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#Pump ✳️ Centrifugal Pump Start up Procedure 👇👇👇👇
✳️Centrifugal Pump Start up Procedure
- Pump is a device which is used to impart mechanical energy to liquids in order to transport them from one location to another. Essentially, pumps are devices which pressurize the liquid. They are run by motors; the shaft is connected to an impeller. It is the movement of the impeller which leads to the movement of the liquid.
🔵Centrifugal Pump Start up Procedure
1_ Ensure 1st the tag number of the pump to be commissioned is correct.
2_ Ensure all pending maintenance jobs (if start after maintenance or PM)
3_ Ensure all drain valve should be close.
4_ Ensure Pump’s motor energized condition from electrical side.
5_Ensure all utilities lined up in pump seal cooling or lube oil if available.
6_Ensure that the discharge valve of the pump is closed. If it may be open or partially open, then close it.
7_Open the suction valve 100%.
8_Do pump priming by opening the vent valve and to release the air, when liquid starts oozing out of the vent then close the vent valve.
9_Rotate the shaft by hand to see if it is moving freely or not.
10_Check if the pump is rotating in the correct direction or not by starting the pump motor.
11_Check if the discharge pressure is steady or not. If it is not steady, then more trapped gases will need to be released.
12_Check all MCMS (machine conditioning & monitoring system) parameter are normal or under range.
13_Check if there are any undesired noises or vibrations from the pump. If there is then maintenance personals need to be called for fixing it.
14_Check if there is any leakage in the pump or not. If there is any leakage then maintenance personals needs to be called for fixing it.
15_Switch off the motor.
16_If everything is okay then the pump can be started by opening the discharge valve and then starting the motor or signaling the control room to start the motor.
~~~~~~~~~~~~~~~~~~~~~~~~~
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- Pump is a device which is used to impart mechanical energy to liquids in order to transport them from one location to another. Essentially, pumps are devices which pressurize the liquid. They are run by motors; the shaft is connected to an impeller. It is the movement of the impeller which leads to the movement of the liquid.
🔵Centrifugal Pump Start up Procedure
1_ Ensure 1st the tag number of the pump to be commissioned is correct.
2_ Ensure all pending maintenance jobs (if start after maintenance or PM)
3_ Ensure all drain valve should be close.
4_ Ensure Pump’s motor energized condition from electrical side.
5_Ensure all utilities lined up in pump seal cooling or lube oil if available.
6_Ensure that the discharge valve of the pump is closed. If it may be open or partially open, then close it.
7_Open the suction valve 100%.
8_Do pump priming by opening the vent valve and to release the air, when liquid starts oozing out of the vent then close the vent valve.
9_Rotate the shaft by hand to see if it is moving freely or not.
10_Check if the pump is rotating in the correct direction or not by starting the pump motor.
11_Check if the discharge pressure is steady or not. If it is not steady, then more trapped gases will need to be released.
12_Check all MCMS (machine conditioning & monitoring system) parameter are normal or under range.
13_Check if there are any undesired noises or vibrations from the pump. If there is then maintenance personals need to be called for fixing it.
14_Check if there is any leakage in the pump or not. If there is any leakage then maintenance personals needs to be called for fixing it.
15_Switch off the motor.
16_If everything is okay then the pump can be started by opening the discharge valve and then starting the motor or signaling the control room to start the motor.
~~~~~~~~~~~~~~~~~~~~~~~~~
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🟢Can any valve be used for controlling flow rate in a pump system, and what is the effect on water hammer?
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🟢Can any valve be used for controlling flow rate in a pump system, and what is the effect on water hammer? @Refinerytraining
🟢Can any valve be used for controlling flow rate in a pump system, and what is the effect on water hammer?
Not all valves are well suited for controlling system flow rate. Image 1 compares the valve characteristics of various valves. You can see that the gate valve, based on its position, increases flow rate the fastest out of any of the other valves. Of the valves presented here, the plug valve provides the most consistent flow increase versus its valve position, which is ideal for throttling. In this case, a gate valve would not be good for flow control because of the lack of linear control over the flow.
Overall, the performance and characteristics of each valve will affect the magnitude of any transients developed by valve closures and openings. It is important to consider rate of flow change versus valve position and control the closure rate of the valve such that the effects of system transients (water hammer) are reduced.
In Image 2, we have a comparison of some common valves where each valve closes over 60 seconds. The middle chart shows the pressure rising immediately upstream. The globe valve has the minimum pressure rise because the characteristics of the globe valve shown in the image above are more linear than either the butterfly or ball valve.
You can see in Image 1 that the characteristic curve of the ball valve is relatively flat coming from the bottom, with anything less than 40% open having very little effect on the flow rate. Without much change in flow until about 55 seconds, there is significant decrease in flow over the last five seconds of closure, which results in a rapid change in velocity and a high pressure change upstream. Using the ball valve would result in the greatest likeliness of a water hammer effect. This sudden rise in pressure can be damaging to equipment within the system.
@Refinerytraining
Not all valves are well suited for controlling system flow rate. Image 1 compares the valve characteristics of various valves. You can see that the gate valve, based on its position, increases flow rate the fastest out of any of the other valves. Of the valves presented here, the plug valve provides the most consistent flow increase versus its valve position, which is ideal for throttling. In this case, a gate valve would not be good for flow control because of the lack of linear control over the flow.
Overall, the performance and characteristics of each valve will affect the magnitude of any transients developed by valve closures and openings. It is important to consider rate of flow change versus valve position and control the closure rate of the valve such that the effects of system transients (water hammer) are reduced.
