Direct Air Capture Case Studies: Sorbent System
Poster presentation of NETL's recently-published DAC sorbent case study results at the 2022 NETL Carbon Management Project Review Meeting held on August 15-19, 2022 in Pittsburgh, PA.
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Poster presentation of NETL's recently-published DAC sorbent case study results at the 2022 NETL Carbon Management Project Review Meeting held on August 15-19, 2022 in Pittsburgh, PA.
Case study of a DOE 2020 Housing Innovation Award winning custom home in a cold climate that got a HERS 29 with PV, with 1,793 square feet, high insulation levels in the attic, walls, and under the slab, plus ENERGY STAR appliances, and solar PV panels.
Case study of a DOE 2021 Housing Innovation Award winning custom home in a cold climate that got a HERS 33 without PV, with 1,936 square feet, gable roof with asphalt shingles, attic insulated with 14 inches (R-49) of blown cellulose, and triple-pane windows.
Case study showing project and performance data and energy-efficiency measures of a winning entry in the Housing Innovation Awards of DOE's Building Technologies Office.
This case study discusses Minnesota's low-income solar efforts through the Weatherization Assistance Program (WAP) and the Low-Income Home Energy Assistance Program (LIHEAP).
Sandia National Labs collaborated with Oak Ridge National Laboratory on a case study examining additive manufacturing opportunities for Geothermal applications. The study focused on designing components with improved performance characteristics that cannot be fabricated conventionally. A rotor for a downhole motor was chosen based on the potential for improving its rotational dynamics. Topology optimization was used as a design method to reduce the rotational inertia of the part while preserving sufficient rotational stiffness to transmit the torque required for the drilling application. The optimization resulted in a nearly 50% reduction in polar moment of inertia while maintaining other desired performance characteristics. The design developed using the topology optimization approach was fabricated using additive manufacturing and cannot be fabricated conventionally.
Case study of a DOE 2020 Housing Innovation Award winning custom home in a cold climate that got a HERS -7 with PV, with 1,280 square feet, ENERGY STAR certified appliances, no-VOC products, and a 7.75-kW PV system.
Case study of a DOE 2021 Housing Innovation Award winning custom home in a hot-humid climate that got a HERS -21 with PV, with 1,288 square feet, ENERGY STAR appliances, low-flow fixtures, low-e3 ENERGY STAR windows, LED lighting, six clerestory windows, and solar tubes.
Case study of a DOE 2021 Housing Innovation Award winning custom home in a marine climate that got a HERS -13 with PV, with 1,804 square feet, highly efficient construction; high-efficiency ductless minisplit heat pumps, appliances, and lighting; triple-pane windows; and 9.9 kW of solar panels on each of the monoplane roofs.
Case study showing project and performance data and energy-efficiency measures of a winning entry in the Housing Innovation Awards of DOE's Building Technologies Office.
Data compiled for the study "Evaluating Offshore Legacy Wells for Geologic Carbon Storage: A Case Study from the Galveston and Brazos Areas in the Gulf of Mexico"
Battery Energy Storage Systems (BESS) are emerging as critical assets for enhancing grid reliability, integrating renewable energy, and enabling system flexibility. Yet, the regulatory and financial frameworks that determine how BESS projects are compensated vary widely across jurisdictions. This presentation explores international case studies - from Honduras, Costa Rica, Chile, South Africa, Mexico, and Brazil - to illustrate how tariff design and payment structures are evolving to support large-scale BESS deployment. The cases highlight a range of ownership and revenue models, including cost-of-service mechanisms, energy and capacity payments, and market-based arbitrage, as well as hybrid approaches under development. The discussion will examine key challenges such as defining remuneration for ancillary services, addressing double charging, and accounting for efficiency losses and degradation over time. By comparing experiences across markets, the presentation identifies emerging best practices for valuing BESS and designing tariffs that align technical performance with economic incentives, providing insights for regulators, utilities, and policymakers pursuing storage integration.
This article presents a case study motivated by a plot of data that suggested an emerging trend that the authors were faced with explaining. When the measurement error of the data is accounted for, it turns out there was no real trend. Furthermore, this article shows how to use a Bayesian modeling approach to account for the measurement error.
Case study that summarizes the risk consideration for class II to class VI well transition. Presented (Virtual) at the Rock Fluid Dynamics (t-Navigator) Technology Summit 2024, May 10, 2024, Houston, TX.
This paper presents the results from the first IEA Wind Task 37 aerodynamic optimization case study. 8 participants applied their optimization tools to a purely aerodynamic problem and the results were compared. Overall, the different tools produced widely different designs, while there was better agreement in the improvement achieved. This highlights the fact that further investigation is needed to try to understand these differences and develop best practices. There were too many differences between the different analysis and optimization codes to determine the sources of these differences. However, several potential sources of discrepancy were identified for further investigation. One hypothesis is that one potential source of discrepancy is that the design problem itself is relatively flat in design directions of constant loading. This flatness would impact the convergence in the optimization, while at the same time mean that discrepancies in the design itself would be less severe.
Case study showing project and performance data and energy-efficiency measures of a winning entry in the Housing Innovation Awards of DOE's Building Technologies Office.
This paper presents the results from the first IEA Wind Task 37 aerodynamic optimization case study. Eight participants applied their optimization tools to a purely aerodynamic problem and the results were compared. Overall, the different tools produced widely different designs, while there was better agreement in the improvement achieved. This highlights the fact that further investigation is needed to try to understand these differences and develop best practices. There were too many differences between the different analysis and optimization codes to determine the sources of these differences. However, several potential sources of discrepancy were identified for further investigation. One hypothesis is that one potential source of discrepancy is that the design problem itself is relatively flat in design directions of constant loading. This flatness would impact the convergence in the optimization, and at the same time mean that discrepancies in the design itself would be less severe.
Case study showing project and performance data and energy-efficiency measures of a winning entry in the Housing Innovation Awards of DOE's Building Technologies Office.