![]() Together, we’re making our 100% clean energy future a reality. Together we’re building the clean energy movement. ![]() Making Hawaii a model of clean energy progress that inspires and catalyzes climate solutions globally Blue Planet Foundation is a 501(c)(3) nonprofit committed to solving our climate change challenge and clearing the path for 100 clean energy. Every dollar we receive is committed to solving our climate change challenge. Blue Planet Foundation 1,922 followers on LinkedIn. Through our Better Bulb Blitz, we replaced more than 300,000 incandescent bulbs with energy efficient bulbs, saving $40 million statewide and displacing 190,000 barrels of oil. Our programs empower communities statewide through smart, replicable renewable energy and energy efficiency solutions. Through our education program, we host an annual Student Energy Summit and deliver weekly school presentations that promote taking energy learning beyond the classroom. We provide education and outreach to help communities understand key energy issues, what’s at stake, and why it matters. Our policy efforts are high-impact initiatives we found that our effort to pass the 100% renewable electricity law helped galvanize statewide support for clean energy and spurred interest from other states to adopt similarly aggressive renewable energy goals. ![]() In 2015, we led the campaign to pass the nation’s first 100% renewable energy law. We engage community leaders, local lawmakers, and energy experts in creating long-term plans and public policy initiatives that lead the charge for a sustainable future. By selecting Blue Planet Foundation as your Jet-Set Offset partner, you will directly support programs that help us move beyond oil faster, such as: Blue Planet is focusing its efforts first in Hawaii because of the islands’ unique opportunity-with high energy prices, an abundance of natural resources, and a history of social innovation-to lead the globe in clean energy transformation. Starting in Hawaii, we envision a world powered by abundant renewable energy that sustains all life on Earth. In comparison with previous formulas, these formulas are power functions consisting of aspect ratio and relative thickness and are highly suitable for predicting the collapse of granular piles and the impulse waves induced as the correlation coefficients of calculated results by these formulas and the measured values exceeded 0.93.Blue Planet Foundation is a nonprofit committed to clearing the path for 100% clean energy. Circular systems in the green and in the blue domain will close water, nutrient and carbon cycles and from this, minimize resource losses and climate change. Yann Arthus Bertrand during his exhibition at Good Planet Foundation. The fitted formula for the run-out of partially submerged granular piles and the corresponding maximum wave amplitudes was derived by nonlinear regression of the experimental data. Blue Hole in the Caribbean Sea by Yann Arthus Bertrand. Thirty five experiments suggested that the impulse waves induced by granular piles could be categorized as bores, solitary waves and nonlinear transition waves according to the functional inequality, which consisted of the aspect ratio and the relative thickness. Through community programs, educational resources, and bold advocacy, Blue Planet strives to accelerate and support the adoption of practices that improve mobility, reduce travel demand, promote equity, increase accessibility, and reduce emissions from the ground transportation. The hydraulic effects such as water entrainment, vortex, rolling, and viscous drag exacerbated the energy dissipation of the granular piles, thus reducing particle mobility. According to the Star Advertiser, Jeff Mikulina, executive director of Blue Planet Foundation, said his organization plans to greet the Solar Impulse 2 with. In the presence of water at the slope foot, the time and the distance traveled by the particles were reduced. Near the water surface, particles moved outward in a reversed “S” shape. The experimental results showed that the collapse process of partially submerged particles was significantly different from that of dry particles. ![]() In this study, the process of impulse wave induction by the gravitational collapse of granular piles was investigated using particle image velocimetry. Towering in many gorges of reservoirs and coastal zones, pillar rock masses may collapse and fall due to foundation crushing, and the impact on water by debris leads to impulse waves.
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