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Proposed split-type vapor compression refrigerator for heat hazard control in deep mines

机译:拟议中的用于深井热害控制的分体式蒸气压缩式制冷机

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The thermodynamic performance of a proposed split-type vapor compression refrigerator (SVCR) for heat hazard control in a deep mine was numerically analyzed. The thermodynamic characteristics of the suction process of the proposed system were also simulated and analyzed. In the suction direction, the pressure, velocity, temperature, and specific enthalpy of R134a vapor dropped, whereas its specific volume and specific entropy rose. The variations in the superheat of the compressor inlet and the characteristics of the pressure drop of the suction process were also described in detail and analyzed. For comparison with the theoretical cycle, a variable, gamma, defined as the COP ratio of the proposed system and the theoretical cycle, was presented, and the variations of gamma were studied and discussed in detail. The proposed system was compared with a cooling water system and an ice slurry system, and results indicate that the thermal performance of the proposed system is better than that of the cooling water system. The thermal performance of the ice slurry system is better than that of the proposed system when a mine is sufficiently deep. However, when the mine is not too deep and the evaporation temperature, TE, is not too low, the proposed SVCR system is the better choice. (C) 2016 Elsevier Ltd. All rights reserved.
机译:数值分析了拟议的分体式蒸气压缩制冷机(SVCR)在深部矿山中进行热害控制的热力学性能。还对所提出系统的抽吸过程的热力学特性进行了仿真和分析。在吸入方向上,R134a蒸气的压力,速度,温度和比焓下降,而其比体积和比熵则上升。还详细描述并分析了压缩机入口过热度的变化和吸气过程的压降特性。为了与理论周期进行比较,提出了一个变量gamma,定义为所提议系统的COP比和理论周期,并详细研究了gamma的变化。将该系统与冷却水系统和冰浆系统进行了比较,结果表明,该系统的热性能优于冷却水系统。当矿井足够深时,冰浆系统的热性能优于所提出的系统。但是,当矿井不太深且蒸发温度TE不太低时,建议的SVCR系统是更好的选择。 (C)2016 Elsevier Ltd.保留所有权利。

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