抛物线槽集热器(PTC)和太阳能发电塔(SPT)在马来西亚作为太阳能的技术经济分析

Nur Akmal Jailani, A. Ahmad, N. Norazahar
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引用次数: 2

摘要

马来西亚每年平均接受2200小时的太阳辐射,使她拥有丰富的可再生能源发电资源。因此,要有效地管理资源,充分利用丰富的资源,就需要良好的规划。集中太阳能发电(CSP)技术是马来西亚管理可再生资源的一种可能方法。通过技术经济分析,研究人员、工程师、行业或政府机构将能够确定开发CSP技术的有利因素和不利因素。本文介绍了两种CSP技术的技术经济分析:抛物槽集热器(PTC)和太阳能发电塔(SPT),在马来西亚的潜在实施。本文为研究人员和行业在规划和设计阶段之前提供了两种CSP技术的信息。技术经济分析首先根据直接正常照射(DNI)确定潜在地点。使用RETScreen Expert软件确定了Kuah,关丹,美里和纳闽是潜在的地点。纳闽可能是最有前途的PTC和SPT技术项目,因为它每年收到的DNI最高。接下来,技术经济分析使用两个参考项目,西班牙的ANDASOL-1和PS-10系统,作为所有地点的参考。技术经济分析包括年发电量、单位电力成本、净现值(NPV)、效益成本比(B/C)、内部收益率(IRR)和在Microsoft Excel中计算的回收期。最后进行敏感性分析,衡量一个或多个输入变量的不确定性对输出变量的影响。两个敏感因素是年发电量和初始成本,影响PTC或SPT技术的建设、安装和实施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Techno-Economic Analysis of Parabolic Trough Collector (PTC) and Solar Power Tower (SPT) as Solar Energy in Malaysia
Malaysia receives an annual average of 2200 hours of solar radiation, making her abundant renewable resources to generate electricity. Thus, a good planning is required to manage the resources efficiently and to utilize the abundant resources fully. Concentrating solar power (CSP) technology is a possible approach to manage renewable resources in Malaysia. Using a techno-economic analysis, the researchers, engineers, industries, or government agencies will be able to identify contributing and discouraging factors of building the CSP technology. This paper presents a techno-economic analysis of two CSP technology: parabolic trough collector (PTC) and solar power tower (SPT), for potential implementation in Malaysia. This paper provides information on two CSP technologies to researchers and industries prior to the planning and design stages. The techno-economic analysis begins with identifying potential locations based on the direct normal irradiation (DNI). Kuah, Kuantan, Miri and Labuan are identified as the potential locations using the RETScreen Expert software. Labuan could be the most promising PTC and SPT technology project because it has the highest DNI received annually. Next, the techno-economic analysis uses two reference projects, ANDASOL-1 and PS-10 systems in Spain, as references for all locations. The techno-economic analysis consists of annual electricity generation, unit cost of electricity, net Present Value (NPV), benefit-to-cost ratio (B/C), internal rate of return (IRR), and payback period calculated in Microsoft Excel. Finally, a sensitivity analysis is conducted to measure the impact of uncertainties of one or more input variables, leading to uncertainties on the output variables. Two sensitive factors are the annual electricity generation and the initial cost, affecting the construction, installation, and implementation of PTC or SPT technology.
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