scholarly journals Evaluation of Hydrogen Accumulation Suppression and Measurement Performance for Pressure Transmitter Using Palladium

Author(s):  
Ryo KUWANA ◽  
Daisuke SHINMA ◽  
Atsushi FUSHIMI ◽  
Hideki HANAMI ◽  
Isao HARA ◽  
...  
Author(s):  
Ekaterina Tugova ◽  
Manus Patrick Henry ◽  
Oleg Bushuev ◽  
Maria Motorina
Keyword(s):  

2014 ◽  
Vol 53 (5-6) ◽  
pp. 335-342 ◽  
Author(s):  
V. V. Berezovets ◽  
R. V. Denis ◽  
I. Yu. Zavaliy ◽  
V. Paul-Boncour

2015 ◽  
Vol 645 ◽  
pp. S225-S229 ◽  
Author(s):  
W.J. Siekhaus ◽  
P.K. Weber ◽  
I.D. Hutcheon ◽  
J.E.P. Matzel ◽  
W. McLean

Author(s):  
C. M. Refaul Ferdous ◽  
Amanda Kulhawy ◽  
Jessica Farrell ◽  
Chris Beaudin ◽  
Anthony Payoe ◽  
...  

The Enbridge Liquids Pipeline system is comprised of a large number of facilities including storage terminals, pump stations, injection sites, and delivery sites. Given the vast amount of small diameter piping (SDP) within company Pipeline facilities, SDP represents a significant portion of total facility integrity risk. An event such as equipment failure or product release can cause significant business impacts, and adverse consequences to the environment and/or safety of operations personnel. A quantitative risk based approach is required in order to establish robust, risk-based plans and programs to maintain the integrity of these SDP sections. Small diameter piping lengths are relatively short. Consequently, it is impractical to use SDP length as a unit of likelihood and risk measure. Instead, the preferred methodology is to determine the total number of assemblies for each type of SDP. In support of this approach, an inventory of SDP sections throughout the system has been gathered. For illustrative purposes, an example of a small diameter section would be a pressure transmitter branch connection. The isolatable section that would be risk assessed would start from the surface of the main station piping connection and continue up to the transmitter. This paper presents the framework for likelihood and consequence assessment of SDP based on the system description above. This framework quantitatively estimates the risk of SDP failure and risk-ranks SDP sections in support of implementing and establishing a system wide Risk Based Inspection and Maintenance program for SDP.


JURNAL ELTEK ◽  
2019 ◽  
Vol 17 (2) ◽  
pp. 32
Author(s):  
Hariyadi Singgih Singgih ◽  
Subiyantoro Subiyantoro ◽  
Siswoko Siswoko

Metode pemurnian air laut menggunakan pengaturan kecepatan motor dalam proses reverse osmosis sangat dibutuhkan, dikarenakan proses penyaringan dalam membran reverse osmosis membutuhkan tekanan yang sesuai dengan kemampuan membran. Selain itu juga dibutuhkan kontrol ketinggian air untuk mengotomatisasi tangki yang telah penuh dan mempertahankan ketinggian air. Solusi untuk mengurangi permasalahan ini digunakan DCS yang berfungsi untuk memonitor dan mengontrol plant dari jarak jauh, Metode kontrol yang digunakan pada DCS untuk menstabilkan set point menggunakan metode kontrol PID Ziegler-Nichols. Dalam penelitian ini dirancang mini plant kontrol ketinggian air dan tekanan menggunakan metode PID Ziegler-Nichols yang diimplementasikan pada DCS-PCS7. Sensor yang digunakan untuk ketinggian air adalah HC-SR04, dan untuk sensor tekanan menggunakan pressure transmitter. Dengan aplikasi kontrol PID diperoleh kestabilan set point dengan parameter kontrol ketinggian air : Kp=134.4, Ti=0 dan Td=1. Waktu untuk mencapai set point 120 detik dan  error steady state sebesar 0.94% tanpa gangguan. Untuk parameter Kontrol tekanan air sebesar: Kp=3, Ti=0 dan Td=1.375 dan Delay time = 4s, Rise time = 7s, Settling time = 25s, Osilasi output PID rendah, Error steady state = 1.03% tanpa gangguan.    


2018 ◽  
Vol 18 (17) ◽  
pp. 7150-7157 ◽  
Author(s):  
Sumit Kumar Jindal ◽  
Yogesh Kumar Agarwal ◽  
Srishti Priya ◽  
Ajay Kumar ◽  
Sanjeev Kumar Raghuwanshi

2020 ◽  
Vol 20 (18) ◽  
pp. 10460-10468
Author(s):  
Igor S. Nadezhdin ◽  
Aleksey G. Goryunov

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