In Image 2, we have a comparison of some common valves where each valve closes over 60 seconds. The middle chart shows the pressure rising immediately upstream. The globe valve has the minimum pressure rise because the characteristics of the globe valve shown in the image above are more linear than either the butterfly or ball valve.
You can see in Image 1 that the characteristic curve of the ball valve is relatively flat coming from the bottom, with anything less than 40% open having very little effect on the flow rate. Without much change in flow until about 55 seconds, there is significant decrease in flow over the last five seconds of closure, which results in a rapid change in velocity and a high pressure change upstream. Using the ball valve would result in the greatest likeliness of a water hammer effect. This sudden rise in pressure can be damaging to equipment within the system.
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🟢Why use a Flame Arrester?
An unconfined deflagration occurs when there is an ignition of a flammable atmosphere outside a container or other process equipment. For example, a breathing or ventilation outlet from a tank storing gasoline…
🟢Why use a Flame Arrester?
An unconfined deflagration occurs when there is an ignition of a flammable atmosphere outside a container or other process equipment. For example, a breathing or ventilation outlet from a tank storing gasoline…
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Frangible Roof:
As per API 650----5.10.2.6 Frangible Roof: A roof is considered frangible ( 5.8.5 for emergency venting requirement) if the roof-to-shell joint will fail prior to the shell-to-bottom joint in the event of excessive internal pressure.
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- آموزش فرآیند و بهره برداری
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As per API 650----5.10.2.6 Frangible Roof: A roof is considered frangible ( 5.8.5 for emergency venting requirement) if the roof-to-shell joint will fail prior to the shell-to-bottom joint in the event of excessive internal pressure.
🌟کانال تخصصی آموزش پالایشگاهی:
- آموزش تجهیزات پالایشگاهی
- آموزش فرآیند و بهره برداری
- آموزش ایمنی فردی و فرآیندی
- و ...
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- آموزش مهندسی و طراحی فرآیند
- آموزش تجهیزات پالایشگاهی
- آموزش بهره برداری
- آموزش ایمنی فردی و فرآیندی
- و ...
🔗لینک عضویت
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مدیریت:
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- آموزش مهندسی و طراحی فرآیند
- آموزش تجهیزات پالایشگاهی
- آموزش بهره برداری
- آموزش ایمنی فردی و فرآیندی
- و ...
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مدیریت:
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#Accident
🔴از حوادث درس بگیریم🔴
✳️حادثه انفجار مخزن ذخیره سازی در حین اطفا حریق به دلیل عدم رعایت استاندارد طراحی مخزن
🔴 آموزش تجهیزات صنعت نفت و ایمنی با فیلم و انیمیشن👇👇
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🔴از حوادث درس بگیریم🔴
✳️حادثه انفجار مخزن ذخیره سازی در حین اطفا حریق به دلیل عدم رعایت استاندارد طراحی مخزن
🔴 آموزش تجهیزات صنعت نفت و ایمنی با فیلم و انیمیشن👇👇
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#Accident
✳️ دلیل فنی حادثه بالا
✅ بر اساس استاندارد API650 و API 653 بايد محل اتصال سقف مخزن با دیواره مخزن نسبت به اتصال کف مخزن با دیواره آن از جوش ضعیف تری برخوردار باشد تا در صورت وقوع انفجار داخلی سقف آن دچار پارگی شود و اگر سقف مخزن مقاومت بالایی داشته باشد مخزن از کف دچار پارگی شده و یا مخزن به پرواز در می آید و تمام محتویات آن در محیط رها می شود که میتواند بسیار خطرناک باشد...
همان طور که در این ویدئو میبینید این اصل رعایت نشده است و مخزن به هوا پرتاب شده و محتویات آن خارج می شود...
____________________________________
🔴کانال تخصصی آموزش تجهیزات صنعت نفت و ایمنی با فیلم و انیمیشن
@Refinerytraining
https://telegram.me/joinchat/BPcqEj6oILuNjxCzl0Qhsg
✳️ دلیل فنی حادثه بالا
✅ بر اساس استاندارد API650 و API 653 بايد محل اتصال سقف مخزن با دیواره مخزن نسبت به اتصال کف مخزن با دیواره آن از جوش ضعیف تری برخوردار باشد تا در صورت وقوع انفجار داخلی سقف آن دچار پارگی شود و اگر سقف مخزن مقاومت بالایی داشته باشد مخزن از کف دچار پارگی شده و یا مخزن به پرواز در می آید و تمام محتویات آن در محیط رها می شود که میتواند بسیار خطرناک باشد...
همان طور که در این ویدئو میبینید این اصل رعایت نشده است و مخزن به هوا پرتاب شده و محتویات آن خارج می شود...
____________________________________
🔴کانال تخصصی آموزش تجهیزات صنعت نفت و ایمنی با فیلم و انیمیشن
@Refinerytraining
https://telegram.me/joinchat/BPcqEj6oILuNjxCzl0Qhsg
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🌟کانال تخصصی آموزش پالایشگاهی:
- آموزش مهندسی و طراحی فرآیند
- آموزش تجهیزات پالایشگاهی
- آموزش بهره برداری
- آموزش ایمنی فردی و فرآیندی
- و ...
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مدیریت:
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- آموزش مهندسی و طراحی فرآیند
- آموزش تجهیزات پالایشگاهی
- آموزش بهره برداری
- آموزش ایمنی فردی و فرآیندی
- و ...
🔗لینک عضویت
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مدیریت:
@EsmaeilEsmaeilzadeh