Bldg Technology Urban Systems
Parent: Energy Technologies
eScholarship stats: Breakdown by Item for May through August, 2026
| Item | Title | Total requests | Download | View-only | %Dnld |
|---|---|---|---|---|---|
| 32d6m0d1 | 2024 United States Data Center Energy Usage Report | 67,153 | 8,948 | 58,205 | 13.3% |
| 33m6w3x0 | United States Data Center Energy Usage Report: 2025 Update | 9,494 | 3,648 | 5,846 | 38.4% |
| 00q652xt | China's energy consumption in the building sector: A Statistical Yearbook-Energy Balance Sheet based splitting method | 1,108 | 838 | 270 | 75.6% |
| 5rs2t6zs | Emerging Pathways to Upgrade the US Housing Stock: A Review of the Home Energy Upgrade Literature | 1,031 | 731 | 300 | 70.9% |
| 0nb6z8c1 | Potential benefits of cool walls on residential and commercial buildings across California and the United States: Conserving energy, saving money, and reducing emission of greenhouse gases and air pollutants | 913 | 126 | 787 | 13.8% |
| 42f631k3 | U.S. Industrial and Commercial Motor System Market Assessment Report Volume 1: Characteristics of the Installed Base | 884 | 687 | 197 | 77.7% |
| 6g84k0x7 | A Plug-Loads Game Changer: Computer Gaming Energy Efficiency without Performance Compromise | 832 | 762 | 70 | 91.6% |
| 2r19r76z | Opportunities for Simultaneous Efficiency Improvement and Refrigerant Transition in Air Conditioning | 783 | 368 | 415 | 47.0% |
| 5m16h64p | Assessment of China's Energy-Saving and Emission-Reduction Accomplishments and Opportunities During the 11th Five Year Plan | 771 | 67 | 704 | 8.7% |
| 6wg847ck | Revealing and optimizing the design of cover installation for outdoor units of air conditioners through CFD simulations and thermodynamic modeling | 738 | 419 | 319 | 56.8% |
| 0818n68p | The Cost of Decarbonization and Energy Upgrade Retrofits for US Homes | 713 | 573 | 140 | 80.4% |
| 5dq3f2w7 | Technologies and policies to decarbonize global industry: Review and assessment of mitigation drivers through 2070 | 679 | 388 | 291 | 57.1% |
| 5181s5f9 | Indoor air quality, ventilation and health symptoms in schools: An analysis of existing information | 670 | 611 | 59 | 91.2% |
| 6rm197hd | Single-Node Power Demand During AI Training: Measurements on an 8-GPU NVIDIA H100 System | 640 | 306 | 334 | 47.8% |
| 92b9s515 | A Central Plant Retrofit Assessment Guide for Owners | 620 | 214 | 406 | 34.5% |
| 9484d9wr | Cool - Color Roofing Material PIER Final Project Report | 603 | 312 | 291 | 51.7% |
| 2m68c4xh | 2025 California Demand Response Potential Study - Charting California’s Demand Response Future: Final Report on Phase 2 Results | 593 | 434 | 159 | 73.2% |
| 58p6m0k7 | Building Performance Software: Portfolio-Level Capabilities and Applications | 590 | 433 | 157 | 73.4% |
| 5wp088pp | Barriers to Balcony Solar and Plug-In Distributed Energy Resources in the United States | 584 | 236 | 348 | 40.4% |
| 5w9995b4 | Solar-Reflective “Cool” Walls: Benefits, Technologies, and Implementation | 583 | 433 | 150 | 74.3% |
| 90q1d629 | A prototype cooling blanket for mitigating occupant overheating risk in a hot indoor environment: Modeling and assessments | 581 | 327 | 254 | 56.3% |
| 7d30b3rd | High-performance commercial building facades | 562 | 308 | 254 | 54.8% |
| 9tq865nr | Evaluation of various passive cooling solutions in decarbonizing the Indonesian residential building sector in tropical climates | 560 | 192 | 368 | 34.3% |
| 8wj8q3gz | A simulation framework for assessing thermally resilient buildings and communities | 553 | 461 | 92 | 83.4% |
