The energy demands of data centers (DCs) worldwide are rapidly increasing, as are their environmental and economic costs. This paper presents a study conducted at Sannazzaro de' Burgondi (Po Valley), Italy, specifically aimed at optimizing the operating conditions of a DC designed for the Italian Oil and Gas Company (Eni) (5200 m2 of Information Technology installed, 30 MW) and based on a direct free cooling (DFC) system. The aim of the study was to save the largest possible quantity of energy, while at the same time preventing aerosol corrosion. The aerosol properties (number size distribution, chemical composition, deliquescence relative humidity (DRH), acidity) and meteorological parameters were monitored and utilized to determine the potential levels of aerosol entering the DC (equivalent ISO class), together with its DRH. These data enabled us both to select the DC's filtering system (MERV13 filters) and to optimize the cooling cycle through calculation of the most reliable humidity cycle (60% of maximum allowed RH) applicable to the DFC. A potential energy saving of 81%, compared to a traditional air conditioning cooling system, was estimated: in one year, for 1 kW of installed information technology, the estimated energy saving is 7.4 MWh, resulting in 2.7 fewer tons of CO 2 being emitted, and a financial saving of 1100

Ferrero, L., Sangiorgi, G., Ferrini, B., Perrone, M., Moscatelli, M., D'Angelo, L., et al. (2013). Aerosol corrosion prevention and energy-saving strategies in the design of green data centers. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 47(8), 3856-3864 [10.1021/es304790f].

Aerosol corrosion prevention and energy-saving strategies in the design of green data centers

FERRERO, LUCA
;
SANGIORGI, GIORGIA MAURA LUISA
Secondo
;
FERRINI, BARBARA SARA;PERRONE, MARIA GRAZIA;MOSCATELLI, MARCO;D'ANGELO, LUCA;ROVELLI, GRAZIA;BOLZACCHINI, EZIO
Ultimo
2013

Abstract

The energy demands of data centers (DCs) worldwide are rapidly increasing, as are their environmental and economic costs. This paper presents a study conducted at Sannazzaro de' Burgondi (Po Valley), Italy, specifically aimed at optimizing the operating conditions of a DC designed for the Italian Oil and Gas Company (Eni) (5200 m2 of Information Technology installed, 30 MW) and based on a direct free cooling (DFC) system. The aim of the study was to save the largest possible quantity of energy, while at the same time preventing aerosol corrosion. The aerosol properties (number size distribution, chemical composition, deliquescence relative humidity (DRH), acidity) and meteorological parameters were monitored and utilized to determine the potential levels of aerosol entering the DC (equivalent ISO class), together with its DRH. These data enabled us both to select the DC's filtering system (MERV13 filters) and to optimize the cooling cycle through calculation of the most reliable humidity cycle (60% of maximum allowed RH) applicable to the DFC. A potential energy saving of 81%, compared to a traditional air conditioning cooling system, was estimated: in one year, for 1 kW of installed information technology, the estimated energy saving is 7.4 MWh, resulting in 2.7 fewer tons of CO 2 being emitted, and a financial saving of 1100
Articolo in rivista - Articolo scientifico
Aerosol properties; Chemical composition; Energy-saving strategies; Green data centers; Meteorological parameters; Aerosol Number size distribution;
English
2013
47
8
3856
3864
reserved
Ferrero, L., Sangiorgi, G., Ferrini, B., Perrone, M., Moscatelli, M., D'Angelo, L., et al. (2013). Aerosol corrosion prevention and energy-saving strategies in the design of green data centers. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 47(8), 3856-3864 [10.1021/es304790f].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/44541
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