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首页> 外文期刊>Journal of thermal analysis and calorimetry >Energetic, exergetic, environmental and economic assessment of a novel control system for indirect heaters in natural gas city gate stations
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Energetic, exergetic, environmental and economic assessment of a novel control system for indirect heaters in natural gas city gate stations

机译:对天然气城门站的间接加热器进行新型控制系统的精力充沛,前进,环境和经济评估

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摘要

The energy consumption and greenhouse gases emissions in natural gas city gate stations are important issues in the natural gas industry. In order to improve efficiency, have a cleaner environment and achieve economic benefits, the present study aims to propose an optimal system for the indirect water bath heaters in natural gas city gate stations. The optimization procedure is carried out by designing a control system to gain an eligible discharge temperature for the heater based on the gas entry conditions to the city gate station. The controller calculates the temperature of hydrate formation in terms of passing gas pressure and gives this information to the torch of the heater for regulating fuel consumption. A comprehensive study is accomplished based on energy, exergy, environment and economic analysis for different pressure reduction stations. The results indicate that employing the proposed system decreases the amount of fuel consumption and greenhouse gases emissions along with increasing system efficiency. Analyzing the results reveals that using the proposed system leads to a maximum of 28.54% relative increment in the heater efficiency compared to the conventional system (at this condition, the heater efficiency of the conventional and proposed system is eta = 36.12% to eta = 46.43%, respectively). Furthermore, with choosing a heater with a capacity of 100,000 SCMH, it is possible to reduce the pollutants emissions and total costs down to 142.6 tons per year and 3,671,000 $ per year, respectively.
机译:天然气城门站的能耗和温室气体排放是天然气工业中的重要问题。为了提高效率,有更清洁的环境和实现经济效益,目前的研究旨在提出天然气城门站的间接水浴加热器的最佳系统。通过设计控制系统来实现优化过程,以基于对城门站的气体进入条件获得加热器的合格放电温度。控制器根据通过气体压力来计算水合物形成的温度,并将这些信息赋予加热器的割炬来调节燃料消耗。基于不同压力减压站的能量,漏洞,环境和经济分析来实现综合研究。结果表明,采用该制定的系统降低了燃料消耗和温室气体排放量随着系统效率的增加。结果表明,与传统系统相比,使用所提出的系统在加热器效率上最大程度地导致加热效率的相对增量28.54%(在这种情况下,传统和提出的系统的加热器效率为ETA = 46.43 = 36.12% %, 分别)。此外,通过选择容量为100,000 SCMH的加热器,可以将污染物排放量降低至每年142.6吨,每年3,671,000美元。

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