首页> 外文会议>International Mechanical Engineering Congress and Exposition >(V08BT09A011)ANALYSIS OF THE POSSIBILITY OF WATER INDUCTION IN TURBINE FROM DIRECT CONTACT WATER HEATER AT LOAD SHEDDING POWER
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(V08BT09A011)ANALYSIS OF THE POSSIBILITY OF WATER INDUCTION IN TURBINE FROM DIRECT CONTACT WATER HEATER AT LOAD SHEDDING POWER

机译:(V08BT09A011)分析涡轮机中的水感应的可能性从直接接触热水器处加载脱落功率

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Direct-contact heaters of feed water are especially popular as low-pressure heaters (LPH). These devices are successfully used in Russia during a long time both for conventional and nuclear power plants. Moreover, abilities of such devices to operate as deaerators led to the development deaeratorless schemes. One of most important conditions of reliable operating of such LPH is the prevention of damage of steam turbines, because of back flow of wet steam to the turbine. In this paper processes of boiling up are considered in direct contact LPH-2 which occur during stopping of turbine and its specific features concerned with dependence of sonic speed two-phase flow on vapor and liquid volumetric portions during flow enter in compensating tubes. Computer analysis showed, that the rate of generation of steam in the superheated water depends on the pressure exceptionally strong. ' Zone of churn flow regime, which is formed in the upper part of the condensate tank appears very sensitive instrument of flow rate control. As it is shown in such a situation, the system Becomes self-governing and will not miss a steam consumption, which, leads to the entrance some part of churn regime zone to Pressure equalizing tubes. The calculations show that the safety can be ensure even in the conditions when backpressure valve absent. Such the conclusion is confirmed by the experience on operation direct contact LPH in Russian power plants.
机译:进料水的直接接触加热器是低压加热器(LPH)的尤为受欢迎。在长期以来,这些设备在俄罗斯成功用于传统和核电厂。此外,这种器件作为脱水机械运行的能力导致了开发的DeaeratorLess方案。这种LPH可靠运行的最重要条件之一是防止蒸汽涡轮机的损坏,因为湿蒸汽到涡轮机。在本文中,沸腾的过程被认为是在涡轮机停止期间发生的直接接触LPH-2,其特定特征在于在流量进入补偿管中的蒸汽和液体容积部分上的声音速度两相流动的依赖性。计算机分析显示,过热水中蒸汽的产生速率取决于压力异常强。 '流失区域,形成在冷凝水箱的上部,看起来非常敏感的流量控制仪器。随着在这种情况下显示的,系统变得自控,不会错过蒸汽消耗,导致进入的蒸汽制度区域的一些搅拌均衡管。计算表明,即使在缺少背压阀的情况下也可以确保安全性。这样的结论是通过在俄罗斯发电厂的运作经验直接联系LPH的经验证实。

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