2015.11.30 sep by viktors troicins

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Ecological Feasibility Reports for Construction Projects and Reconstruction of Facilities From advanced productions to development concepts of modern cities Victor Troitsin CleanTech, Riga 30.11.2015

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Page 1: 2015.11.30 SEP by Viktors Troicins

Ecological Feasibility Reports for Construction Projects and Reconstruction of Facilities

From advanced productions to development concepts of modern cities

Victor TroitsinCleanTech, Riga30.11.2015

Page 2: 2015.11.30 SEP by Viktors Troicins

Brief Description of Company• Founded in 1952 in Riga as the branch of the All-Soviet Union

Scientific-Research and Design-Surveying Institute “Teploelektroprojekt”

• Since 1996 – the private Joint-Stock Company “Siltumelektroprojekts”

• Initially specializes on projects connected with thermal and electric energy generation

• Preserving its historical profile, the Company constantly expands its spectrum of services related to industrial facilities

• The Company’s staff consists of more than 100 engineers and technicians; involves various engineering bureaus as subcontractors

• The subsidiary structure has been organized and is acting in Saint Petersburg, Russia.

Page 3: 2015.11.30 SEP by Viktors Troicins

SEP Services• Consultations on engineering issues

– Feasibility Study (FS) – development of Business Plans

– Engineering developments of processes– Preparation of technical terms of reference and

tender documents– Preparation and expert examination of preliminary

and sketch designs– Selection of construction sites– Optimization of processes at facilities under operation

• Designing– Project documentation– Computer modeling of projects or transfer of projects to 3D environment– Various technological calculations– Approval of project documentation

Page 4: 2015.11.30 SEP by Viktors Troicins

SEP Services• EPC: Engineering, procurement and construction

• Supervision and expert services– FS expert examination– Expert examination of projects– Evaluation of tender proposals– Project management – Design supervision– Construction supervision– Client’s engineering support

Page 5: 2015.11.30 SEP by Viktors Troicins

Experience in creating waste-free production of energy and fertilizers

Page 6: 2015.11.30 SEP by Viktors Troicins

Main information about the project

PlaceFacility

Poultry complex Balticovo

Start of design: Start of construction: Commissioning: Design means:

Iecava, Latvia

Modern advanced biogas cogeneration plant at the biggest in Eastern and Northern Europe poultry complex BalticovoProduction of eggs: 2 millions/day3 millions of chickens simultaneously in production09.201309.201411-12.2015

Autodesk Revit, Navisworks, Inventor.

Page 7: 2015.11.30 SEP by Viktors Troicins

Parameters of the FacilityProduction output (annual):

Feed inlet:• Chicken manure consumption – 60 000 tons

Finished products:• Electricity production – 2,0 MW• Heat production – 2,1 MW (process needs, heating)• Organic biological fertilizers – 10-20 thous. m³  (application field:

agriculture; consistence: pellets)• Ammonium sulphate (application field: fertilizer for using in agriculture)

The plant will reduce the portion of energy expenses in the prime cost of the finished products, provide the complex with power resources without using external sources.

Page 8: 2015.11.30 SEP by Viktors Troicins

Technological Process

Page 9: 2015.11.30 SEP by Viktors Troicins

Information Model of the building

Design Engineering Process

Technical Termsof Reference

Sketch Design

Design

Logistics 4D simulation of Construction

Working Documentation

Analysis

Page 10: 2015.11.30 SEP by Viktors Troicins

Construction Process

Page 11: 2015.11.30 SEP by Viktors Troicins

Experience in creating the development concept for the city district heating system

Project ”LARGE SARATOV”

Page 12: 2015.11.30 SEP by Viktors Troicins

Main information about the project

Place

Facility

Start of project: Finish of project: Commissioning: Design means:

Saratov, the Russian Federation

Heat and electricity generation system as well as Saratov City district heating networks managed by the company “Т+” (the former Volzhskaya TGK)04.201510.2015После 2017

Termoflow, Zulu

Page 13: 2015.11.30 SEP by Viktors Troicins

CITY

STR

ATEG

Y

CITY

MAR

KETI

NG

AN

D P

ASSP

ORT

IZAT

ION

OF

CLIE

NTS

DEMAND FORECAST

CITY GENERATION DH NETWORKS

I Benchmarking of similar citiesII Determination of growing points: according to demands/ infrastructure development possibilitiesIII Comparative analysis of competitive solutions regarding the interchangeable types of infrastructureIV Development scenarios “Basic” and “Accelerated Development”:• Recommended

technologies, experience and system solutions

• Power supply schemes, the best engineering solutions

• Tariffs/prices, expenses, cost effectiveness in chain order of cost creating

• Management system • Forecast balances in

terms of energy resources – physical and cost

I The best analogs in main production processesII Audit of the existing status of the power plants

I The best analogs in main production processesII Audit of the existing status of the DH facilities

Complex modernization program of Saratov DH networks (compliance with the world class, evaluation of required investments)

Typical solutions for each system element

New organizational and functional structure of the DH networks

Scheduled plan and sketch resource plan of transition to the new structure

T+ Generation Development Program in Saratov

New organizational and functional structure of the power plant

Scheduled plan and sketch resource plan of transition to the new structure

Distribution of authorities and two-root management system “managing company – power plant”

III Review of plants’ structures – global experienceIV Special-purpose functional structure of Saratov plants

III Review of DH networks’ structures – global experienceIV Special-purpose functional structure “Т+ Saratov DH Networks”

Page 14: 2015.11.30 SEP by Viktors Troicins

Ideal heating unitbased on benchmarking of European cities

Closed heat supply (DH)

system

Individual heating units at

consumersLiquidation of central

heating units

Two-pipe system

DH network reconstruction,Replacement of expansion joints and thermal insulation,Reduction of losses:- Main networks: up to 5 %- Distribution networks: up to 7%

Remote accounting, monitoring and

regulation at consumers

Remote control of leakages in DH

networks

Energy efficiency of houses: up to 150

kW/m2/year

Cogeneration at sources

Electricity generation according to the

temperature chart

Use of alternative energy sources

Page 15: 2015.11.30 SEP by Viktors Troicins

Expected results of the project:

Energy and utility infrastructure development project in Saratov (“What shall be done in Saratov?”)

Infrastructure development design methodology (“How to do it in other cities?»)

Page 16: 2015.11.30 SEP by Viktors Troicins

Thank you for your attention!

Waiting for your questions on [email protected]