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The Impact of Dispatchability of Parabolic Trough CSP Plants over PV Power Plants in Palestinian Territories

机译:抛物面槽CSP厂在巴勒斯坦地区光伏发电厂的影响

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This paper investigates the impacts of dispatchability of Parabolic Trough Concentrated Solar Power (PT-CSP) systems over PV power plants in Palestinian territories. Jericho governorate was taken as a case study. All conditions required for implementing PV and PT-CSP systems are verified. The capacity of each investigated system is 1 MW, and both systems are investigated in terms of technical, economic, and environmental aspects. The parametric analysis is used to identify the most feasible option of each renewable energy system by varying the cost of each option candidate and introducing thermal energy storage (TES) to the technology of PT-CSP systems with different capacities. A software based on the MATLAB environment is programmed to estimate the energy produced from each system with the important technical, financial, and environmental indicators. It is found that the alternative of installing a 1 MW PV system is the installation of 1 MWe PT-CSP systems with 14.5 h or 18.5 h TES. Introducing TES improves the dispatchability of the system and the capacity factor which consequently justifies the PT-CSP system investment. Increasing the degree of dispatchability improves the capacity factor of the PT-CSP system from 21% at 0 h TES to 57% at 18.5 h TES (24 h operation). The capacity factor of the PV system is 18.7% which is mostly similar to PT-CSP with zero dispatchability (0 h TES). The study considers the environmental benefits by estimating the amount of avoided CO_2 emissions, and it was found that increasing the capacity factor augments the environmental benefits.
机译:本文调查了抛物面槽集中浓缩太阳能(PT-CSP)系统在巴勒斯坦地区光伏发电厂的影响。 Jericho省被认为是一个案例研究。验证了实现PV和PT-CSP系统所需的所有条件。每个调查系统的容量为1 MW,两种系统都在技术,经济和环境方面进行了调查。参数分析用于通过改变每个选项候选者的成本并将热能存储(TES)引入具有不同容量的PT-CSP系统技术的成本来确定每个可再生能源系统的最可行性选项。基于MATLAB环境的软件被编程为估计每个系统产生的能量,具有重要的技术,金融和环境指标。发现安装1 MW PV系统的替代方案是安装1 MWE PT-CSP系统,具有14.5小时或18.5小时。介绍TES提高了系统的调度性和能力因素,从而证明了PT-CSP系统投资。增加的调度性程度提高了Pt-CSP系统的容量系数在0小时的21%到18.5小时的57%(24小时操作)。 PV系统的容量系数是18.7%,其主要与具有零点的PT-CSP相似(0 H TES)。该研究通过估计避免的CO_2排放量来考虑环境效益,并发现增加容量因数增强了环境效益。

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