首页> 外文会议>ASME Fluids Engineering Division summer meeting >IMPROVING LPG PUMP EFFICIENCY BY CONSIDERING VARIANT PHYSICAL-PROPERTIES OF LIQUEFIED PETROLEUM GAS
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IMPROVING LPG PUMP EFFICIENCY BY CONSIDERING VARIANT PHYSICAL-PROPERTIES OF LIQUEFIED PETROLEUM GAS

机译:通过考虑液化石油气的各种物理特性来提高LPG泵的效率

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In a Liquefied Petroleum Gas (LPG) plant, the gas is received, stored, and finally, pumped to tanker trucks for distribution to consumers. In the pumping stage, a reduction in the efficiency of the pump for values below the density of the LPG is observed. As an option to resolve this problem when pumping LPG with varying density, this analysis evaluates a temperature control system in the plant's pipeline by means of the installation of heat exchange equipment, attempting to reduce the temperature of the LPG. The theoretical data that the density of the liquid corresponds to 0.540kg/m~3 at 288.65K is taken into account, supposing that if the temperature of the liquid can be reduced, the density of the LPG can be increased, thus improving the efficiency of the pump. In this research, a methodology of dimensional analysis is used to combine real operating conditions and simulations on commercial grade Computational Fluid Dynamics (CFD) software; it is proposed to cool the liquid gas stored in the LPG plant during its trajectory from the storage spheres to the pumping equipment. Therefore, the research being reported in this paper focuses on a modification to the LPG pumping process, installing a heat exchanger as an alternative or means to compensate for the loss of efficiency in LPG pumps and evaluating its application in the hydrocarbons industry.
机译:在液化石油气(LPG)植物中,收到,储存,最后,泵送到油轮卡车以分配给消费者。在泵浦阶段,观察到泵的效率降低,用于低于LPG的密度的值。作为解决此问题的选择,当泵送具有不同密度的LPG时,该分析通过安装热交换设备来评估工厂管道中的温度控制系统,试图降低LPG的温度。考虑到液体密度对应于0.540kg / m〜3的理论数据,考虑到288.65k,假设如果液体的温度可以减少,则可以增加LPG的密度,从而提高效率泵。在本研究中,尺寸分析方法用于将实际操作条件和模拟与商业级计算流体动力学(CFD)软件相结合;提出在从储存球到泵送设备的轨迹期间冷却储存在LPG设备中的液体气体。因此,本文报道的研究侧重于对LPG泵送过程的修改,将热交换器安装为替代或方法,以补偿LPG泵中效率的损失并评估其在碳氢化合物行业中的应用。

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