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No. 51 – Pressurized Condensate Recovery

BEST PRACTICE NO. 51

Pressurized Condensate Recovery

Pressurized condensate systems can provide plants with a minimum of between 15% and 35% savings in fuel costs when compared to a conventional atmospherically vented
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No. 50 – Steam System Process Control

1. STEAM PRESSURE CONTROL The majority of industrial steam systems will have a pressure-reducing valve application. High-pressure steam is reduced to lower-pressure steam for a process or heating application. Used throughout
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No. 49 – Steam Process Control

The technical paper Steam System Process Control provides a basic understanding of the different process control schemes used in a typical steam system. The technical paper is just an overview
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Combustion Flame Inspection and Visual Reviews – Best Practice No. 48

BEST PRACTICE NO. 48

Combustion Flame Visual Inspection

  • The following presentation is an overview of a combustion flame analysis for plant personnel for the inspection of the combustion flame for performance
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No. 47 – Part B Shell and Tube

SHELL AND TUBE HEAT EXCHANGER (STHE) - Part B A shell and tube heat exchanger (STHE) consist of several different components and each component needs to be evaluated in the selection
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No. 46 – Shell and Tube Heat Exchangers

Steam System Engineering --- Steam Shell and Tube Heat Exchangers The shell and tube heat exchanger (STHE) is the workhorse in the steam world, and it is used in
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No. 45 – Steam System Training

Train-ing (n.): To teach by instruction, discipline or drill Know-ledge (n.): The range of one’s information or understanding Industrial Plant Management personnel who investigate the full potential of steam as a
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No. 44 – Steam Thermocompressor Systems

1. THERMOCOMPRESSOR A thermocompressor is a device that uses high-pressure steam as a motive force to entrain a lower-pressure steam and discharges the mixture at an intermediate steam pressure. Applying the
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No. 43 – Condensate Tank Standard Detail Prints

VENTED CONDENSATE TANK OPERATIONS

DOWNLOAD THE PDF DRAWINGS

1. Why Have CONDENSATE Pumps?

In gravity type systems the condensate lines do not have the pressure to flow the condensate back to the
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No. 42 – Steam Designs

ALL STEAM SYSTEM STANDARD PRINTS ARE PROVIDE IN ONE AUTOCAD PRINT. AUTOCAD FILES ARE AVAILABLE UPON REQUEST. VENTING STEAM: THE LARGEST ENERGY LOSS IN STEAM SYSTEMS
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Steam Trap Test, Best Practice No. 44

Successfully Testing Steam Traps with High Frequency Ultrasound The solution is using the field proven comparison method will provide an accurate test on each steam trap. The comparison method uses three
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Thermostatic Steam Trap, Stations Temperature Method – Best Practice No. 40

BEST PRACTICE NO. 40

Testing Steam Tap Stations by the Temperature Method

The relationship between steam pressure and temperature makes temperature measurement extremely helpful in understanding many different operating conditions of steam
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