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The Reliability and Capability of the Processes of Thermal Energy Generation in Heating Systems

机译:热能发电过程中的可靠性和能力在加热系统中

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In the follow-up by the determination of reliability we understand the determination of good functioning durations, of durability defined in the same context, of repairs intervals and more comprehensibly of maintenance. More generally, in the evaluation of the safety in functioning of a system are equally included the issues of safety and functioning insurance. The systems for the production and distribution of thermal energy are equally extended and varied, and present specificities which differentiate them from the majority of production systems and services, by using many prefabs for whom third parties guarantee a certain reliability. Upon introducing the guarantee of the reliability, the likelihood of its spoiling due to the breaking down of prefabs has significantly diminished. Thus, in the case of heating installations with independent systems, which are small or middle-sized, and for which the power stations, produced by highly qualified companies, have reliability guarantees. The number of breakings has much decreased, by increasing the average duration of good functioning, and implicitly the durability as summation of the functioning duration without breakings. Before the introduction of the statistical control of thermal energy production a compatibility analysis is done which is supposed to establish if the group of tolerances by specifications are compatible with the installations capacity of satisfying these demands.
机译:在确定可靠性的后续之后,我们理解确定在同一上下文中定义的耐久性持续性的良好功能持续性,维修间隔和更可理解的维护。更一般地,在评估系统的安全性中,系统的功能同样包括安全和运作保险的问题。热能生产和分配的系统同样延伸和变化,并且目前通过使用许多预制件来利用大部分生产系统和服务来实现它们的特异性,其中包括第三方保证某种可靠性。在介绍可靠性的保证时,由于预制件的破裂而导致其破坏的可能性显着减少。因此,在具有独立系统的加热装置的情况下,这是小型或中小型的,并且由高素质公司生产的电站具有可靠性保证。通过提高良好功能的平均持续时间,并且隐含地减少了大得多减少,并且隐含地将耐久性与运作持续时间的总和而没有破坏。在引入热能产生的统计控制之前,采取了相容性分析,该分析应该建立规格的公差组是否与满足这些需求的安装能力兼容。

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