Energy and Resources Group Open Access Policy Deposits
Parent: Energy and Resources Group
eScholarship stats: Breakdown by Item for May through August, 2026
| Item | Title | Total requests | Download | View-only | %Dnld |
|---|---|---|---|---|---|
| 2ts9g6jj | The Environmental Costs and Geography of U.S. Data Center Expansion | 2,053 | 972 | 1,081 | 47.3% |
| 6g81c2wn | Mundane Is the New Radical | 1,912 | 107 | 1,805 | 5.6% |
| 3428v1r6 | Observational determination of surface radiative forcing by CO2 from 2000 to 2010 | 1,208 | 649 | 559 | 53.7% |
| 00q652xt | China's energy consumption in the building sector: A Statistical Yearbook-Energy Balance Sheet based splitting method | 1,108 | 838 | 270 | 75.6% |
| 2r19r76z | Opportunities for Simultaneous Efficiency Improvement and Refrigerant Transition in Air Conditioning | 783 | 368 | 415 | 47.0% |
| 8mc6q011 | Greening of the Earth and its drivers | 723 | 305 | 418 | 42.2% |
| 5dq3f2w7 | Technologies and policies to decarbonize global industry: Review and assessment of mitigation drivers through 2070 | 679 | 388 | 291 | 57.1% |
| 2sn7m83z | A Consumption-Based Greenhouse Gas Inventory of San Francisco Bay Area Neighborhoods, Cities and Counties: Prioritizing Climate Action for Different Locations | 640 | 229 | 411 | 35.8% |
| 84n3398c | Persistence of soil organic carbon caused by functional complexity | 619 | 231 | 388 | 37.3% |
| 9gc6v9tj | Response to Comment on “The whole-soil carbon flux in response to warming” | 512 | 438 | 74 | 85.5% |
| 7cj2616p | Forest aboveground biomass estimation through integration of sentinel-2 and PALSAR-2 time series: assessing models trained on GEDI and field inventory benchmarks | 490 | 186 | 304 | 38.0% |
| 4kf8w5pc | Utilizing Noncoincident Needs to Site Data Centers with Solar+Storage at Existing Gas Plants | 486 | 55 | 431 | 11.3% |
| 6bz636wm | City-Scale Building Anthropogenic Heating during Heat Waves | 458 | 196 | 262 | 42.8% |
| 2sc6t6zx | Influence of Tundra Polygon Type and Climate Variability on CO2 and CH4 Fluxes Near Utqiagvik, Alaska | 452 | 408 | 44 | 90.3% |
| 58q2q8rj | The Deep Soil Organic Carbon Response to Global Change | 419 | 275 | 144 | 65.6% |
| 9650k3g9 | Pervasive over-crediting from cookstove offset methodologies | 406 | 201 | 205 | 49.5% |
| 5t38p25t | The Net Zero World Initiative’s Preliminary Analysis of Decarbonization Pathways for Five Countries | 399 | 197 | 202 | 49.4% |
| 62d4075g | Energy storage deployment and innovation for the clean energy transition | 387 | 287 | 100 | 74.2% |
| 8dr7w284 | Overlooked cooling effects of albedo in terrestrial ecosystems | 360 | 256 | 104 | 71.1% |
| 3mj786q4 | Anthropogenic heat from buildings in Los Angeles County: A simulation framework and assessment | 359 | 130 | 229 | 36.2% |
| 32k431jz | Leveraging Big Data and Coordinated Charging for Effective Taxi Fleet Electrification: The 100% EV Conversion of Shenzhen, China | 346 | 160 | 186 | 46.2% |
| 6pc2k2tv | Inequitable access to distributed energy resources due to grid infrastructure limits in California | 346 | 109 | 237 | 31.5% |
| 4k19r6z7 | Consumption Based Greenhouse Gas Inventory of San Francisco from 1990 to 2015 | 338 | 64 | 274 | 18.9% |
| 9bt3c7q8 | City-integrated renewable energy for urban sustainability | 327 | 237 | 90 | 72.5% |
| 34r3t5vn | Chinas plug-in hybrid electric vehicle transition: An operational carbon perspective | 322 | 254 | 68 | 78.9% |
