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STEAM LEAKAGE QUANTITY AND DISCHARGED CONDENSATE QUANTITY MEASURING DEVICE FOR DISC TYPE STEAM TRAP
STEAM LEAKAGE QUANTITY AND DISCHARGED CONDENSATE QUANTITY MEASURING DEVICE FOR DISC TYPE STEAM TRAP
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机译:盘式蒸汽疏水阀的蒸汽泄漏量和冷凝水排放量测量装置
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摘要
PROBLEM TO BE SOLVED: To provide a device capable of accurately measuring a steam leakage quantity and a discharged condensate quantity of a disc type steam trap. ;SOLUTION: A steam leakage quantity and discharaged condensate quantity measuring device for a steam trap is provided with a probe 1 with a built-in vibration detecting means and a device main body 2 processing a detected vibration signal from the probe 1. The device main body 2 is provided with a CPU 6 and a storage unit 7. The storage unit 7 stores relation between an operation cycle of the disc type steam trap and a steam leakage quantity and relation between an operation cycle and a discharged condensate quantity. As to the relation between an operation cycle and a steam leakage quantity, the steam leakage quantity is reduced lower as an operation time becomes longer, and the steam leakage quantity is increased higher as an operation frequency is increased higher. As to the relation between an operation cycle and a discharged condensate quantity, the discharged condensate quantity is increased higher as an operation time becomes longer, and the discharged condensate quantity is reduced lower as an operation frequency is increased higher. The CPU 6 detects an operation cycle of the disc type steam trap from the fed vibration signal so as to compute a steam leakage quantity and a discharged condensate quantity from the detected operation cycle and the relations between an operate cycle and a steam leakage quantity and between an operation cycle and a discharged condensate quantity previously stored in the storage unit 7.;COPYRIGHT: (C)1999,JPO
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机译:解决的问题:提供一种能够准确地测量盘式疏水阀的蒸汽泄漏量和冷凝水排放量的装置。 ;解决方案:一种用于疏水阀的蒸汽泄漏量和排出的冷凝水量测量装置,包括一个带有内置振动检测装置的探头1和一个设备主体2,该主体2处理来自探头1的检测到的振动信号。主体2设置有CPU 6和存储单元7。存储单元7存储盘式疏水阀的操作循环与蒸汽泄漏量之间的关系以及操作循环与排出的冷凝水量之间的关系。关于运转周期与蒸汽泄漏量之间的关系,随着运转时间的增加,蒸汽泄漏量减少得越少,随着运转频率越高,蒸汽泄漏量就越高。关于运转周期与排出的冷凝水量之间的关系,随着操作时间的增加,排出的冷凝水量增加得更高,并且随着操作频率的增加,排出的冷凝水量减少得更低。 CPU 6从所馈送的振动信号中检测盘式疏水阀的操作周期,以便根据检测到的操作周期以及操作周期与蒸汽泄漏量之间的关系以及之间的关系来计算蒸汽泄漏量和排出的冷凝水量。操作周期和先前存储在存储单元7中的冷凝水排放量;版权所有:(C)1999,JPO
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