Energy efficiency improvement of a drilling facility through utilization of a battery energy storage system

Abstract

U radu su predstavljeni rezultati analize uštede energije (goriva) izolirane dizelske elektrane bušaćega postrojenja opremljenoga baterijskim sustavom za pohranu energije za kompenzaciju vršnih opterećenja. Strategija upravljanja tokovima energije uključuje logiku uključivanja i isključivanja generatora i poravnavanje vršnih opterećenja temeljeno na trenutnim zahtjevima za radnom i jalovom snagom mikromreže postrojenja. Analiza se provodi na 30-dnevnim podacima opterećenja mikromreže izolirane kopnene bušaće garniture, koju karakterizira varijabilno radno i jalovo opterećenje. Glavni zaključak je kako se izbjegavanjem rada pri malim snagama pojedinačnih generatora i osiguravanjem zahtjeva za vršnom snagom iz namjenskog baterijskoga sustava za pohranu energije, može značajno smanjiti potrošnja goriva dizel-agregatne elektrane, otprilike 12 % u usporedbi s dosadašnjom praksom koja se oslanja isključivo na odlučivanju stručnjaka na terenu. Konačno, analiza je, također, pokazala da razdoblje povrata ulaganja u razmatranio baterijski sustav za pohranu energije jest jedna do dvije godine.This paper presents the results of energy (fuel) savings analysis of an isolated diesel power plant on a drilling rig equipped with a battery energy storage system to compensate for peak loads. The proposed energy management strategy includes a generator turn-on and turn-off logic and peak load shaving based on active and reactive power requirements of the drilling rig microgrid. The analysis is performed on 30-day microgrid power consumption data set recorded on an isolated onshore drilling rig, which is characterized by variable active and reactive load. The main conclusion is that by avoiding low-power operation of individual generators and ensuring peak power requirements from the dedicated battery energy storage system, the diesel power plant fuel consumption can be significantly reduced, by about 12% compared to the current practice, which relies solely on experts in the field. Finally, the analysis also showed that the return of investment of the considered battery energy storage system can be one to two years

    Similar works