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Boostrand ChemE
เข้าร่วมเมื่อ 28 ม.ค. 2022
Are you eager to elevate your process engineering skills to new heights? Perhaps you're aspiring to land a job as a process engineer, seeking ways to boost productivity, or aiming to better collaborate with your colleagues in the engineering domain.
If any of these goals resonate with you, you've come to the right place!
Over the coming emails, we'll delve into various process engineering insights. Together, we'll explore the typical day of a process engineer, learn effective issue-solving techniques, and discover common industry practices.
If you're eager to dive deeper into the project workflow and understand the pivotal role of a process engineer in the engineering domain, I've prepared a free course discussing process engineering design activities and the responsibilities of a process engineer. Take a look at the link below to explore more:
courses.boostrand.com/courses/process-design-engineering-activities
If any of these goals resonate with you, you've come to the right place!
Over the coming emails, we'll delve into various process engineering insights. Together, we'll explore the typical day of a process engineer, learn effective issue-solving techniques, and discover common industry practices.
If you're eager to dive deeper into the project workflow and understand the pivotal role of a process engineer in the engineering domain, I've prepared a free course discussing process engineering design activities and the responsibilities of a process engineer. Take a look at the link below to explore more:
courses.boostrand.com/courses/process-design-engineering-activities
Process Design Stages From Conceptual Design To Startup
Discover the key stages of process design in engineering projects. Learn about conceptual design, FEED (Front-End Engineering Design), detailed engineering, and commissioning & startup.
Link to original article:
boostrand.com/understand-process-design-stages-from-conceptual-design-to-startup/
Discover process engineering career:
boostrand.com/free-course
Understand how each stage contributes to the successful execution of oil and gas, chemical, or petrochemical projects. Gain insights into the role of process engineers, project deliverables, cost accuracy, and flexibility for modifications at each stage. Boost your knowledge of the process design journey from idea to operational plant.
▬ Contents of this video ▬▬▬▬▬▬▬▬▬▬
0:00 - Intro
0:39 - Process Design Overview
1:16 - Initial Design Considerations
1:57 - Detailed Design Activities
2:40 - Stakeholder and Vendor Considerations
3:56 - Conceptual Design Stage
4:37 - Objectives of Conceptual Design
5:21 - Front End Engineering Design (FEED) Stage
6:48 - Detailed Engineering Stage
7:25 - Incorporating Vendor Data and HAZOP Outcomes
8:51 - Finalizing Detailed Engineering
9:30 - Commissioning and Startup
10:43 - Conclusion
Link to original article:
boostrand.com/understand-process-design-stages-from-conceptual-design-to-startup/
Discover process engineering career:
boostrand.com/free-course
Understand how each stage contributes to the successful execution of oil and gas, chemical, or petrochemical projects. Gain insights into the role of process engineers, project deliverables, cost accuracy, and flexibility for modifications at each stage. Boost your knowledge of the process design journey from idea to operational plant.
▬ Contents of this video ▬▬▬▬▬▬▬▬▬▬
0:00 - Intro
0:39 - Process Design Overview
1:16 - Initial Design Considerations
1:57 - Detailed Design Activities
2:40 - Stakeholder and Vendor Considerations
3:56 - Conceptual Design Stage
4:37 - Objectives of Conceptual Design
5:21 - Front End Engineering Design (FEED) Stage
6:48 - Detailed Engineering Stage
7:25 - Incorporating Vendor Data and HAZOP Outcomes
8:51 - Finalizing Detailed Engineering
9:30 - Commissioning and Startup
10:43 - Conclusion
มุมมอง: 478
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Energy Conservation Techniques in Chemical Process Design
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Discover the most common energy conservation techniques for process engineers. Learn how to optimize process design, apply heat integration, utilize turboexpanders, select efficient equipment, and implement effective control methods to reduce energy consumption and operating costs in chemical plants. Understand the challenges and drawbacks to consider when applying these energy-saving practices...
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Learn the fundamentals of chemical engineer's role in design projects. Discover the crucial activities carried out by process engineers, such as process simulation, equipment sizing, line sizing, PSV sizing, and more. Understand the essential documents they develop, including PFDs, P&IDs, datasheets, and control philosophy. Master these skills to optimize plant design and contribute to successf...
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Issue with design pressure of a heat exchanger on a pump discharge - Case Study
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Separator type selection, internals and design criteria
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Process Flow Diagrams (PFDs) Explained | Key to Efficient Process Design
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Case Study: Troubleshooting Foam Formation in Crude Oil Separators
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In my 2 years of work ex. i have ignored CV while it was being used everywhere. I read industrial Control valves are equal percentage somewhere but by the end of lecture i was very happy when i learned it logically. I do have excel sheet based on api for liquid control valve sizing...but i ignored it . Thanks your clarity on topic is amazing.
