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1.
Ann Ig ; 18(6): 521-33, 2006.
Artículo en Italiano | MEDLINE | ID: mdl-17228609

RESUMEN

In order to plan a correct planning and a realization of interventions to support Regional Environmental Authority, results of "Technological Risk" methodology applied in a Italian region (Puglia) are reported. In this paper two main risk factors has been evaluated (high risk activities, areas with environmental crisis high risk) and determined indicators able to describe, in case of accident or anomalous event, potential interactions in the normal industrial process. Than has been described operative phases to consent risk factors evaluation and their evolution, considering also pressures on the environment identified by other issues. Some themes were in detail studied through territorial analysis and set of rules. This work enables to carry out a specific database for factories subject to "substantial risk" and finally was completed data processing with thematic maps and statistic analysis.


Asunto(s)
Salud Ambiental/organización & administración , Contaminación Ambiental/prevención & control , Sustancias Peligrosas/efectos adversos , Industrias , Salud Ambiental/legislación & jurisprudencia , Humanos , Italia , Medición de Riesgo , Factores de Riesgo
2.
Data Brief ; 5: 65-70, 2015 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-26425667

RESUMEN

In recent years, single dielectric barrier discharge (SDBD) plasma actuators have gained great interest among all the active flow control devices typically employed in aerospace and turbomachinery applications [1,2]. Compared with the macro SDBDs, the micro single dielectric barrier discharge (MSDBD) actuators showed a higher efficiency in conversion of input electrical power to delivered mechanical power [3,4]. This article provides data regarding the performances of a MSDBD plasma actuator [5,6]. The power dissipation values [5] and the experimental and numerical induced velocity fields [6] are provided. The present data support and enrich the research article entitled "Optimization of micro single dielectric barrier discharge plasma actuator models based on experimental velocity and body force fields" by Pescini et al. [6].

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