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Geothermal Power Plant Area Layout Optimization Considering Toxic Gas Dispersion

机译:考虑有毒气体分散的地热发电厂区域布局优化

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Geothermal is believed a cleaner and more environmentally friendly energy source than fossil fuel. Indonesia whose has the largest geothermal potency in the world just be able to utilize around 5% of her potency. This research is about geothermal power plant area layout optimization considering one of process safety aspect, i.e. toxic gas dispersion particularly H2S gas spreading. Results of this study hopefully can be used to promote geothermal energy utlilization further especially at Indonesia. For the purpose, the optimization problem was formulated as a mixed integer non linear programming and solved with excel solver using GRG non linear algorithm. The objective function of the model is to minimize total plant layout cost yet still to take into consideration toxic gas dispersion. In this case, H2S gas dispersion was computed through computational fluid dynamic simulation. To show the applicability of the model, layout of two geothermal power plants, with and without following process safety standard spacing requirements, have been optimized. The results show that this proposed model is capable to reduce total plant layout cost of existing layouts up to 36%.
机译:地热比化石燃料相信更清洁和更环保的能源。印度尼西亚拥有世界上最大的地热效力,只能利用她效力的5%。考虑到过程安全方面的一个,这项研究是关于地热发电厂区域布局优化,即毒性气体分散特别是H. 2 S气蔓延。本研究的结果希望可以用来进一步促进地热能源utlilization,特别是在印度尼西亚。为此,优化问题被配制为混合整数非线性编程,并使用GRG非线性算法用Excel求解器解决。该模型的目标函数是最小化植物的总布局成本仍然考虑有毒气体分散。在这种情况下,h 2 通过计算流体动态模拟来计算S气体分散。为了展示模型的适用性,已经优化了两个地热发电厂的布局,具有和毫无按照过程安全标准间距要求。结果表明,该拟议模型能够降低现有布局的总植物布局成本,高达36%。

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