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Sökning: WFRF:(Prakash Puneet)

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1.
  • Menkveld, Albert J., et al. (författare)
  • Nonstandard Errors
  • 2024
  • Ingår i: JOURNAL OF FINANCE. - : Wiley-Blackwell. - 0022-1082 .- 1540-6261. ; 79:3, s. 2339-2390
  • Tidskriftsartikel (refereegranskat)abstract
    • In statistics, samples are drawn from a population in a data-generating process (DGP). Standard errors measure the uncertainty in estimates of population parameters. In science, evidence is generated to test hypotheses in an evidence-generating process (EGP). We claim that EGP variation across researchers adds uncertainty-nonstandard errors (NSEs). We study NSEs by letting 164 teams test the same hypotheses on the same data. NSEs turn out to be sizable, but smaller for more reproducible or higher rated research. Adding peer-review stages reduces NSEs. We further find that this type of uncertainty is underestimated by participants.
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2.
  • Saini, Puneet, et al. (författare)
  • A Novel Effluent Evaporation System for Industrial Applications
  • 2020
  • Ingår i: EuroSun 2020 Proceedings. - Freiburg, Germany : International Solar Energy Society. ; , s. 266-277
  • Konferensbidrag (refereegranskat)abstract
    • This paper presents the design, working principle, and field performance data of a novel effluent/brineevaporation system developed and commercialised by Quadsun solar solutions, India. The developedevaporator aims to address the challenges with existing evaporation technologies to reduce the land arearequirement and heat consumption for brine evaporation while minimising the system operational cost. Thedeveloped evaporator system works on a data-driven control strategy where the effect of constraints on theevaporation rate is non-linear, and the objective function is set to minimise the electricity consumption of thesystem. The optimisation of the evaporation rate in the system control volume is achieved by variation of a)mass flow rate of brine, b) wind speed over the evaporation surface and c) contact area between brine and air.The system performance results are presented for an installed site located in Northern India for a testing periodof 64 days. The results are further compared with a solar pond evaporation system using an analytical model.The result shows that the proposed evaporator has an average specific evaporation rate (SER) of 0.48 L/(h⋅m2),which is 3.8 times higher compared to SER for the solar pond for the same meteorological conditions.Furthermore, the compactness of the proposed evaporator design results in significant land savings comparedto the pond evaporation system.
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