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Optimisation for the retrofit of large scale heat exchanger networks with different intensified heat transfer techniques

机译:使用不同强化传热技术的大型热交换器网络改造的优化

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摘要

Intensified heat transfer (IHT) techniques have recently been used for retrofit in the process industry, leading to significant energy saving in heat exchanger network (HEN) by facilitating heat transfer intensification without network topology modification. In this paper, an optimisation method has been developed for dealing with the retrofit of large scale HENs in which the location of intensified heat transfer within the network and its degree of intensification are systematically identified, given the objective function and design constraints, including topological limitation in the existing heat recovery systems. The optimisation framework developed is based on iterative optimisation of a relatively simple mixed integer linear programming (MILP), which can effectively deal with computational difficulties associated with nonlinearity. In the retrofitted HENs, several conventional intensified heat transfer techniques are available, including tube-side intensification (twisted-tape inserts, coiled-wire inserts and internal fins), and shell-side intensification (external fins and helical baffles). Suitable exchangers can be selected for enhancement by implementing one or more intensification techniques to increase the whole network energy recovery within very low retrofit cost. A large-size industrial case study is considered to demonstrate the validity and efficiency of the proposed optimisation approach.
机译:强化传热(IHT)技术最近已用于过程工业中的改造,通过促进传热强化而无需修改网络拓扑结构,从而显着节省了热交换器网络(HEN)的能源。在本文中,已经开发了一种优化方法,用于应对大型HEN的改造,其中,根据目标函数和设计约束(包括拓扑限制),系统地确定了网络内强化传热的位置及其强化程度。在现有的热回收系统中。开发的优化框架基于相对简单的混合整数线性规划(MILP)的迭代优化,可以有效处理与非线性相关的计算难题。在翻新的HEN中,可以使用几种传统的强化传热技术,包括管侧增强(扭曲带插入物,盘绕线插入物和内部散热片)和壳侧增强(外部散热片和螺旋折流板)。可以通过实施一种或多种强化技术来选择合适的交换器进行增强,以在非常低的改造成本内提高整个网络的能量回收率。考虑大型工业案例研究,以证明所提出的优化方法的有效性和效率。

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