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Effect of Process Integration on the Reduction of Fuel Consumption

机译:过程集成对减少燃油消耗的影响

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From the process design, demand for utilities can be estimated. The utility system is then designed with respect to the process design. Energy-integrated process design can be introduced at this stage to seek the design that requires the minimum energy, and the corresponding levels at which the utility should enter the process can also be determined. The interaction between process design and the utility system is a further step of energy integration. This step is usually considered after the process design is energy-integrated and targets for minimum hot and cold utilities identified. When hot and cold utilities are specified, it is possible to deal with these utilities as normal process streams to be presented on a grid diagram with the rest of the process streams. The objective of this simultaneous approach for the interaction between utilities and process design is to assign the most efficient way for the utility to be introduced to the process. Consequently, the synthesis of the heat-exchanger network design should become more effective, thereby resulting in a reduced demand for utility import.
机译:从过程设计中,可以估算对公用事业的需求。然后针对过程设计来设计公用系统。可以在此阶段引入能量集成过程设计,以寻求需要最少能量的设计,并且还可以确定公用事业应进入过程的相应级别。工艺设计和公用事业系统之间的相互作用是能源整合的又一步。通常在对过程设计进行能量整合并确定最低限度的热和冷效设施后才考虑此步骤。当指定了热实用程序和冷实用程序时,可以将这些实用程序作为常规流程流处理,并与其余流程流一起呈现在网格图上。这种实用程序与流程设计之间交互的同时方法的目标是为实用程序分配最有效的方法,以将其引入流程。因此,热交换器网络设计的综合应变得更加有效,从而减少对公用事业进口的需求。

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