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Minimum Compressor Shaftwork in the Refrigeration System Thermally Coupled with a Rectification Column Network

机译:制冷系统中的最小压缩机Shablework与整流柱网络热耦合

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There is considered the thermal separation of hydrocarbon mixtures using the rectification columns coupled, via a heat exchanger network, with a refrigeration circuit. Using the approach based on Pinch Technology, the minimum is sought of compressor shaftwork in the refrigeration system. The objective function is defined as the entropy increment resulting from the heat exchange in the heat exchanger network. The decision variables are the temperature levels of heat sinks and sources in the refrigeration cycle. An algorithm is proposed for determining the optimal values of the temperature levels of heat sources and sinks corresponding to the minimum of compressor shaftwork. The rectification columns are modeled using the ideal column approach. The numerical simulation is carried out by performing composite curves and selecting temperature levels in the refrigeration system so as to minimise the objective function. The test example is solved for a mixture of selected hydrocarbons (ethane, ethene, propene) to be separated in a sequence of rectification columns coupled with a refrigeration system. Assuming that structure of the rectification column network is known, process parameters are determined for minimum compressor shaftwork. Numerical results of the test example are presented.
机译:考虑通过热交换器网络,具有制冷回路的整流柱的烃混合物的热分离。使用基于捏合技术的方法,在制冷系统中寻找压缩机轴的最小值。目标函数定义为由热交换器网络中的热交换产生的熵增量。决策变量是制冷循环中的散热器和源的温度水平。提出了一种用于确定热源温度水平的最佳值和对应于压缩机的最小值的沉积物的算法。整流列使用理想的列方法进行建模。通过执行复合曲线并选择制冷系统中的温度水平来执行数值模拟,以便最小化目标函数。在与制冷系统偶联的整流柱序列中分离出选定的烃(乙烷,乙烯,丙烯)的混合物,解决了试验例。假设已知整流柱网络的结构,确定用于最小压缩机的结构的工艺参数。提出了测试例的数值结果。

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