Decreasing the Weight-Size Parameters of Gas-Steam Turbine Plant by Increasing the Efficiency of Thermodynamic Processes in the Condenser

IF 0.3 Q4 ENERGY & FUELS Problemele Energeticii Regionale Pub Date : 2021-11-01 DOI:10.52254/1857-0070.2021.4-52.05
A. Bortsov, A. Shevtsov
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Abstract

The aim of this work is decreasing the weight-size parameters of the contact gas-steam turbine plant and contact condenser elements by increasing the efficiency of thermal-gas dynamic processes of condensation through rational irrigation of countercurrent gas-steam flow. To achieve the goal the total efficiency of water-return drops ranging from 0.1 to 1 mm at different initial velocities from 5 to 35 m/s emitted by the multi-nozzle sprinkler was determined by mathematical modeling of the liquid droplet movement processes, heat and mass transfer between the liquid droplet and gas-vapor mixture, and gas-vapor mixture pressure loss. The effect of increasing the gas-steam mixture velocity from 3.3 to 6 m/s on the overall efficiency of water return was determined. The novelty of the obtained results was defined by an increase in the water return into cycle from 12 to 13% with a droplet diameter of 0.3 -- 0.4 mm and the initial velocity from the sprinkler of 5--10 m/s. The velocity of the mixture was to 6 m/s at rational correlations of the initial velocity of the droplets’ escape, which increased the total amount of heat withdrawn to 11%. The positive effect conditions of irrigation processes on thermogasdynamic and weight-size parameters of the condenser elements for the contact gas and steam turbine plant at full pressure recovery coefficients of over 0.967 were substantiated. The most significant result was the reduction of the weight-size parameters of the marine infrastructure object power plant from 8 to 19%.
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通过提高凝汽器热力过程效率来降低燃气轮机装置的重量-尺寸参数
本研究的目的是通过合理灌溉逆流气汽流,提高冷凝热力-气动力过程的效率,降低接触式燃气轮机装置和接触式凝汽器元件的重量-尺寸参数。为了实现这一目标,通过对液滴运动过程、液滴与气汽混合物之间的传热传质过程以及气汽混合物压力损失进行数学建模,确定了多喷头喷头在5 ~ 35m /s不同初始速度下,喷射出的0.1 ~ 1mm范围内的回水液滴的总效率。测定了气汽混合速度由3.3 m/s提高到6 m/s对回水综合效率的影响。所获得的结果的新颖性在于,当液滴直径为0.3—0.4 mm,喷头的初始速度为5—10m /s时,水返回循环从12%增加到13%。在液滴逸出的初始速度的合理关联下,混合物的速度为6 m/s,这使总放热量增加到11%。在全压回收系数大于0.967时,验证了灌水工艺对接触式燃气轮机装置凝汽器热气动力学参数和重量尺寸参数的积极影响条件。最显著的结果是海洋基础设施对象电厂的重量尺寸参数从8%降低到19%。
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来源期刊
CiteScore
0.70
自引率
33.30%
发文量
38
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