Dinamika Suhu pada Sistem Tangki-Seri-Tak-Berinteraksi dengan Arus Recycle

Hermawan, Yulius Deddy and Suksmono, Yogi and Sulistyawati, RR Endang and Cicilia, Evelin and Dyah, Sekaring Aisyiah (2010) Dinamika Suhu pada Sistem Tangki-Seri-Tak-Berinteraksi dengan Arus Recycle. In: Seminar Nasional Teknik Kimia Kejuangan 2010, 26 January 2010, Yogyakarta.

[thumbnail of 528-1474-1-SM Dinamika Suhu SNTKK 2010 Hermawan et al.pdf]
Preview
Text
528-1474-1-SM Dinamika Suhu SNTKK 2010 Hermawan et al.pdf

Download (2MB) | Preview
[thumbnail of 24866 - Sertifikat Pemakalah SNTKK 2010 YDH (2010 01 26 ).pdf] Text
24866 - Sertifikat Pemakalah SNTKK 2010 YDH (2010 01 26 ).pdf

Download (305kB)

Abstract

This research studies the temperature dynamic behavior of non-interacting-tank (NIT) with recycle-stream which is frequently used in industries. Two tanks with volume of 25 liters are designed and arranged in series for experimentation in laboratory. Part of liquid from Tank-2 is recycled back to the Tank-1. In this work, the liquid volume of both Tank-1 and Tank-2 are remained at constant value. The heat disturbance load has been made based on both step increase and decrease. Those disturbances include the changes of temperature in input (Ti) and recycle (TR) streams. The temperature dynamic behavior of NIT system has also been explored. As can be seen from our investigation in laboratory, both of Tank-1 and Tank-2 in NIT system produce a stable response to the disturbance change in temperature of the input and recycle streams. Furthermore, dynamic simulation using computer programming is also done, and its simulation results are compared with the experiment data from laboratory. The developed mathematical model of the NIT system is solved numerically. Such mathematical model is rigorously examined in Scilab software environment. This research also shows that the trends of temperature dynamic simulation results are quite similar with those in our experiment results.

Item Type: Conference or Workshop Item (Paper)
Uncontrolled Keywords: Keywords: Non-Interacting-Tank (NIT), step function, dynamic behavior, and stable response.
Subjects: T Technology > T Technology (General)
Divisions: Faculty of Engineering, Science and Mathematics > School of Chemistry
Depositing User: Dr Y. Deddy Hermawan
Date Deposited: 09 Jun 2021 01:49
Last Modified: 06 Apr 2022 04:45
URI: http://eprints.upnyk.ac.id/id/eprint/24866

Actions (login required)

View Item View Item