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CONDENSATION IN AVERTICAL TUBE BUNDLE OPERATING IN PASSIVE CONDENSATION MODE

机译:被动冷凝模式下垂直管束操作中的冷凝

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Passive condenser systems are used in a number of industrial heat transfer systems. Passive containment cooling system (PCCS) which is composed of a number of vertical heat exchanger serves as an engineered safety system in an advanced boiling water reactor. The PCCS condenser must be able to remove sufficient energy from the reactor containment to prevent containment from exceeding its design pressure. Experiments were designed to simulate the PCCS condensation with a tube bundle. Scaling analysis was performed to scale down the prototype PCCS with a tube bundle consisting of four tubes. The tubes in the bundle were of prototype height (1.8 m) and diameter (52.5 mm) and the operating conditions and boundary conditions such as the operating pressure, secondary cooling system were designed to represent prototype conditions. Steam condensation tests were carried out in complete condensation mode where all the steam entering the condenser bundle is completely condensed. Condensation heat transfer coefficients (HTC) were obtained for various steam flow rate. The condensation pressure depended on the inlet steam flow rate which happens to be the maximum condensation rate for the given test pressure. Data on condensation heat transfer were obtained for primary pressure raging from 110 - 270 kPa. The tube bundle condensation heat transfer rates were compared with single tube heat transfer rates from previous work. The results showed that the condensation heat transfer coefficient for the tube in bundle was comparable with single tube, however the secondary side heat transfer coefficients for the tubes in bundle was higher than for the single tube. Condensation heat transfer for tube in bundle ranged from 7500 W/ m2K to 20,000 W/ m2K for the range of pressure studied. A heat and mass analogy model was developed and the condensation heat transfer prediction from the model was compared with experimental data.
机译:无源冷凝器系统用于许多工业传热系统中。由多个垂直热交换器组成的被动安全壳冷却系统(PCCS)在先进的沸水反应堆中用作工程安全系统。 PCCS冷凝器必须能够从反应堆安全壳中去除足够的能量,以防止安全壳超过其设计压力。设计实验以模拟PCCS与管束的冷凝。进行比例分析以按比例缩小PCCS原型,其中PCCS的管束由四个管组成。束中的管具有原型高度(1.8 m)和直径(52.5 mm),并且设计了工作条件和边界条件(例如工作压力,二次冷却系统)来代表原型条件。蒸汽冷凝测试是在完全冷凝模式下进行的,其中进入冷凝器束的所有蒸汽都被完全冷凝。获得了各种蒸汽流速下的冷凝传热系数(HTC)。冷凝压力取决于入口蒸汽流速,该流速恰好是给定测试压力下的最大冷凝率。获得了一次冷凝压力为110-270 kPa的冷凝传热数据。将管束冷凝水的传热速率与先前工作中的单管传热速率进行了比较。结果表明,管束中的冷凝水传热系数与单管相当,但是管束中的次级侧传热系数高于单管。在所研究的压力范围内,管束中的冷凝水传热范围为7500 W / m2K至20,000 W / m2K。建立了一个热与质量的模拟模型,并将该模型的冷凝传热预测与实验数据进行了比较。

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