Founding offer · lifetime membership for a single £24, exclusive to our first members · closes 20 June Claim your place →
Global Research Partnerships £24 Lifetime Log inCreate free account

Funded Projects › H2020

PreFlexMS · Predictable Flexible Molten Salts Solar Power Plant

H2020Status: TERMINATED1 June 201531 May 2018EU funding €14,362,194Call H2020-LCE-2014-2015

Predictability and flexibility are key enablers to increase CSP penetration in the energy mix by a) increasing dispatchability b) making CSP less/not reliant on subsidies c) supporting stable grid operation d) enabling operators to access new revenue streams (electricity trading, ancillary services). Today CSP plants with molten salt storage only partly achieve these objectives. Key enabling technologies to be demonstrated and introduced in the market are 1) design and operation of molten salt once-through steam generator – This will allow fully flexible plant operation; 2) design and implementation of integrated weather forecasting and dispatch optimization – This will allow optimal management of the energy storage to maximize revenues while respecting constraints/commitments (e.g. to the grid). Towards 1), an innovative design approach is proposed, integrating process and equipment design with dynamic simulation of the system. Proven technologies in separate fields (molten salt ; once-through steam generator ; optimum control) will be for the first time integrated and demonstrated. Towards 2), different approaches to DNI forecasting (direct; mesoscale models) will be integrated to extend geographical coverage and improve reliability. Dispatch optimization under conditions of uncertainty (weather forecast) and perturbations (e.g. grid support requests) will be developed. Furthermore, automatic plant performance characterization by machine learning will be implemented to ensure a real optimum is achieved. For succesfull market introduction, a down-scale pilot will be realized. Here, integrated operation of once-through steam generator, weather forecast and dispatch optimization will be demonstrated. CSP will undergo large growth in developing markets, where grid constraints and market liberalization will play a role. Developint these key-enabling technologies will put european industries in the position to compete at the forefront in the market worldwide.

Consortium · 15 organisations

coordinator

ALSTOM POWER SYSTEMS

FR · €1,220,699

participant

SOLARGIS SRO

SK · €152,163

participant

AKADEMIA GORNICZO-HUTNICZA IM. STANISLAWA STASZICA W KRAKOWIE

PL · €303,251

participant

GENERAL ELECTRIC (SWITZERLAND) GMBH

CH

participant

UNIVERSIDADE DE EVORA

PT · €1,095,625

participant

ESE ENGINEERING SERVICES FOR ENERGY SRL

IT · €350,875

participant

DEUTSCHES ZENTRUM FUR LUFT - UND RAUMFAHRT EV

DE · €5,576,888

participant

AGENCIA ESTATAL DE METEOROLOGIA

ES · €455,625

participant

AMC TECH SPOLKA Z OGRANICZONA ODPOWIEDZIALNOSCIA

PL · €363,282

participant

POLITECNICO DI MILANO

IT · €241,000

participant

FUNDACION CENER

ES · €568,625

participant

UNIVERSITY OF STUTTGART

DE · €328,725

participant

EC SYSTEMS SP ZOO

PL · €4,843

participant

S.T.F. SALVATORE TRIFONE E FIGLI SPA

IT · €3,700,594

participant

ALSTOM RENEWABLE (SCHWEIZ) AG

CH

Research fields

View the official record on CORDIS →

← Find collaborators and more funded projects

Source: CORDIS, Publications Office of the European Union. Global Research Partnerships surfaces open EU research data to help you find collaborators; we are not affiliated with the European Union.