Parabolic Trough Solar Field - Potential Cost Reduction · 2016-07-18 · Parabolic Trough Solar...
Transcript of Parabolic Trough Solar Field - Potential Cost Reduction · 2016-07-18 · Parabolic Trough Solar...
Excellence in Solar Engineering
Parabolic Trough Solar Field - Potential Cost Reduction Miroslav Dolejsi, Georg Brakmann SolEngCo GmbH
China International CSP Station Conference &
CSPPLAZA 2016 Annual Meeting Beijing, 17 June 2016
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Content
1. SolEngCo introduction
2. Andasol-1 - Technical Concept
3. Solar Field Share on Total Project Costs
4. Main influences on Solar Field Size (Cost)
5. Main potential for FS cost reductions
Technology improvements
Economy of scale
Comparison of the EuroTrough and Ultimate Trough
Cheaper components
Mass production
Design of the SF
Project management
6. Conclusions
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SolEngCo introduction
Providing independent engineering consulting services in area
of:
PV,
CSP
ISCC and other hybridization technologies,
Solar-Desalination and
WtE.
Owner's Engineer, Lender's Engineer and Independent
Engineer.
Technology Assessment, Site Assessment, Bankable Feasibility
Studies, Front-End Engineering Design (FEED), contractual
and technical specifications, tendering and evaluation of EPC
contracts, contract negotiations until EPC-contracts ready to be
signed, Construction and commissioning supervision, O&M
supervision, Trainings, Technical support for licensing,
permitting and financing.
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Andasol-1 - Technical Concept
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Solar Field Share on Total Project Costs
Example: CSP Plant: 50 MWe, TES - 7.5 full load hours; Spain
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Main influences on Size Solar Field Size (Cost)
Available DNI at the site over the
year (project time).
Solar Multiple
Topographical conditions.
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Main potential for FS cost reductions
Technology improvements.
Economy of scale.
Cheaper components.
Mass production.
Design of the SF.
Project management.
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Technology improvements
Improving collector field
performance.
Higher operational temperature
heat transfer fluid.
Alternative mirror design.
SCE steal or non-metalic
structure.
Single Molten Salt Storage
System.
Direct Thermal Energy Storage
System.
Heat from the
Solar Field
Heat from
TES to PB
Hot Tank
Cold Tank
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Economy of scale
Sener scale-up of Collectors from
SN 1 to SN 2.
SBP scale-up of
Collectors from ET 150
to Ultimate Trough.
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Comparison of the EuroTrough and Ultimate
Trough
(Source: FLABEG FE 2014; SBP 2013)
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Cheaper components
Solar collector mirrors.
Solar collector receiver tubes.
Solar collector frame, support structures.
HTF.
Foundations, wind breakers and other
civil work.
Instrumentations, drives and controls.
Electrical.
HTF System.
Temporary Facilities.
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Mass production
Reflectors (mirrors).
Solar Heat Elements (receivers).
Receiver Supports.
SCA structure.
HTF Piping and swivel joints.
HTF.
Drives and controls.
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Design of the SF
DNI, Wind Loads.
Site Conditions
Defining Solar Multiple.
Shading, blocking.
Overall field efficiency.
Parasitic consumption
Axis Orientation of
Collectors.
Spare loops.
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Project management
Time
Scope Cost
QUALITY
PERFORMANCE
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The most profitable CSP Project
Is based on a proficiently performed site selection.
Is based on a basic design carefully concerning the
local manufacturing.
Is based on an analyse of conditions of PPA (FiT).
Optimum layout of the solar field
must be carefully evaluated based on the geographic
latitude, the available land of the individual site, its
irradiation profile and the relative cost of the
components.
Conclusions
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Miroslav Dolejsi
SolEngCo GmbH
Im Sämann 123
D-71334 Waiblingen, Germany
Further questions?
www.solengco.com [email protected] Tel +420 777 028 059