Low-cost solution to the grid reliability problem

I have heard from know-it-alls that the problem with renewable energy is that it is intermittent and hard to store. I have always thought there are many ways to deal with that – charge a battery, pump water uphill, heat something, wind a spring, compress air, electrolyze water into hydrogen and charge a fuel cell. Those are my thoughts with absolutely no expertise at all, but luckily the experts are thinking about this too:

Mark Z. Jacobson, Mark A. Delucchi, Mary A. Cameron, and Bethany A. Frew. A low-cost solution to the grid reliability problem with 100% penetration of intermittent wind, water, and solar for all purposes. PNAS 2015; DOI: 10.1073/pnas.1510028112, 2015

This study addresses the greatest concern facing the large-scale integration of wind, water, and solar (WWS) into a power grid: the high cost of avoiding load loss caused by WWS variability and uncertainty. It uses a new grid integration model and finds low-cost, no-load-loss, nonunique solutions to this problem on electrification of all US energy sectors (electricity, transportation, heating/cooling, and industry) while accounting for wind and solar time series data from a 3D global weather model that simulates extreme events and competition among wind turbines for available kinetic energy. Solutions are obtained by prioritizing storage for heat (in soil and water); cold (in ice and water); and electricity (in phase-change materials, pumped hydro, hydropower, and hydrogen), and using demand response. No natural gas, biofuels, nuclear power, or stationary batteries are needed. The resulting 2050–2055 US electricity social cost for a full system is much less than for fossil fuels. These results hold for many conditions, suggesting that low-cost, reliable 100% WWS systems should work many places worldwide.

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