Javascript must be enabled to continue!
Pumped Storage Hydropower for Sustainable and Low-Carbon Electricity Grids in Pacific Rim Economies
View through CrossRef
Because generating electricity significantly contributes to global greenhouse gas emissions, meeting the 2015 Paris Agreement and 2021 Glasgow Climate Pact requires rapidly transitioning to zero or low-emissions electricity grids. Though the installation of renewables-based generators—predominantly wind and solar-based systems—is accelerating worldwide, electrical energy storage systems, such as pumped storage hydropower, are needed to balance their weather-dependent output. The authors of this paper are the first to examine the status and potential for pumped storage hydropower development in 24 Pacific Rim economies (the 21 member economies of the Asia Pacific Economic Cooperation plus Cambodia, Lao PDR, and Myanmar). We show that there is 195 times the pumped storage hydropower potential in the 24 target economies as would be required to support 100% renewables-based electricity grids. Further to the electrical energy storage potential, we show that pumped storage hydropower is a low-cost, low-greenhouse-gas-emitting electrical energy storage technology that can be sited and designed to have minimal negative (or in some cases positive) social impacts (e.g., requirements for re-settlement as well as impacts on farming and livelihood practices) and environmental impacts (e.g., impacts on water quality and biodiversity). Because of the high potential for pumped storage hydropower-based electrical energy storage, only sites with low negative (or positive) social and environmental impacts such as brownfield sites and closed-loop PSH developments (where water is moved back and forth between two reservoirs, thus minimally disturbing natural hydrology) need be developed to support the transition to zero or low-carbon electricity grids. In this way, the advantages of well-designed and -sited pumped storage hydropower can effectively address ongoing conflict around the social and environmental impacts of conventional hydropower developments. Noting the International Hydropower Association advocacy for pumped storage hydropower, we make recommendations for how pumped storage hydropower can sustainably reduce electricity-sector greenhouse gas emissions, including through market reforms to encourage investment and the application of standards to avoid and mitigate environmental and social impacts.
Title: Pumped Storage Hydropower for Sustainable and Low-Carbon Electricity Grids in Pacific Rim Economies
Description:
Because generating electricity significantly contributes to global greenhouse gas emissions, meeting the 2015 Paris Agreement and 2021 Glasgow Climate Pact requires rapidly transitioning to zero or low-emissions electricity grids.
Though the installation of renewables-based generators—predominantly wind and solar-based systems—is accelerating worldwide, electrical energy storage systems, such as pumped storage hydropower, are needed to balance their weather-dependent output.
The authors of this paper are the first to examine the status and potential for pumped storage hydropower development in 24 Pacific Rim economies (the 21 member economies of the Asia Pacific Economic Cooperation plus Cambodia, Lao PDR, and Myanmar).
We show that there is 195 times the pumped storage hydropower potential in the 24 target economies as would be required to support 100% renewables-based electricity grids.
Further to the electrical energy storage potential, we show that pumped storage hydropower is a low-cost, low-greenhouse-gas-emitting electrical energy storage technology that can be sited and designed to have minimal negative (or in some cases positive) social impacts (e.
g.
, requirements for re-settlement as well as impacts on farming and livelihood practices) and environmental impacts (e.
g.
, impacts on water quality and biodiversity).
Because of the high potential for pumped storage hydropower-based electrical energy storage, only sites with low negative (or positive) social and environmental impacts such as brownfield sites and closed-loop PSH developments (where water is moved back and forth between two reservoirs, thus minimally disturbing natural hydrology) need be developed to support the transition to zero or low-carbon electricity grids.
In this way, the advantages of well-designed and -sited pumped storage hydropower can effectively address ongoing conflict around the social and environmental impacts of conventional hydropower developments.
Noting the International Hydropower Association advocacy for pumped storage hydropower, we make recommendations for how pumped storage hydropower can sustainably reduce electricity-sector greenhouse gas emissions, including through market reforms to encourage investment and the application of standards to avoid and mitigate environmental and social impacts.
Related Results
Strategy to improve financial viability of pumped storage hydropower: Techno-economic analysis of pumped storage hydropower with existing conventional hydropower
Strategy to improve financial viability of pumped storage hydropower: Techno-economic analysis of pumped storage hydropower with existing conventional hydropower
The energy transition from fossil fuels to clean energy is inevitable to limit climate change. Pumped storage hydropower can compensate for the balancing of load, provides various ...
Hydroelectric Power Plants and Their Sustainability
Hydroelectric Power Plants and Their Sustainability
Hydropower is the oldest source of renewable mechanical power and largest source of renewable electricity globally accounting for close to 17% of global electricity generation alth...
Hydropower Dams, Environment and Politics
Hydropower Dams, Environment and Politics
Renewable energy sources are vital to fulfill the high demands of energy in the present world. The common renewable energy sources are wind, hydropower, nuclear and biomass. Howeve...
Development Situation and Relevant Inspiration of Pumped Storage Power Station in the world
Development Situation and Relevant Inspiration of Pumped Storage Power Station in the world
Abstract
In many countries, pumped storage power stations have gradually become management tools for the power system and are used to meet peak-shaving, valley filli...
The effect of internal and external determinants of electricity projects in Libya
The effect of internal and external determinants of electricity projects in Libya
Purpose
In recent times, electricity as one of the most important energy sources has witnessed considerable decreases in consumption figures. These cutbacks have ...
European Green Deal + Poland + hydroelectric plants = Future?
European Green Deal + Poland + hydroelectric plants = Future?
This study considers the current state of hydropower in Poland and the legal and environmental conditions for its development. The research objective was to provide insights into t...
Optimization of Hydropower Generation potential of Arjo Dedessa Dam
Optimization of Hydropower Generation potential of Arjo Dedessa Dam
Abstract
Hydropower has been developed to have a positive impact on the quality of life for rural residents in many ways. It offers a wide range of facilities, such as impr...
Changes in soil quality on horse paddock trails and the influence of paddock grids
Changes in soil quality on horse paddock trails and the influence of paddock grids
AbstractPaddock trails offer horses the possibility to follow their natural urge to move and to behave interactively in a group association. To create appropriate conditions all ye...

