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Thermal dimensioning of an explosion protected residual current operated circuit-breaker with overcurrent protection by the thermal network method

机译:通过热网络方法对具有过流保护的防爆剩余电流断路器进行热尺寸确定

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Residual current operated circuit-breakers with overcurrent protection (RCBOs) prevent individuals and devices from harmful residual currents and protect the connected cables from over-currents. If the RCBO is used in explosive atmospheres, an additional enclosure is necessary to protect against dangerous explosions. To ensure safe operation and functionality, the enclosure must be thermally designed so that the temperatures of the RCBO and the surfaces of the enclosure do not exceed the specified limit. The experimental proof, that all limit temperatures are not exceeded, is expensive and time-consuming. Instead the temperature distribution can be computed using thermal models. The thermal network method (TNM) computes steady-state temperature distributions faster than other numerical methods. To thermally optimize a design of a new enclosure, individual thermal network models for the RCBO and the enclosure have been set up, verified and interconnected. Using the interconnected thermal network, several parameter studies have been conducted. By the means of the parameter studies changes for an optimized thermal design were proposed. Due to the fast computations of the TNM, the optimization process is very efficient and changes of the design could already be proposed after a few days.
机译:带过电流保护功能的剩余电流断路器(RCBO)可防止个人和设备遭受有害的剩余电流,并保护连接的电缆不受过电流影响。如果在爆炸性环境中使用RCBO,则需要额外的外壳以防止危险的爆炸。为确保安全操作和功能,必须对外壳进行热设计,以使RCBO和外壳表面的温度不超过规定的极限。没有超过所有极限温度的实验证明是昂贵且费时的。相反,可以使用热模型计算温度分布。与其他数值方法相比,热网络方法(TNM)计算稳态温度分布的速度更快。为了对新机箱的设计进行热优化,已经为RCBO和机箱建立了单独的热网络模型,并进行了验证和互连。使用互连的热网络,已经进行了一些参数研究。通过参数研究,提出了用于优化热设计的更改。由于TNM的快速计算,优化过程非常有效,几天后就可以提出设计变更建议。

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