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COMPARISON OF TARIFFS FOR THERMAL ENERGY AT KRYVORIZKA TPP OF PJSC “DTEK DNIPROENERGO” WITH TARIFFS IN DIFFERENT REGIONS OF UKRAINE

Information in accordance with the certificate on the economically justified tariffs effective as of January 13, 2017 and cost of thermal energy for the needs of the population established for the licensees of the National Energy and Utilities Regulatory Commission, as follows by the regions of Ukraine:

http://www.nerc.gov.ua/data/filearch/teplo/taryfy/naselennia/Taryfy_teplo_naselennia.pdf

COMPARATIVE TABLE OF TARIFFS FOR THERMAL ENERGY AT KRYVORIZKA TPP OF PJSC “DTEK DNIPROENERGO” WITH TARIFFS IN DIFFERENT COUNTRIES OF THE WORLD:

              

Unit of measurement

Country
Iceland

Ukraine

(for the population
needs)

Kryvorizka TPP

PJSC “DTEK
Dniproenergo”

Ukraine*

(for the population
needs)

Hungary Bulgaria Poland Korea USA Austria Romania Finland Slovenia Latvia Estonia Norway France Lithuania Czech Republic Slovakia Germany Sweden Switzerland Denmark Japan

Weighted  average tariff for thermal energy

EUR/GJ  3,14     9,3 10,7 10,73 12,2 13,85 13,96 14,54 14,8 15,05 15,35 15,42 16 18,28 18,6 19,1 20,14 20,28 20,63 22,5 27,8 57,53
UAH/Gcal 378,14 557,93 1036 1120 1288,6 1292,2 1469,2 1667,9 1681,2 1751 1782,3 1812,4 1848,6 1857 1926,8 2201,4 2240 2300,2 2425,4 2442,3 2484,4 2709,6 3347,9 6928,2

 

Information from the official website of NEURC: http://www.nerc.gov.ua/data/filearch/teplo/taryfy/taryfy_teplo_krainy.pdf

The statistics data of Euroheat & Power international organisation for 2013 were used for comparison:

http://www.euroheat.org/wp-content/uploads/2016/03/2013-Country-by-country-Statistics-Overview.pdf

The official NBU rate as of February 20, 2017, which constituted UAH 2,878.3 per EUR 100 was used for conversion

https://bank.gov.ua/control/uk/curmetal/detail/currency?period=daily

*weighted average applicable tariffs by the licensees of NEURC

 

TARIFF DYNAMICS FOR THERMAL ENERGY OVER THE LAST FIVE YEARS (2012-2017) AT KRYVORIZKA TPP:

AVERAGE MONTHLY HOUSEHOLD CHARGE FOR THE CONSUMED GOODS/HEAT SUPPLY SERVICE – UPON SUPPLY FOR THE PAST MONTH

Average monthly flat fee for the service consumed period
centralised heating hot water supply Total
892,85 91,14 983,99 January 2017 р.
817,80 90,71 908,51 February 2017 р.
363,13 90,92 454,05 March 2017 р.
0 62,33 62,33 April 2017 р.
- -   May 2017 р.

 

AMOUNT OF PAYMENT ARREARS FOR THE USED GOODS/SERVICES BROKEN DOWN BY MONTH BY CATEGORIES OF CONSUMERS 

Kryvorizka TPP of PJSC “DTEK Dniproenergo” for 2017:

Indicator/Period 

January

February 

March

April

May

June

Accounts receivable by the “population” category of consumers, thousand UAH 8066,41 5013,57 5280,19 1820,99 1304,31 1265
Accounts receivable by the “state-financed” category of consumers, thousand UAH 538,85 649,87 412,51 2,64 2,64 0
Accounts receivable by the “religious organisations” category of consumers, thousand UAH 0 0 0 0 0 0
Accounts receivable by the "other” category of consumers, thousand UAH 219,81 291,77 124,65 70,19 19,14 17

 

INFORMATION ON THE PHYSICAL/CHEMICAL QUALITIES OF THE HEAT PROVIDED

Heat supply source – Kryvorizka TPP, heat conductor – superheated network water.   

Heat facilities (main and auxiliary equipment) and heat networks No. 1 and 2 of Kryvorizka TPP are constructed for operation with the open heat supply system   

Open heat supply system is a heat supply system where the heat conductor circulating in the heat network circuit is also diverted for the hot water supply purpose.   

Consumption of network water for direct intake from the network for hot water supply is compensated by the discharge of the feed water of the established quality  

which is injected into the circulation circuit of the network through the flow control regulator.

The water quality meets the operating and maintenance rules of electric power plants and networks GKD 34.20.507-2003:

for heat networks feeding, item 8.84.28. Value UoM
Free carbon dioxide content 0  
pH value for open heat supply system 8,3-9,0  
Dissolved oxygen content, not more than 50 μg/dm3
Number of suspended substances, not more than 5 mg/dm3
Petroleum products content, not more than 1 mg/dm3
in network circulation circuit, item 8.8.4.29:
Free carbon dioxide content 0  
pH value for open heat supply system 8,3-9,0  
Iron content for open heat supply system 0,3 mg/dm3
Dissolved oxygen content, not more than 20 mg/dm2
Number of suspended substances, not more than 5 mg/dm3
Petroleum products content, not more than 0,3 mg/dm3

 

Kryvorizka TPP supplies thermal energy:   

during heating season with quality control:   

   - consumption of network water, a constant value, according to the estimated total load for heating and hot water supply for the urban facilities,   
   - temperature of network water is regulated centrally according to the temperature chart depending on the ambient temperature;   

during non-heating season with quality control:   

  - consumption of network water is regulated under the actual load of hot-water supply (number of consumers),
  - temperature of network water is constant value under the agreement.

 

Operating hydraulic modes of heat networks No. 1 and No. 2:   

during heating season is developed considering the operation of mixing stations No. 1 and No. 2   

Available pressure downstream of the mixing pumping station:

heat network No. 1 7,8/4,0= 3,8 kgf/cm2 
heat network No. 2 5,0/3,6= 1,4 kgf/cm2
at heat units of terminal facilities Ϫ Р= 0,3 kgf/cm2

 

Distribution of heat conductor consumption for each facility is achieved by installing limiting orifices on a building’s TS.       

during non-heating season (one heat network operates):  

Available pressure at the boundary line of heat networks of KTPP and public utility company ZGM:

heat network No. 1 (No. 2)

4.0/2.8 = 1.2 kgf/cm2,

In return pipeline

water pressure not lower than 2.2 kgf/cm2.

 

ENERGY SAVING MEASURES AND PROGRAMMES FOR HEAT TRANSPORTATION AND SUPPLY (IF ANY)

http://www.nerc.gov.ua/?id=19521

1. Fulfilment of the repair and test schedule on heat networks No. 1, 2 approved by the chief engineer of KTPP.

2. Installation of heat meters for each facility, analysis of heat consumption in a building.

3. Repair and revision of shut-off valves, replacement of gland packing.

4. Replacement of fault pipeline sections of the heat network (blowholes, leaks).

5. Restoration and repair of the main and coating layers of pipeline insulation of the heat networks (main, block level, building level).

6. Flushing of heat networks after repairs before heating season.

7. Revision of limiting orifices installed on the heat inlets to buildings.