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Estimation of the Calorific Power of a Heating Element

机译:加热元件的发热量估算

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The present paper is aimed to determine the calorific power of a heating source, consisting of a laterally isolated aluminum cylinder, which incorporates an internal electrical resistance for controlling the heat, adjusted to a preset temperature. For this, a glass vessel covering the heating surface and containing a certain mass of water is placed on the cylinder, while the thermal evolution of the water, is monitored by means of a thermocouple probe. We describe a simple model, based on the resolution of the differential equation for the heat balance associated with water, incorporating two gain and loss coefficients (the latter directly associated with the heating power required) and its application to the stationary response achieved at a given time with a steady final temperature. In this way and for different preset temperatures ranging from 30 to 70 ° C (in each case, the actual temperature of the source is determined by infrared thermometer), a table of power values is obtained, whose results can be used in other experiments that require it, such as those related to measures heat conductivities in disk shaped samples.
机译:本文旨在确定由横向隔离的铝制圆柱体组成的加热源的热功率,该铝制圆柱体包含用于控制热量的内部电阻,并调节至预设温度。为此,将覆盖加热表面并盛有一定量水的玻璃容器放在圆筒上,同时通过热电偶探头监测水的热释放。我们基于与水有关的热平衡的微分方程的分辨率,描述了一个简单的模型,该模型结合了两个增益和损耗系数(后者直接与所需的加热功率相关),并将其应用于给定的稳态响应最终温度稳定的时间。这样,对于30至70°C的不同预设温度(在每种情况下,光源的实际温度均由红外温度计确定),获得了功率值表,其结果可用于其他实验中,要求它,例如与测量圆盘状样品中的导热率有关的那些。

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