A Study on 2-Butanol Droplet: Analysis of Introduced Constant in The New Approach on Film Stagnant Model

Authors

  • Engkos Achmad Kosasih Department of Mechanical Engineering, Mechanical Engineering, Faculty of Engineering, University of Indonesia, 16424Depok, Jawa Barat,Indonesia
  • Hakan Tandjono Department of Mechanical Engineering, Mechanical Engineering, Faculty of Engineering, University of Indonesia, 16424Depok, Jawa Barat, Indonesia
  • D. Prasetyo Department of Mechanical Engineering, Mechanical Engineering, Faculty of Engineering, University of Indonesia, 16424Depok, Jawa Barat,Indonesia

Keywords:

Droplet, non-stationary, heat and mass transfer model, 2-butanol, a new approach to Stagnant Film Model

Abstract

In many different applications, non-stationary liquid droplet evaporation phenomenon works as a fundamental. An accurate prediction of heat and mass transfer on non-static droplet is required for design. Ranz-Marshall analogy combined with the Stagnant film Model is utilized method of predicting single non-stationary high mass transfer rate droplet evaporation, but there are several problems regarding to the method such as Lewis number more than one, static film width, and not simultaneously calculates heatand mass transfer. In this paper, A new approach to Stagnant Film Model and its new introduced constant is briefly discussed. The value of C1 and C2 is investigated by comparing 2-butanol evaporation numerical simulation with experimental data. The New Approach deviated less when predicting radius while both still failed to predict changes in temperature. The appropriate value of C1 on predicting the right radius varied between -0.010 to -0.035 while the value of C2 is -4 x 10-8. For different set-up variables, the value of C1 differs. Therefore, the value of C1 supposedbe a function that can be furtherly investigated with the following research on othersubstances.

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Published

2024-03-28

How to Cite

Engkos Achmad Kosasih, Hakan Tandjono, & D. Prasetyo. (2024). A Study on 2-Butanol Droplet: Analysis of Introduced Constant in The New Approach on Film Stagnant Model. Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, 65(2), 303–313. Retrieved from https://semarakilmu.com.my/journals/index.php/fluid_mechanics_thermal_sciences/article/view/3714

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