Streamlining the Power Generation Profile of Concentrating Solar Power Plants

Author:

Abutayeh Mohammad1,Jeong Kwangkook1,Alazzam Anas2,El-Khasawneh Bashar2

Affiliation:

1. Mechanical Engineering Department, Arkansas State University, Jonesboro, AR 72401

2. Mechanical Engineering Department, Khalifa University, Abu Dhabi, United Arab Emirates

Abstract

A scheme to streamline the electric power generation profile of concentrating solar power (CSP) plants of the parabolic trough collector (PTC) type is suggested. The scheme seeks to even out heat transfer rates from the solar field (SF) to the power block (PB) by splitting the typical heat transfer fluid (HTF) loop into two loops using an extra vessel and an extra pump. In the first loop, cold HTF is pumped by the cold pump from the cold vessel to the SF to collect heat before accumulating in the newly introduced hot vessel. In the second loop, hot HTF is pumped by the hot pump from the hot vessel to a heat exchanger train (HXT) to supply the PB with its heat load before accumulating in the cold vessel. The new scheme moderately decouples heat supply from heat sink allowing for more control of heat delivery rates thereby evening out power generation.

Publisher

ASME International

Subject

Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment

Reference14 articles.

1. Solar Thermal Power Plant Simulation;Environ. Prog. Sustainable Energy J.,2012

2. Balancing Heat Transfer Fluid Flow in Solar Fields;Sol. Energy J.,2014

3. Adapting Steady-State Solar Power Models to Include Transients;ASME J. Sol. Energy Eng.,2017

4. Optimizing Thermal Energy Storage Operation;Sol. Energy J.,2015

5. Influence of Solar Field Recirculation on Medium-Size CSP Performance;Sol. Energy,2018

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