利用抽水蓄能和压缩气体混合系统直接回收和储存天然气减压废能的创新方法

IF 6 Q1 ENGINEERING, MULTIDISCIPLINARY Results in Engineering Pub Date : 2024-09-19 DOI:10.1016/j.rineng.2024.102943
Amin Hadidi
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引用次数: 0

摘要

我们提出了一种新颖的机制,可在天然气减压过程中同时回收和储存能量。该建议的主要思路是使用与涡轮膨胀机耦合的压缩机和泵,将膨胀涡轮产生的机械动力直接储存在基于泵送水力和压缩气体的储能系统中。压缩机用于在储能系统的容器中产生预设压力,泵用于将水注入容器。这样,系统中的储能密度就会增加。在放电阶段,在用电高峰时段或能源价格较高时,通过涡轮发电机供水发电。已在一个标称容量为 50,000 Nm3/h 的天然气减压站中测试了所提出的新方法的能力,并研究了储能系统中不同因素对其性能的影响,包括预设压力和加压罐中水与天然气的体积比。通过使用所提出的方案,消除了不必要的能量转换,提高了能量回收、储存和释放的效率。研究结果表明,通过采用建议的系统,每年可收集约 1.3 (GWh) 的能量;而目前这些能量都被浪费掉了。此外,整体能源转换效率为 48.64%。
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An innovative approach to direct recovery and storage of natural gas depressurization wasted energy by using a hybrid pumped-hydro and compressed gas system

A novel mechanism is proposed to simultaneous recovery and storage of energy for use in the natural gas depressurization process. The main idea of this proposal is to use a compressor and a pump coupled with the turbo-expander to directly store the mechanical power produced by the expansion turbine in the energy storage system based on the pumped hydro combined with compressed gas. The compressor is used to create preset pressure in the vessel of the energy storage system, and the pump is used to inject water into the vessel. In this way, the density of energy storage in the system increases. In the discharge stage, electricity is produced by passing water through the turbo-generator during peak consumption hours or when energy prices are higher. The capability of the presented new method has been tested in a natural gas pressure reducing station with a nominal capacity of 50,000 Nm3/h, and the effect of different factors within the energy storage system on its performance, including the preset pressure and the volumetric ratio of water to gas in the pressurized tank, has been studied. By using the proposed plan, due to the elimination of unnecessary energy conversions the efficiency of recovery, storage and release of energy enhances. The results showed that by employing the proposed system, about 1.3 (GWh) of energy can be harvested annually; while this amount of energy is currently wasted. Also, the overall energy conversion efficiency of 48.64 %.

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来源期刊
Results in Engineering
Results in Engineering Engineering-Engineering (all)
CiteScore
5.80
自引率
34.00%
发文量
441
审稿时长
47 days
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