Department of Research and Development, UOP, Santiago, Chile
10.22034/jceem.2026.588574.1033
Abstract
KKS identification codes used to identify various components in the P&I diagram, equipment list, electrical load list, instrumentation list, function diagrams, terminal diagrams, system descriptions, and other documents. In this regard, the specification of power plant units not recounted in general. In addition, as a simple rule, the 4 digits of the equipment key (for example "-S01") are not listed in P&ID. Most valves, precision measuring instruments, etc. have a NAME PLATE installed on which the complete KKS code of the instrument inserted, which also includes the unit number of the power plant. The KKS technical issues in question fully recounted to determine which equipment discussed. For example, the phrase "solenoid valve" MBA41AA010A should be used instead of the phrase "solenoid valve" operating BLOW OFF 1.2, 1.1. KKS coding used to order spare parts. The uniaxial arrangement of the turbine allows the compressor to operate directly and independently of the generator. Combustion of gas or liquid fuel done in two symmetrical combustion chambers with several burners located on both sides of the turbine. Each combustion chamber has 8 burners. Air enters the compressor through the suction channel and through filters and mufflers. In the compressor, the air pressure increases by almost 11 times. Compressed air directed to the burners (above each combustion chamber) and burned in the combustion chambers. Hot gases burned and converted into mechanical power through a turbine. The generator connected to the turbine compressor through the shaft. The electrical power generated by the generator delivered to the transformer through the generator terminals. Exhaust gases reach atmospheric pressure at an approximate temperature of 545 C through an axial diffuser. Exhaust gas enters the open air through a vertical exhaust.
Johnson,A . (2026). Description of Utility System in Petrochemical Company (Gas Power System). (e247587). Journal of Chemical Engineering and Energy Materials, (), e247587 doi: 10.22034/jceem.2026.588574.1033
MLA
Johnson,A . "Description of Utility System in Petrochemical Company (Gas Power System)" .e247587 , Journal of Chemical Engineering and Energy Materials, , , 2026, e247587. doi: 10.22034/jceem.2026.588574.1033
HARVARD
Johnson A. (2026). 'Description of Utility System in Petrochemical Company (Gas Power System)', Journal of Chemical Engineering and Energy Materials, (), e247587. doi: 10.22034/jceem.2026.588574.1033
CHICAGO
A Johnson, "Description of Utility System in Petrochemical Company (Gas Power System)," Journal of Chemical Engineering and Energy Materials, (2026): e247587, doi: 10.22034/jceem.2026.588574.1033
VANCOUVER
Johnson A. Description of Utility System in Petrochemical Company (Gas Power System). Journal of Chemical Engineering and Energy Materials. 2026;():e247587. doi: 10.22034/jceem.2026.588574.1033