Monitoring of unit efficiency:
Description |
Implementation |
Date |
A heat generating unit with capacity of 125MEe and 180 MWt, a dual fuel boiler (coal, coal sludge). Monitoring of the boiler, turbine and heat generating system efficiency was applie. |
EC KATOWICEul. Siemianowicka 6040-301 Katowice |
30/06/2000 |
A 50 MWe and 104 MWt heat generating unit. A pulverised coal boiler. Monitoring of the boiler, turbine and heat generating system efficiency was applied. |
EC Białystok IIUnit No 2ul. W. Andersa 315-124 Białystok |
30/03/2002 |
Unit no. 4 comprising a condensing turbine-generator set and auxiliaries. Monitoring of the turbine and generator efficiency was applied. Monitoring of fan coolers and turbine condenser operating conditions was applied. |
EC Białystok IIUnit No 4ul. W. Andersa 315-124 Białystok |
16/01/2004 |
A Babcock Borsig Power CFB boiler fired with coal, bark, sawdust and other kinds of biomass. A boiler efficiency module with an extended laboratory module estimating the elemental composition of the fuel composite burned was applied. |
CFB Saturn IPP Frantschach –Świecieul. Bydgoska 186-100 Świecie |
16/03/2004 |
An OP140 type boiler with the capacity of 140t/h operating in variable conditions intended for supplying steam to paper-making machines. |
Boiler no. 5 (OP140)Saturn Power Plantul. Bydgoska 186-100 Świecie |
30/03/2004 |
A heat generating unit with a Foster Wheeler boiler for hard coal. |
EC ELCHOUnit No 1Chorzów |
30/09/2005 |
A heat generating unit with a Foster Wheeler boiler for hard coal. |
EC ELCHOUnit No 2Chorzów |
30/05/2006 |
A turbine-generator set fed by extraction steam in the Saturn CHP Plant. |
Saturn Power Plantul. Bydgoska 186-100 Świecie |
30/06/2006 |
A heat generating unit consisting of an OP230 boiler and a 32MW turbine intednded for steam generation for the production process in the Chemical Plant. |
ZCH PoliceCHP plant IIUnit No 1 |
20/08/2007 |
A heat generating unit consisting of an OP230 boiler and a 32MW turbine intended for steam generation for the production process in the Chemical Plant. |
ZCH PoliceCHP plant IIUnit No 2 |
30/06/2007 |
A Babcock Borsig Power CFB boiler fired with coal, bark, sawdust and other kinds of biomass, with an additional biogas option. A boiler efficiency module upgrade, with an extended laboratory module estimating the elemental composition of the fuel composite burned with the additional fuel (biogas), was applied. |
CFB Saturn IPPFrantschach Świecieul. Bydgoska 186-100 Świecie |
16/10/2009 |
An OP140 type boiler with a capacity of 140t/h operating in variable conditions, and intended for supplying steam to paper-making machines. The efficiency module was provided with an option including biogas combustion. |
Boiler no. 5 (OP140)Saturn Power Plantul. Bydgoska 186-100 Świecie |
30/10/2009 |
A 55 MWe heat generating duo-unit. Boiler no. 5 for biomass. Boiler no. 6 for pulverised coal. Monitoring of the boiler, turbine and heat generating system efficiency was applied. |
EC Białystok IIUnit No 1ul. W. Andersa 315-124 Białystok |
30/07/2008 |
A 50 MWe heat generating unit. Boiler no. 8 for pulverised coal. Monitoring of the boiler, turbine and heat generating system efficiency was applied. |
EC Białystok IIUnit No 3ul. W. Andersa 315-124 Białystok |
30/04/2008 |
A 55 MWe heat generating duo-unit. Boiler no. 5 for biomass. Boiler no. 6 for pulverised coal in the process system with two turbines. Hybrid power generation - green power. Monitoring of the boiler, turbine and heat generating system efficiency was upgraded. |
EC Białystok IIUnit No 1ul. W. Andersa 315-124 Białystok |
30/05/2009 |
A program heat meter from boiler no 6. |
EC Białystok IIUnit No 1ul. W. Andersa 315-124 Białystok |
30/11/2010 |
A program heat meter from boiler no 7. |
EC Białystok IIUnit No 2ul. W. Andersa 315-124 Białystok |
30/11/2010 |
A program heat meter from boiler no 8. |
EC Białystok IIUnit No 3ul. W. Andersa 315-124 Białystok |
30/11/2010 |
Developing and implementing - in practice - of an IT infrastructure for monitoring of production and technological and economic indicators for ten power plants of the NUON company (The Netherlands). |
NUON NetherlandsKeulsekade 1813534 Utrecht NL |
30/05/2007 |
Application of an IT system for monitoring of operations of the Lage Waide power plant (collaboration with NUON as part of the INSYP project). |
NUON NetherlandsKeulsekade 1813534 Utrecht NL |
30/05/2007 |
Program for supporting production settlements:
Description |
Implementation |
Date |
A CHP plant with three heat generating units, a condensing facility, a water boiler and two peak heat exchangers. The program supports settlement of the power and heat produced in compliance with the Energy Regulatory Office requirements. |
EC Białystok IIul. W. Andersa 315-124 Białystok |
30/05/2010 |
Identification of characteristics of generating facilities:
Description |
Implementation |
Date |
A CHP plant with three heat generating units and a condensing facility. A program for determining production characteristics of boilers and turbines, their efficiency, and other technical indicators (63 predefined characteristics) was applied. |
EC Białystok IIul. W. Andersa 315-124 Białystok |
30/05/2010 |
Combustion optimisation:
Description |
Implementation |
Date |
An OP140 boiler for coal with beater wheel mills feeding 12 PC burners arranged tangentially. A program for determining set values of air controllers, secondary air dumpers, mill classifiers, and coal feeders, was applied. |
Boiler no. 5 (OP140)Saturn Power Plantul. Bydgoska 186-100 Świecie |
12/07/2005 |
Start-up monitoring:
Description |
Implementation |
Date |
A CFB Foster Wheeler boiler for coal and coal slurry. Components that limit the start-up speed: drum (bottom and top generating line), superheater headers. "Intrex" type heat exchanger pipes placed in the fluidised bed. The program monitors mechanical and thermal stresses, sets limit values of thermal stress margins, and determines the limits of start-up speed. |
