Tariff structure selection for optimal electricity cost savings on a process plant
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Pezulu, Pheladi Sepopo
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North-West University (South Africa), Potchefstroom Campus
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Abstract
South Africa's electricity grid is currently under strain due to the high demand of electricity.
This strain on the grid has resulted in the increase of electricity costs that has put financial
pressure on consumers. In addition to this, consumers that are supplied through municipalities
have to cope with additional service costs of up to 20%. Process plants are among the highest
energy consumers and are therefore vulnerable to these cost increases.
Eskom introduced different electricity tariff structures that are designed to allow consumers
to be cost reflective and to decrease the country's peak profile. In addition to this, the
Demand Side Management (DSM) programme was implemented to allow consumers to
manage their load profile. A clear understanding of a plant operation is necessary before
choosing a tariff structure. This study analysed the integration of power consumption with
production in order to decide on the tariff structure and load management profile that resulted
in the best electricity cost savings.
A simulation model was used to integrate plant operational constraints with various tariff
structures. The model then produced and optimised load profile and cost savings. The model
was used to simulated cost savings on two case studies. The verified annual cost savings
amounted to R3.2-million, which is equivalent to 13% of the electricity costs. This presents
opportunities for significant cost savings if the right tariff structure is matched to the specific
electricity usage trends of the consumer
Sustainable Development Goals
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MEng (Mechanical Engineering), North-West University, Potchefstroom Campus, 2016
