10^(-4) - 10^(-2). Here we attempt to address a very fundamental aspect of studying aerobreakup, i.e., to predict fragmentation. Experiments revealed that the initial deformation dynamics of a polymeric droplet are similar to the Newtonian solvent droplet. However, in the later stages, the actual fragmentation of liquid mass is resisted by the presence of polymers. Depending upon the liquid elasticity, fragmentation can be completely inhibited in the timescale of experimental observation. We provide a framework to study this problem, identify the stages where the role of liquid elasticity can be neglected and where it must be considered, and finally, establish a criterion that governs the occurrence or the absence of fragmentation in a specified time period.
Online resources:
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19.
Aerobreakup of a polymeric droplet by
Material type: Text Text; Format: print ; Literary form: Not fiction
Language: en
Publication details: Bangalore : Indian Institute of Science, 2024
Online resources:
Availability: Items available for reference: JRD Tata Memorial Library: Not for loan (1)Call number: 541.3 CHA.

20.
Insights on the evaporation and precipitation of pathogen-laden respiratory droplets on inanimate surfaces / by
Material type: Text Text; Format: print ; Literary form: Not fiction
Language: en
Publication details: Bangalore : Indian Institute of Science, 2024
Dissertation note: PhD;2024;Mechanical Engineering
Online resources:
Availability: Items available for reference: JRD Tata Memorial Library: Not for loan (1)Call number: 614.49 RAS.

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