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Analisa Penurunan Vakum Kondesor Tipe Permukaan PLTGU Grati Jasmid Edy; Erlina Erlina; Anuri Anuri
JURNAL POWERPLANT Vol 3 No 1 (2015): JURNAL POWER PLANT
Publisher : Sekolah Tinggi Teknik - PLN

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33322/powerplant.v3i1.801

Abstract

Loss of heat from the steam cycle power plants are mostly due to the heat removed through the condenser. condenser serves to change the output steam turbine (exhaust steam) into a condensate water through the process of heat transfer between steam and cooling water. Grati PLTGU condenser-type surface (surface condenser) with cooling in the form of sea water as much as 46.070 m3 / h decreased vacuum reaches 665 mmHg, whereas the design of the level of vacuum in the condenser PLTGU RoW can reach 703 mmHg at the load of 160 MW. The analysis shows that, keavakuman decline occurred because the RoW PLTGU condenser cooling water capacity of less as a result of the increase in head loss at the inlet tunnel and the rising sea temperature reaches 330C which fluctuates due to the influence of the season and climate. However, it is also the case of over-heat duty, which may be due to damage to the components of the turbine blade and seal so that the steam turbine output energy is still quite large, it is indicated by naikknya LMTD which reached 94% .Penurunan PLTGU Grati condenser vacuum caused losses large enough for the company, where any reduction of 10 mmHg vacuum caused an economic loss of 10 billion rupiah per year. As a follow up then, treated steps to resolve the issue of which is necessary setrategi better maintenance of the condenser and the cooling system so that the equipment can function optimally, as well as replacement in perodik on turbine components that history could potentially damage before the maintenance period Major Inspection Blade Row hereinafter that the Low Pressure Turbine Blades Stationary and Seal Strip, because the maintenance cycle is long enough (36000 hours) so that steam turbine efficiency is maintained.
Modifikasi Penambahan Line Emergency Back Up GSW Head Tank Pada PLTU Suralaya Unit 1-4 Jasmid Edy; Mu’ridin Mu’ridin
JURNAL POWERPLANT Vol 3 No 2 (2015): JURNAL POWER PLANT
Publisher : Sekolah Tinggi Teknik - PLN

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33322/powerplant.v3i2.825

Abstract

Cooling System teaching aids or GSW (General Service Water) is used for cooling system equipment lubrication aids Suralaya Power Plant in the water use demin (pure water) as its media. Issues that frequently occurred in unit is terkontaminasinya water demin by emergency back up GSW Head tank of water fire fighting that have chemical composition water that is different from water demin. This is because emergency back up normal (by pass valve) from demin supply pump could not be fully back up level low GSW Head tanks that can cause unit Trip if level was not immediately dinormalkan. If this is allowed to be continuously and not anticipated so it can cause corrosion, deposit and water pipes porous in line cooling assist (GSW which became a loss for the company financially cooling process equipment and helping to not optimal. One of offered solutions is to replace emergency supplies back up GSW Head tanks from fire fighting by using supplies from RFW (Reserve are Sent Electronically Water tanks which both of the same using the media water demin so terkontaminasinya water GSW can be minimized.