| 2jd320d9 | Predicting soil carbon loss with warming | 321 | 164 | 157 | 51.1% |
| 3nx4d18c | Author Correction: The FLUXNET2015 dataset and the ONEFlux processing pipeline for eddy covariance data | 317 | 184 | 133 | 58.0% |
| 9kg4x3zh | Chapter 9 Electric vehicles | 297 | 229 | 68 | 77.1% |
| 2xf0f1dj | The FLUXNET2015 dataset and the ONEFlux processing pipeline for eddy covariance data | 295 | 210 | 85 | 71.2% |
| 68m916mq | Scenarios of energy efficiency and CO2 emissions reduction potential in the buildings sector in China to year 2050 | 295 | 112 | 183 | 38.0% |
| 16x9z6s8 | Near-term trends in China's coal consumption | 290 | 66 | 224 | 22.8% |
| 2jr315cb | Potential of artificial intelligence in reducing energy and carbon emissions of commercial buildings at scale | 286 | 182 | 104 | 63.6% |
| 40x3z74k | Preparing Scientists, Policy-Makers, and Managers for a Fast-Forward Future | 283 | 74 | 209 | 26.1% |
| 4cg7s575 | Opportunities and challenges in using remaining carbon budgets to guide climate policy | 282 | 217 | 65 | 77.0% |
| 4gb0p4hj | The Community Land Model Version 5: Description of New Features, Benchmarking, and Impact of Forcing Uncertainty | 281 | 179 | 102 | 63.7% |
| 7js4722d | Spatial Distribution of U.S. Household Carbon Footprints Reveals Suburbanization Undermines Greenhouse Gas Benefits of Urban Population Density | 280 | 113 | 167 | 40.4% |
| 12d0c439 | Association between soil organic carbon and calcium in acidic grassland soils from Point Reyes National Seashore, CA | 276 | 174 | 102 | 63.0% |
| 7r14s4rn | Where, when and how much solar is available? A provincial-scale solar resource assessment for China | 275 | 164 | 111 | 59.6% |
| 7tg4x3n3 | Clean Industry in China: A Techno-Economic Comparison of Electrified Heat Technologies, Barriers, and Policy Options | 273 | 149 | 124 | 54.6% |
| 7jz6v535 | Perspectives on Bay–Delta Science and Policy | 270 | 98 | 172 | 36.3% |
| 18g998zw | A roadmap for China to peak carbon dioxide emissions and achieve a 20% share of non-fossil fuels in primary energy by 2030 | 268 | 179 | 89 | 66.8% |
| 82550285 | Expert assessment of vulnerability of permafrost carbon to climate change | 268 | 156 | 112 | 58.2% |
| 8w35m437 | Facilitating Adaptive Management in California’s Sacramento–San Joaquin Delta | 266 | 70 | 196 | 26.3% |
| 7q68v57x | Higher climatological temperature sensitivity of soil carbon in cold than warm climates | 260 | 132 | 128 | 50.8% |
| 7zf1h9mw | Whole-soil warming leads to substantial soil carbon emission in an alpine grassland | 260 | 87 | 173 | 33.5% |
| 9jp7g95t | Decentralized energy systems for clean electricity access | 260 | 164 | 96 | 63.1% |
| 7xp8v07z | Decadal increases in carbon uptake offset by respiratory losses across northern permafrost ecosystems | 258 | 185 | 73 | 71.7% |
| 1s88n8c6 | White Paper: The EcoBlock Project and the “Own Use” Exemption under Public Utilities Code Section 218 – A Way Forward for Privately Operated Microgrids | 257 | 55 | 202 | 21.4% |
| 4f62b381 | Evaluating the hidden costs of drinking water treatment technologies | 253 | 85 | 168 | 33.6% |
| 3n5102td | Grid connections and inequitable access to electricity in African cities | 249 | 83 | 166 | 33.3% |
Note: Due to the evolving nature of web traffic, the data presented here should be considered approximate and subject to revision. Learn more.