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Economic feasibility analysis of a solar energy and solid oxide fuel cell-based cogeneration system in Malaysia

机译:马来西亚基于太阳能和固体氧化物燃料电池的热电联产系统的经济可行性分析

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摘要

The current study presents a concept of a cogeneration system integrated with solar energy and solid oxide fuel cell technology to supply electrical and thermal energy in Malaysia. To appraise the performance, the system is analysed with two case studies considering three modes of operation. For the case-1, typical per day average electricity and hot water demand for a single family have been considered to be 10.3 kWh and 235 l, respectively. For the case 2, electricity and hot water demand are considered for the 100 family members. Energy cost, payback period, future economic feasibility and the environmental impact of the system are analysed for both cases using an analytical approach. The overall system along with individual component efficiency has been evaluated, and the maximum efficiency of the overall system is found to be 48.64 % at the fuel cell operation mode. In the present study, the proposed system shows 42.4 % cost effectiveness at higher load. Energy costs for case-1 and case-2 have been found to be approximately $0.158 and $0.091 kWh(-1), respectively, at present. Energy costs are expected to be $0.112 and $0.045 kWh(-1) for the case-1 and case-2, respectively, considering future (i.e. for the year 2020) component cost.
机译:当前的研究提出了一种将太阳能和固体氧化物燃料电池技术相集成的热电联产系统的概念,以在马来西亚提供电能和热能。为了评估性能,对系统进行了两个案例分析,其中考虑了三种操作模式。对于案例1,单个家庭每天的典型平均电需求和热水需求分别被认为是10.3 kWh和235 l。对于案例2,考虑了100个家庭成员的电力和热水需求。使用分析方法针对这两种情况分析了能源成本,投资回收期,未来经济可行性和系统的环境影响。已评估了整个系统以及单个组件的效率,并且在燃料电池运行模式下,整个系统的最大效率为48.64%。在本研究中,提出的系统在较高负载下显示出42.4%的成本效益。目前,案例1和案例2的能源成本分别约为0.158美元和0.091 kWh(-1)。考虑到未来(即2020年)组件成本,案例1和案例2的能源成本预计分别为$ 0.112和$ 0.045 kWh(-1)。

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