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The thermodynamic design of the radial inflow nuclear turbine

机译:径流式核动力透平的热力学设计

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According to the flow condition of the nuclear turbine, we can divide the turbine into the radial inflow turbine and axial inflow turbine. The radial flow turbine refers to the turbine steam where the steam or the vapor flows along the radial center. The radial machine has much greater work performance. Because the steam has to overcome the centrifugal force which increases its work ability. Currently, the radial inflow turbine is widely used in small unit and super low temperature engineering. In the state of global warming and the lack of energy, the radial inflow turbine performs well since it has a lot of advantages. This paper mainly introduces the process of the thermal design of a radial inflow turbine. One of the most important task is to determine the basic thermodynamic process and the selection of various parameters of the radial inflow turbine. We will apply the computer programming language C# to compile it. The thermodynamic process design uses IAPWS-IF97 formula to compute physical parameters of the vapor. Then we will finish the development of the software.
机译:根据核涡轮的流动状况,我们可以将涡轮分为径向流入涡轮和轴向流入涡轮。径向流涡轮机是指蒸汽或蒸汽沿径向中心流动的涡轮机蒸汽。径向机器具有更高的工作性能。因为蒸汽必须克服增加其工作能力的离心力。当前,径流式涡轮机已广泛用于小型机组和超低温工程中。在全球变暖和能源匮乏的情况下,径向流入式涡轮机具有许多优点,因此表现良好。本文主要介绍了径向进水轮机的热力设计过程。最重要的任务之一是确定基本的热力学过程以及径向流入涡轮机各种参数的选择。我们将使用计算机编程语言C#进行编译。热力学过程设计使用IAPWS-IF97公式来计算蒸气的物理参数。然后,我们将完成软件的开发。

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