EC KATOWICEul. Siemianowicka 6040-301 Katowice |
30/06/2000 |
Monitoring of start-up of an OP230 type boiler and a 13UP55 turbine. Monitored components: drum, quick-closing valve, turbine internal body, external body, flange. Functions: To determine limitations of the start-up change speed and load changes caused by thermal stresses in the monitored components of the boiler and turbine in the online mode. In addition, context-sensitive tracking of start-up procedure execution was applied. |
EC Białystok IIUnit No 2 ul. W. Andersa 315-124 Białystok |
30/03/2002 |
V63 type turbine start-up monitoring. Monitored components: quick-closing valve, turbine body, and flange. |
EC Białystok IIUnit No 4 ul. W. Andersa 315-124 Białystok |
16/01/2004 |
Monitoring of start-up of a OP230 type boiler and a 13UP55 turbine. Monitored components: drum, quick-closing valve, turbine internal body, external body, flange. Functions: To determine limitations of the start-up change speed and load changes caused by thermal stresses in the monitored components of the boiler and turbine in the online mode. In addition, context-sensitive tracking of start-up procedure execution was applied. |
Saturn Power PlantBoiler no. 5 (OP230)ul. Bydgoska 186-100 Świecie |
30/03/2004 |
Monitoring of start-up of an OP230 type boiler and a 13UP55 turbine. Monitored components: drum, quick-closing valve, turbine internal body, external body, flange. Functions: To determine limitations of the start-up change speed and load changes caused by thermal stresses in the monitored components of the boiler and turbine in the online mode. In addition, context-sensitive tracking of start-up procedure execution was applied. |
EC Białystok IIUnit No 3ul. W. Andersa 315-124 Białystok |
30/07/2009 |
Monitoring of start-up of an OP230 type boiler and a 13UP55 turbine. Monitored components: drum, quick-closing valve, turbine internal body, external body, flange. Functions: To determine limitations of the start-up change speed and load changes caused by thermal stresses in the monitored components of the boiler and turbine in the online mode. In addition, context-sensitive tracking of start-up procedure execution was applied. |
EC Białystok IIUnit No 1ul. W. Andersa 315-124 Białystok |
30/09/2009 |
Stress and material degradation monitoring:
Description |
Implementation |
Date |
A supercritical unit with a capacity of 500MW fired with hard coal. The "Thermal Stress Monitoring System" (TSMS) program was applied for stress monitoring during a start-up and a shut-down in critical thick-walled boiler components and in superheater pipes with a high heat load. In each monitored component, a degradation level resulting from the high temperature creep and low-cycle fatigue of material is determined. |
BORYONG Power PlantUnit No 6(Korea) |
28/03/2006 |
A supercritical unit with a capacity of 500MW fired with hard coal. The "Thermal Stress Monitoring System" (TSMS) program was applied for stress monitoring during a start-up and a shut-down in critical thick-walled boiler components and in superheater pipes with a high heat load. In each monitored component, a degradation level resulting from the high temperature creep and low-cycle fatigue of material is determined. |
BORYONG Power PlantUnit No 3(Korea) |
31/05/2006 |
A supercritical unit with a capacity of 500MW fired with hard coal. The "Thermal Stress Monitoring System" (TSMS) program was applied for stress monitoring during a start-up and a shut-down in critical thick-walled boiler components and in superheater pipes with a high heat load. In each monitored component, a degradation level resulting from the high temperature creep and low-cycle fatigue of material is determined. |
BORYONG Power PlantUnit No 5(Korea) |
31/05/2006 |
A supercritical unit with a capacity of 500MW fired with hard coal. The "Thermal Stress Monitoring System" (TSMS) program was applied for stress monitoring during a start-up and a shut-down in critical thick-walled boiler components and in superheater pipes with a high heat load. In each monitored component, a degradation level resulting from the high temperature creep and low-cycle fatigue of material is determined. |
BORYONG Power PlantUnit No 4(Korea) |
2007-06-31 |
Optimization of CHP plant operation:
Description |
Implementation |
Date |
A CHP plant with three heat generating units, a condensing unit, a water boiler, and two peak heat exchangers. A program for supporting operation management in the "offline" mode - COGENOPT was applied. The program determines the economic distribution of load to units and other facilities according to the criterion of profit achieved from production. Based on this program, the personnel can determine loads of individual facilities which ensure the most profitable operation. |
EC Białystok IIul. W. Andersa 315-124 Białystok |
30/11/2010 |
A CHP plant with three heat generating units, a condensing unit, and a heat accumulator. A program for supporting operation management in the "online" mode - COGENOPT_A was applied. The program determines the economic distribution of load to units and other facilities according to the criterion of profit achieved from production. The program determines the method for utilising the accumulator acc. to the profit criterion. The accumulator is charged when the power price is at its highest level. The program determines the hours when the heat should be accumulated, and the time when it may be discharged. Based on this program the personnel can determine the loads of individual facilities and the accumulator which ensures the most profitable operation of the CHP plant. |
EC Białystok IIul. W. Andersa 315-124 Białystok |
10/01/2012 |
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