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I applied via Naukri.com and was interviewed in Oct 2024. There was 1 interview round.
Control Loop system is a system that automatically controls a process variable to a desired set point.
Control Loop system consists of a controller, process variable, set point, and final control element.
Examples include PID control loops used in temperature control systems.
Control Loop systems help maintain stability and accuracy in industrial processes.
Steag Energy Services interview questions for popular designations
Boiler water & steam quality, cooling system & water consumption, coal analysis as per IS standard.
Boiler water quality refers to the purity of water used in boilers to prevent corrosion and scale buildup.
Steam quality is the measure of the amount of moisture in steam, with higher quality steam having less moisture.
Cooling system quality control involves monitoring water quality to prevent fouling and corrosion in the ...
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I applied via Naukri.com and was interviewed in Apr 2023. There were 2 interview rounds.
The O2 analiger in a boiler is typically located in the flue gas stream.
The O2 analiger is used to measure the oxygen content in the flue gas.
It is important to monitor the oxygen levels in the flue gas to optimize combustion efficiency.
The O2 analiger is usually installed in the boiler's flue gas duct or stack.
It may be located at a specific distance from the boiler outlet to ensure accurate measurements.
The O2 analig...
Desuperheating line is used to reduce the temperature of superheated steam by injecting water or other cooling agents.
Desuperheating line is typically located downstream of the superheater in a boiler system.
It is used to control the temperature of the steam to prevent damage to downstream equipment.
The location of the desuperheating line may vary depending on the specific boiler design and application.
Examples of desu...
APH leakage is a problem in boilers that can lead to reduced efficiency and increased emissions.
APH stands for Air Preheater, which is used to heat the combustion air before it enters the boiler.
Leakage in the APH can result in loss of heat and reduced efficiency.
Identifying the leakage involves inspecting the APH for visible signs of damage or leakage, conducting pressure tests, and monitoring performance parameters.
C...
Types of losses in Boiler
Heat loss through flue gases
Heat loss through radiation and convection
Incomplete combustion losses
Blowdown losses
Ash and unburnt losses
There are eight types of losses in a boiler.
The eight types of losses in a boiler are: radiation, convection, exhaust, blowdown, incomplete combustion, unburnt fuel, ash, and moisture.
Radiation loss occurs due to the heat radiated from the boiler's surface.
Convection loss occurs due to the heat carried away by the flue gases.
Exhaust loss occurs due to the heat carried away by the exhaust gases.
Blowdown loss occurs due ...
Drum pressure drops in the area of steam generation and distribution.
Drum pressure drop can occur due to steam leakage in the distribution system.
Pressure drop can also happen in the steam generation process, such as in the boiler or heat exchanger.
Other factors that can cause drum pressure drop include fouling or scaling in the system.
Monitoring and maintaining proper drum pressure is crucial for efficient and safe op
posted on 29 Dec 2024
I applied via LinkedIn and was interviewed before Dec 2023. There was 1 interview round.
About power plants activities
I applied via Walk-in and was interviewed before Jan 2024. There was 1 interview round.
I have over 10 years of experience in managing powerplant operations, including maintenance, troubleshooting, and optimization.
Managed daily operations of a 500 MW coal-fired powerplant
Implemented preventive maintenance programs to reduce downtime
Led a team of engineers in troubleshooting and resolving equipment issues
Optimized plant performance through efficiency improvements and cost reduction initiatives
Our plant coal TPH is currently at 150 tons per hour.
Our plant currently processes 150 tons of coal per hour.
This is a key metric for measuring the efficiency of our operations.
We are constantly working to optimize our processes to increase this throughput.
There are two main types of pumps in AHP: primary pumps and secondary pumps.
Primary pumps are responsible for circulating water through the system, such as the main circulating pump.
Secondary pumps are used for specific functions, like the feedwater pump or the condensate extraction pump.
Examples include centrifugal pumps, reciprocating pumps, and rotary pumps.
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