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Assessment of energy requirement for water production at dual-purpose plants in China

机译:中国两用水厂生产用水的能源需求评估

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With the fast development of the economy and huge amount of population,fresh water shortages have become very serious in China,especially in northern coastal cities where China's population and economy are concentrated.The coal-fired power plant integrated with low-temperature multi-effect distillation (LT-MED) is a viable way to solve or eliminate the problems in China as the coal-fired power plant dominates in power industry and LT-MED has technical advantages in using low temperature heat resources over other desalination technologies.An accurate assessment on energy requirement of water production is of great importance in dual-purpose plants since the cost of energy requirement accounts for the foremost part of the water production cost.This paper presents an economic analysis of the energy cost of water production for dual-purpose plants by the equivalent enthalpy drop theory (EEDT) and the off-design analytical theory on steam turbines.EEDT that is proven to be an effective method for partial quantitative analysis can be used to accurately calculate both the energy requirement of water production and the economic influence of extraction steam on steam turbines.By solving the matrix models of EEDT,electricity- equivalent consumption rate (EECR) for water production and reduced steam turbine efficiency ratio were analyzed at off-design conditions for LT-MED combined with thermal vapor compression process (TVC) process.The results indicate that EECR is more accurate to be used to evaluate the economics of the desalination process than GOR that is widely used.They also show that EECR that is the function of the equivalent enthalpy drop,the share of the extraction for heating the desalination process,and GOR reflects the real work ability of extraction.Besides,it is seen that the specific fuel cost for water production is low compared with that of reverse osmosis.It is concluded that the coal-fired power plant integrated with LT-MED is an economical and suitable way to resolve the water shortages in northern coastal zone of China.
机译:随着经济的快速发展和人口的大量增加,中国的新鲜水短缺问题变得十分严重,特别是在中国人口和经济集中的北方沿海城市。燃煤电厂与低温多效结合精馏(LT-MED)是解决或消除中国问题的可行方法,因为燃煤电厂在电力行业占主导地位,而LT-MED在利用低温热资源方面比其他海水淡化技术具有技术优势。能源需求的成本占水生产成本的绝大部分,关于水生产的能源需求在两用工厂中非常重要。本文对两用工厂的水生产能源成本进行了经济学分析。通过等效焓降理论(EEDT)和非设计分析理论在汽轮机上进行.EEDT被证明是一种有效的方法进行部分定量分析的od可用于精确计算出水的能源需求和提取蒸汽对汽轮机的经济影响。分析了LT-MED结合热蒸汽压缩过程(TVC)过程的非设计条件下的蒸汽轮机效率比,结果表明EECR比广泛使用的GOR更准确地用于评估脱盐过程的经济性他们还表明,EECR是等效焓降,用于加热脱盐过程的萃取量的函数,而GOR反映了萃取的实际工作能力。此外,还可以看出水的具体燃料成本与反渗透相比,其发电量较低。结论:与LT-MED集成的燃煤电厂是经济且合适的解决中国北部沿海地区的水资源短缺问题。

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