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Optimal operation of heat exchanger networks with stream split: Only temperature measurements are required

机译:带分流的热交换器网络的最佳运行:仅需要温度测量

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摘要

For heat exchanger networks with stream splits, we present a simple way of controlling the split ratio. We introduce the "Jaeschke Temperature", which for a branch with one exchanger is defined as T_J=(T-T_0)~2/(T_h-T_0), where T_0 and T are the inlet and outlet temperatures of the split stream (usually cold), and T_h is the inlet temperature of the other stream (usually hot). Assuming the heat transfer driving force is given by the arithmetic mean temperature difference, the Jaeschke Temperatures of all branches must be equal to achieve maximum heat transfer. The optimal controlled variable is the difference between the Jaeschke Temperatures of each branch, which should be controlled to zero. Heat capacity or heat transfer parameters are not needed, and no optimization is required to find the optimal setpoints for the controlled variables. Most importantly, our approach gives near-optimal operation for systems with logarithmic mean temperature difference as driving force.
机译:对于具有分流的热交换器网络,我们提出了一种控制分流比的简单方法。我们引入“ Jaeschke温度”,对于具有一个交换器的分支,其定义为T_J =(T-T_0)〜2 /(T_h-T_0),其中T_0和T是分流的入口和出口温度(通常是T_h是另一股蒸汽的入口温度(通常是高温)。假设传热驱动力由算术平均温度差给出,则所有支路的Jaeschke温度必须相等才能实现最大传热。最佳控制变量是每个分支的Jaeschke温度之间的差,应将其控制为零。不需要热容量或传热参数,也不需要进行优化即可找到受控变量的最佳设定值。最重要的是,我们的方法为以对数平均温度差为驱动力的系统提供了接近最佳的操作。

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