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A Rotary Compressor-Accumulator Component Simulation Model in Consideration of Suction Gas Superheat Degrees

机译:考虑吸气气体过热度的旋转式压缩机蓄电池组件仿真模​​型

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On the basis of the classic ARI compressor model, the mass flow-rate and input power were corrected with the level of suction gas superheat, especially the superheat degrees below zero. refrigerant dissolved in the oil pool, at the discharge pressure and the oil temperature, was calculated by means of the estimation model for refrigerant/oil mixture properties. An accumulator mechanism model was linked to this compressor model to build up a compressor-accumulator component model, which was solved out by the simultaneous modular algorithm. The component model can afford more details about the performance of rotary compressor and refrigerant distribution, furthermore, can also be used in the simulation of a refrigeration cycle as a modular package.
机译:在经典的ARI压缩机模型的基础上,质量流量和输入功率校正了吸气气体过热水平,特别是低于零的过热度。通过制冷剂/油混合物特性的估计模型计算溶解在油池的制冷剂,在排出压力和油温下计算。蓄电池机构模型与该压缩机模型连接以构建压缩机蓄电池组件模型,其通过同时模块化算法解决。该组件模型可以提供有关旋转压缩机和制冷剂分布的性能的更多细节,此外,还可以用于模拟制冷循环作为模块化包装。

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