A Comprehensive Review on Available/Existing Renewable Energy Systems in Malaysia and Comparison of Their Capability of Electricity Generation in Malaysia

H. N. Afrouzi, Yuhani Pamodha Wimalaratna, J. Ahmed, K. Mehranzamir, S. Liew, C. Wooi, Bazlul Mobin Siddiquea
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引用次数: 3

Abstract

Malaysia is one of the fastest emerging and developing countries in the world. To drive the economical workhorse, large amounts of power is required. The power demand has risen to 156,003 GWh per year in the year 2016, almost 30,000 GWh more than 5 years prior. Fossil fuels such as natural gas, coal, oil, and diesel have been the driving force powering Malaysia’s grids. However, these resources will not last forever, and they do harm to our environment. To counter this, renewable energy (RE) projects have been constructed all around Malaysia. This paper discusses on available and existing renewable energy systems (single/hybrid) in Malaysia and provides a comparison of their electricity generation capabilities. The renewable energy sources that are covered in this paper include Solar, Hydropower, Biomass, Tidal and Geothermal. At the moment, hydropower is the largest renewable energy producer, contributing to almost 15% of the country’s total energy generation. A lot of resources have been channeled towards the initiative of hydropower and it has definitely borne much fruit. This is followed by Solar Energy. Even though it is not as successful as hydropower, there is still a lot of avenues for it to grow in a tropical country like this. Malaysia is still relatively new in terms of power generation using biomass sources. There has been a gradual increase in the power generation using biofuels through the years and its future does look bright. Energy generation from wind, tidal, and geothermal sources has been rather challenging. Because of Malaysia’s geographical location, it experiences slow winds on average throughout the year. This has led to insufficient output for its financial input. Besides that, Malaysia also has relatively low tide, if compared to other Asian countries such as Indonesia and the Philippines. This contributed to the failure of tidal energy in Malaysia, but there have been signs of locations that can be suitable for this energy generation. Besides that, the country’s first geothermal power plant project failed due to a lack of preparation and discipline during the project’s execution. There is a high initial cost for geothermal projects, and the chances of failure are high if the necessary precautions are not followed. This could be one of the reasons why this branch of renewable energy has not been explored deeply.
马来西亚可用/现有可再生能源系统的综合评估及其在马来西亚发电能力的比较
马来西亚是世界上发展最快的新兴和发展中国家之一。要驱动这辆经济型大马,需要大量的动力。2016年电力需求增长至156003吉瓦时/年,比5年前增长近3万吉瓦时。天然气、煤炭、石油和柴油等化石燃料一直是马来西亚电网的驱动力。然而,这些资源不会永远持续下去,而且它们对我们的环境有害。为了解决这个问题,马来西亚各地都在建设可再生能源(RE)项目。本文讨论了马来西亚可用和现有的可再生能源系统(单一/混合),并对其发电能力进行了比较。本文所涉及的可再生能源包括太阳能、水电、生物质能、潮汐能和地热。目前,水力发电是最大的可再生能源,占全国总发电量的近15%。大量的资源被投入到水电项目中,它确实取得了很多成果。其次是太阳能。尽管它不像水力发电那样成功,但在这样一个热带国家,它仍然有很多发展的途径。马来西亚在利用生物质能发电方面仍然相对较新。多年来,使用生物燃料的发电逐渐增加,其前景确实很光明。风能、潮汐能和地热能的发电相当具有挑战性。由于马来西亚的地理位置,它全年平均经历缓慢的风。这导致其财政投入产出不足。此外,与印尼、菲律宾等其他亚洲国家相比,马来西亚的潮位也相对较低。这导致了马来西亚潮汐能的失败,但已经有迹象表明,一些地方可以适合这种能源的产生。此外,由于在项目执行过程中缺乏准备和纪律,该国第一个地热发电厂项目失败了。地热项目的初始成本很高,如果不采取必要的预防措施,失败的可能性也很高。这可能是这一可再生能源分支没有得到深入探索的原因之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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