louboutin
Advancing Geological Carbon Storage Monitoring With 3d Digital Shadow Technology
Gahlot, Abhinav Prakash, Orozco, Rafael, Herrmann, Felix J.
Geological Carbon Storage (GCS) is a key technology for achieving global climate goals by capturing and storing CO2 in deep geological formations. Its effectiveness and safety rely on accurate monitoring of subsurface CO2 migration using advanced time-lapse seismic imaging. A Digital Shadow framework integrates field data, including seismic and borehole measurements, to track CO2 saturation over time. Machine learning-assisted data assimilation techniques, such as generative AI and nonlinear ensemble Bayesian filtering, update a digital model of the CO2 plume while incorporating uncertainties in reservoir properties. Compared to 2D approaches, 3D monitoring enhances the spatial accuracy of GCS assessments, capturing the full extent of CO2 migration. This study extends the uncertainty-aware 2D Digital Shadow framework by incorporating 3D seismic imaging and reservoir modeling, improving decision-making and risk mitigation in CO2 storage projects.
Luxury brands are betting big on India, and so are counterfeiters
New Delhi/Kolkata, India – A pair of black Dandy Pik Pik loafers covered in sharp, uneven spikes and shiny studs was part of the evidence before Judge Pratibha M Singh in an intellectual-property lawsuit brought by French luxury shoe brand Christian Louboutin against an Indian shoe manufacturer in a Delhi high court last year. Louboutin's lawyers had already regaled the court with anecdotes about the iconic status of their shoes. The signature stilettos, with their luxuriant red soles, had starred in movies like The Devil Wears Prada and Sex and The City, and were registered as a trademark in India and other countries, they said. Riding on the brand's reputation, the lawyers were now trying to make the point that spiked shoes, too, were unique to Christian Louboutin, and the defendant, Shutiq – The Shoe Boutique, was manufacturing and selling their designs in India illegally. Incriminating evidence presented to Judge Singh included testimony from ChatGPT, saying that Christian Louboutin is known for spiked men's shoes. Then there were photographs of Shutiq's 26 spiked and bedazzled shoes next to Louboutin originals, including Dandy Pik Pik.
- Asia > India > West Bengal > Kolkata (0.25)
- Asia > India > NCT > New Delhi (0.25)
- Europe > United Kingdom (0.14)
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- Law > Intellectual Property & Technology Law (0.55)
- Law Enforcement & Public Safety > Crime Prevention & Enforcement (0.47)
- Law > Litigation (0.35)
Inference of CO2 flow patterns -- a feasibility study
Gahlot, Abhinav Prakash, Erdinc, Huseyin Tuna, Orozco, Rafael, Yin, Ziyi, Herrmann, Felix J.
As the global deployment of carbon capture and sequestration (CCS) technology intensifies in the fight against climate change, it becomes increasingly imperative to establish robust monitoring and detection mechanisms for potential underground CO2 leakage, particularly through pre-existing or induced faults in the storage reservoir's seals. While techniques such as history matching and time-lapse seismic monitoring of CO2 storage have been used successfully in tracking the evolution of CO2 plumes in the subsurface, these methods lack principled approaches to characterize uncertainties related to the CO2 plumes' behavior. Inclusion of systematic assessment of uncertainties is essential for risk mitigation for the following reasons: (i) CO2 plume-induced changes are small and seismic data is noisy; (ii) changes between regular and irregular (e.g., caused by leakage) flow patterns are small; and (iii) the reservoir properties that control the flow are strongly heterogeneous and typically only available as distributions. To arrive at a formulation capable of inferring flow patterns for regular and irregular flow from well and seismic data, the performance of conditional normalizing flow will be analyzed on a series of carefully designed numerical experiments. While the inferences presented are preliminary in the context of an early CO2 leakage detection system, the results do indicate that inferences with conditional normalizing flows can produce high-fidelity estimates for CO2 plumes with or without leakage. We are also confident that the inferred uncertainty is reasonable because it correlates well with the observed errors. This uncertainty stems from noise in the seismic data and from the lack of precise knowledge of the reservoir's fluid flow properties.
De-risking Carbon Capture and Sequestration with Explainable CO2 Leakage Detection in Time-lapse Seismic Monitoring Images
Erdinc, Huseyin Tuna, Gahlot, Abhinav Prakash, Yin, Ziyi, Louboutin, Mathias, Herrmann, Felix J.
With the growing global deployment of carbon capture and sequestration technology to combat climate change, monitoring and detection of potential CO2 leakage through existing or storage induced faults are critical to the safe and long-term viability of the technology. Recent work on time-lapse seismic monitoring of CO2 storage has shown promising results in its ability to monitor the growth of the CO2 plume from surface recorded seismic data. However, due to the low sensitivity of seismic imaging to CO2 concentration, additional developments are required to efficiently interpret the seismic images for leakage. In this work, we introduce a binary classification of time-lapse seismic images to delineate CO2 plumes (leakage) using state-of-the-art deep learning models. Additionally, we localize the leakage region of CO2 plumes by leveraging Class Activation Mapping methods.