Thank you...
You are welcome Azmy 🙂 Have you checked out our free course? You can check it out at : boostrand.com/free-course
Doubt: in MeOH UG tank i was to give N2 blanketing for that 2 PRV installed 7kg to 3kg & 3kg to 250mmwc. So i always thought if 2nd one malfunctions then we get PT signal to XV from MeOH UGT itself. is it good practice?
My 1 doubt is cleared about PRV controls downstream pressure but please can you clear my above doubt if it's safe practice?
I think this needs to be elaborated more with a scheme in order for me to understand the situation and give a valid answer.
These are top notch videos. It gives soo much clarity cant thank enough❤
Subscribed. Excellent videos!
Thank you for sharing!!
thanks mate good vid
You are welcome! Have you checked out our free course at boostrand.com/free-course ?
This is a great explanation.
Thanks Bryan. Have you checked out our free process engineering course? boostrand.com/free-course
Thanks
Very Well Explained ... eager to see more knowledgeable video's from Boostrand..
contents shared are very interesting and knowledge imparting. please continue good work.. can you please make detail contents on Compressor , Separators PSV Flare study ......etc. Thank you...
Thanks, have you checked out my course in the link below? boostrand.com/free-course
Thank you very much Merci beaucoup شكرا جزيلا
Excellent material 👍👍👍👍👍
Excellent video
Thank you. 😃 Have you checked out our process engineering course? It's for free. boostrand.com/free-course
🙏 tnx
Really useful ❤
Thank you 🙏
Thank you 🙏
👍 great
GOD Bless u Sir, i hope that there is other video
You are welcome. Have you checked out our free course? boostrand.com/free-course
OK. Would you please further explain .
If you size the separator based on very high separation requirements, this would lead to much larger separator size. You can check out the below link: boostrand.com/how-two-phase-and-three-phase-separators-work/
Nice explanation..need more such videos
Thank you raj. Have you checked out our free course? boostrand.com/free-course
excellent. add more such lesson learned and troubleshooting videos.
Thank you jegan. Your request is noted. Have you checked out our free course? boostrand.com/free-course
nice video...got a lot of information :)
You are welcome 😀 Have you checked out our free course? boostrand.com/free-course
what's H and Q?
H: pump differential head Q: pump volumetric flow rate
@@boostrand2771 Thank you for your great channel 🌸
Thanks
You are welcome 😀. Have you checked out our free process engineering course? Check out: boostrand.com/free-course
Thanks
Thanks
Nice❤
Very useful video..thanks!
You are welcome @parvathycm 🙂 have you checked out our free course? boostrand.com/free-course
Very useful video! Thanks a lot
As a mechanical engineer who works closely with process engineers, I find your channel so amazing. It has science accompanied with practical examples. For sure will take you online courses as well.
Thank you Amir for your comment. If you want to start a long journey into process engineering career, you can check out the free course: boostrand.com/free-course
يا عم لو حكيت بالعربي كان افضل في الشرح وتوصيل المعلومة.. في الاول اعتقدت ان لهجتك هندية وبعدين وضحت نبرة النيل.. لاحظت ان اغلب فيديوهات الهنود يشرحو بلغتهم رغم تمكنهم من اللغة الانجليزية وذلك لاعتزازهم بلسانهم، اما من يتحدث اللغة العربية تجده يلهث خلف اللغة الانجليزية والسبب !!! اجعل الشرح باللغة العربية مع استخدام المصطلحات الانجليزية حينها تكون المعادلة معقولة وتعم الفائدة. ربي يعينك ويساعدك. مهندس ليبي مر من هنا.
شكرا لتعليقك.. القناة موجهة للعالم وليس فقط للعرب
Outstanding. Thanks Mohammed
Awesome❤❤❤
Excellent
what is the difference between SIS (instrumented safety system) and ESD emergency shutdown in the oil and gas industry and what are their respective standards 0:19
They are technically the same. Sometimes the shutdown system is called ESD, and sometimes it's called SIS but it is the same function. Sometimes also ESD is referred to the total shutdown of unit and not just a small shutdown by a SIF (Safety Instrumented Function). So it mainly depends on how they are defined within a project. For a process engineer, the most important factor is SIL rating as this can cause a great limitation when assessing the reliability of SIF functions.
How is SRV compression determined?
Could you elaborate more? There is no compression in a PSV. The sensitivity of the spring is determined by the vendor based on the the PSV set pressure.
Very very helpful
Thank you so much and have a great day!
Great video
Explain furnace outlet temperature is controlled by pressure or flow
Nice idea! I can talk about it in a later video. Furnace outlet temperature is commonly controlled by adjusting the amount of fuel entering the furnace. Adding a control valve on furnace outlet is not accepted from safety point of view stopping the flow in furnace tubes while the fluid is kept on being heated is a very dangerous situation.