Determinants of respiratory tract aerosol generation in a diverse clinical population: an observational study. [PDF]
Nava GW +12 more
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Construction of a nomogram to predict weaning-induced pulmonary edema in mechanically ventilated patients with cardiogenic respiratory failure. [PDF]
Zhang F, Li L, Zhu T, Liu K.
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POTEC (Platelet Count, Oxygen Saturation, Time of CPR, Elective Surgery, and Initial ETCO<sub>2</sub>) Score for Predicting 24-h Survival After Perioperative Cardiopulmonary Resuscitation: Development and Validation. [PDF]
Chungsaengsatitayaporn S +5 more
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End-tidal carbon dioxide changes induced by passive leg raising can predict fluid responsiveness in patients on veno-arterial extracorporeal membrane oxygenation: a prospective, interventional study. [PDF]
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Bedside ventilatory settings guided by respiratory mechanics in acute respiratory distress syndrome. [PDF]
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A Study on the Endangerment of <i>Luminitzera littorea</i> (Jack) Voigt in China Based on Its Global Potential Suitable Areas. [PDF]
Sun L, Li Z, Huang L.
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Accurate time-series forecasting of floating platform motion via a reinforced fusion CNN-BiLSTM-attention model. [PDF]
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An effective framework for wake predictions of tidal-current turbines
Ocean Engineering, 2021Abstract Deployment of tidal array farms is the next stage of tidal energy development which concentrates on the capture of the enormous energy. Characterization into the wake of tidal turbine aids in determining the tidal farm layout and energy yields. This paper develops a framework that employs the Computational Fluid Dynamics (CFD) simulation and
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Long Term Prediction of Tidal Currents
IEEE Systems Journal, 2011Numerous techniques have been suggested for extracting energy from the sea. Tidal current turbines are a convenient method for extracting power from oceanic currents. Tidal turbines share many similarities to wind turbines; however due to the higher density of sea water they can produce 800-900 times more power when compared to an equivalent wind ...
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Limits to the predictability of tidal current energy
OCEANS 2010 MTS/IEEE SEATTLE, 2010The predictability of tidal currents in the context of hydrokinetic power generation are assessed using current data from a series of surveys in Admiralty Inlet, Puget Sound, Washington, USA. Both current speed and kinetic power density are shown to be well-described by harmonic analysis. Three challenges to predictability are identified.
B L Polagye, J Epler, J Thomson
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