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Optimisation of non-isothermal utilities using the Unified Total Site Heat Integration method

机译:使用统一总站点热集成方法优化非等温公用事业

摘要

Total Site Heat Integration is an effective method for design of large scale utility systems that serve large chemical processes, such as refineries, petrochemicals or even lower temperature chemical and process plants. Total Site Heat Integration of different chemical plants might confront batch, semi-continuous or continuous plants which are clustered into one large site. Excess heat produced from one plant could be transferred to other plants using an intermediate fluid. In this paper, Total Site optimisation of targeting utility generation and consumption for lower temperature processes, which mainly use non-isothermal utilities, is presented. The utility temperature selection optimisation applies to the recently developed Unified Total Site Heat Integration Targeting (UTST) method. The new method shows that, for low temperature processes where non-isothermal utilities are used, the supply and target temperatures of a utility is an important constraint, while for higher temperature processes, where isothermal utilities are applied, no significant change in targets from conventional Total Site are obtained. New heuristics based on UTST method with respect to non-isothermal utility temperature selection are proposed. A Kraft Pulp Mill case study has been investigated in this research, using optimised non isothermal utilities, showing a 3.6 MW increase in heat recovery, 0.87 MW decrease in shaft work generation, and $ 330,000 /y utility cost saving in the system applying the new UTST method compared to the conventional Total Site method.
机译:全站热集成是设计服务于大型化学过程的大型公用事业系统的有效方法,例如炼油厂,石化或什至较低温度的化学和过程工厂。不同化工厂的总站点热集成可能会遇到批量,半连续或连续的工厂,这些工厂聚集在一个大的站点中。一个工厂产生的多余热量可以使用中间流体传递给其他工厂。在本文中,提出了针对主要用于非等温效用的低温过程的效用产生和消耗的总场所优化。公用事业温度选择优化适用于最近开发的统一全站热集成目标(UTST)方法。新方法表明,对于使用非等温公用事业的低温过程,公用事业的供应和目标温度是一个重要的约束条件,而对于使用等温公用事业的高温过程,目标的常规温度没有明显变化。获得总站点。针对非等温公用事业温度选择,提出了一种基于UTST方法的新启发式方法。在这项研究中,对卡夫纸浆厂的案例研究进行了研究,使用优化的非等温公用设施,显示出热回收增加了3.6兆瓦,竖井发电量减少了0.87兆瓦,使用新系统的系统每年节省了330,000美元的公用事业成本UTST方法与常规的Total Site方法相比。

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