Concentrating solar thermal power

Author:

Müller-Steinhagen Hans1

Affiliation:

1. Technische Universität Dresden, Mommsenstrasse 11, 01062 Dresden, Germany

Abstract

In addition to wind and photovoltaic power, concentrating solar thermal power (CSP) will make a major contribution to electricity provision from renewable energies. Drawing on almost 30 years of operational experience in the multi-megawatt range, CSP is now a proven technology with a reliable cost and performance record. In conjunction with thermal energy storage, electricity can be provided according to demand. To date, solar thermal power plants with a total capacity of 1.3 GW are in operation worldwide, with an additional 2.3 GW under construction and 31.7 GW in advanced planning stage. Depending on the concentration factors, temperatures up to 1000 ° C can be reached to produce saturated or superheated steam for steam turbine cycles or compressed hot gas for gas turbine cycles. The heat rejected from these thermodynamic cycles can be used for sea water desalination, process heat and centralized provision of chilled water. While electricity generation from CSP plants is still more expensive than from wind turbines or photovoltaic panels, its independence from fluctuations and daily variation of wind speed and solar radiation provides it with a higher value. To become competitive with mid-load electricity from conventional power plants within the next 10–15 years, mass production of components, increased plant size and planning/operating experience will be accompanied by technological innovations. On 30 October 2009, a number of major industrial companies joined forces to establish the so-called DESERTEC Industry Initiative, which aims at providing by 2050 15 per cent of European electricity from renewable energy sources in North Africa, while at the same time securing energy, water, income and employment for this region. Solar thermal power plants are in the heart of this concept.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference26 articles.

1. Global potential of concentrating solar power;Trieb F;Proc. 15th SolarPACES Conf., Berlin, Germany, 15–18 September 2009,2009

2. Concentrating solar power plants;Müller-Steinhagen H;INGENIA, issues 18 and 20, Royal Academy of Engineering,2004

3. International Energy Agency (IEA). 2010 Technology roadmap: concentrating solar power. See http://www.iea.org/papers/2010/csp_roadmap.pdf.

4. Water consumption and solar power: costs and benefits of dry and hybrid cooling (plenary lecture);Turchi C.;Proc. 16th SolarPACES Conf., Perpignan, France, 21–24 September 2010.,2010

5. The Contribution of Renewable Energies to a Sustainable Energy Economy

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