| 20r7s130 | Commercial building HVAC demand flexibility with model predictive control: Field demonstration and literature insights | 545 | 372 | 173 | 68.3% |
| 6wg0f4ck | Effective Kitchen Ventilation for Healthy Zero Net Energy Homes with Natural Gas | 528 | 279 | 249 | 52.8% |
| 6tp8264b | Building Innovation: A Guide For High-Performance Energy Efficient Buildings in India | 525 | 404 | 121 | 77.0% |
| 0fr1q984 | Temperature-adaptive radiative coating for all-season household thermal regulation | 523 | 296 | 227 | 56.6% |
| 6qh967gc | China Green Low-Carbon City Index | 523 | 85 | 438 | 16.3% |
| 81s475jn | Monitoring the Urban Heat Island Effect and the Efficacy of Future Countermeasures | 517 | 334 | 183 | 64.6% |
| 0nw4c6f9 | Urban microclimate and its impact on building performance: A case study of San Francisco | 516 | 233 | 283 | 45.2% |
| 9sf4z8w8 | Characterizing electrical panel capacity, breaker space, and loads in U.S. single-family homes | 509 | 464 | 45 | 91.2% |
| 9c9526pj | The first field application of a low-cost MPC for grid-interactive K-12 schools: Lessons-learned and savings assessment | 508 | 361 | 147 | 71.1% |
| 41w7z13c | Valuation of Green and High-performance Property: Commecial, Multi-family, and Institutional Properties | 496 | 132 | 364 | 26.6% |
| 3b58m2pv | The Co-Optimization of Sustainable Aviation Fuel: Cost, Emissions, and Performance | 494 | 325 | 169 | 65.8% |
| 6z85s9xn | Online transfer learning strategy for enhancing the scalability and deployment of deep reinforcement learning control in smart buildings | 491 | 404 | 87 | 82.3% |
| 6g11z33j | Quantifying and simulating the weather forecast uncertainty for advanced building control | 489 | 438 | 51 | 89.6% |
| 7fx1f6mv | DIY Affordable Window Shading | 488 | 173 | 315 | 35.5% |
| 8hh8w19j | Accelerating Residential Building Decarbonization: Market Guidance to Scale Zero-Carbon-Aligned Buildings | 487 | 452 | 35 | 92.8% |
| 44g399sb | Ventilation and Indoor Air Quality in New California Homes with Gas Appliances and Mechanical Ventilation | 486 | 389 | 97 | 80.0% |
| 2fb2806v | Heat pumps for all? Distributions of the costs and benefits of residential air-source heat pumps in the United States | 484 | 162 | 322 | 33.5% |
| 7qh9n28d | University of Hawai‘i Shallow Geothermal Resources Energy Technology Innovation Partnership Project Final Report, January 2025 | 482 | 258 | 224 | 53.5% |
| 2bn5p0kz | Fenestration of Today and Tomorrow: A State-of-the-Art Review and Future Research Opportunities | 481 | 289 | 192 | 60.1% |
| 3p5293pq | Measured Performance of Over the Range Microwave Range Hoods | 481 | 251 | 230 | 52.2% |
| 0129h0g7 | Field Performance of Commercial Building Load Flexibility Using Model Predictive Control | 478 | 345 | 133 | 72.2% |
| 19d5v90s | Ten questions on urban building energy modeling | 463 | 271 | 192 | 58.5% |
| 7sb6d9cb | Prototype energy models for data centers | 460 | 204 | 256 | 44.3% |
| 2v34q113 | Characterizing peak electricity demand for U.S. households: an assessment of end-use loads and demand factors | 459 | 110 | 349 | 24.0% |
| 6bz636wm | City-Scale Building Anthropogenic Heating during Heat Waves | 458 | 196 | 262 | 42.8% |
| 5jk9g7w3 | Defining Power Efficient Residential Electric Appliances and Equipment | 456 | 273 | 183 | 59.9% |
Note: Due to the evolving nature of web traffic, the data presented here should be considered approximate and subject to revision. Learn more.