LEAP – a software tool for energy policy analysis and climate change mitigation assessment developed by SEI. In LEAP, the user creates a unique hierarchical data structure, or "tree," to model a specific energy system. LEAP can be used as a database for baseline and historical data; as a forecasting tool for modeling future energy supply and demand; and as an analysis tool that can compare options and feed into target-setting and strategic plan development.
This section lists some of the major models in use. 0000005309 00000 n Users must specify which analysis components (e.g., energy suppliers, users, and sectors) to include in the model. 0000002619 00000 n
You can use LEAP to project the energy supply and demand situation in order to glimpse 0000007271 00000 n 0000006495 00000 n 0000005835 00000 n The program can also generate a cost-benefit summary report, which provides a comparative overview of costs and benefits of different scenarios relative to the baseline scenario. 0000002850 00000 n 0000003689 00000 n 0000005571 00000 n 0000012346 00000 n Through its Technology and Environmental Database, LEAP contains default emission factors for energy consuming and energy producing technologies; however, the user may also customize emission factors, overriding the defaults. 0000003621 00000 n LEAP is capable of displaying results as charts, tables, or, in some cases, GIS (Geographical Information System) maps. Leap energy has provided reservoir modeling, area and field development planning services to a number clients with assets in Africa. The environmental, economic and employment effects of renewable energy transition are estimated. A LEAP-Zhang model is established to analyze energy-related socio-environmental dynamics. 0000007153 00000 n 0000003488 00000 n 0000012001 00000 n Along with developing and supporting LEAP, SEI also develops LEAP-based scenario studies, helping policy-makers and planners explore their options to meet future energy needs, mitigate climate change, and shift to a low-carbon development pathway.Get the latest updates and invitations to your inbox with SEI’s newsletter. 0000011725 00000 n 0000004621 00000 n Because the user builds an energy system within the model, specifying all applicable energy consumers and suppliers, LEAP may be used at practically any scale, from utilities to cities or regions; in fact, LEAP has been used by many countries to develop national-level inventories to report to the U.N. LEAP Electric wants to do your new lighting installations the right way. 0000003798 00000 n 0000006363 00000 n technology improvements, market penetration rates). Framework Convention on Climate Change (UNFCCC). 0000004445 00000 n The types of data entered into each "branch" depend on the type of branch (e.g., category, fuel, or indicator branches) and the properties the user establishes for that branch.
0000008880 00000 n LEAP is a simulation model used to represent the current energy situation for a given area and to develop forecasts for the future under certain assumptions. 0000007378 00000 n
It can be used to account for both energy sector and non-energy sector greenhouse gas (GHG) emission sources and sinks. 0000004073 00000 n
0000011794 00000 n 0000005967 00000 n 0000003210 00000 n LEAP Electric wants to do your new lighting installations the right way.
First, an overview of the current situation should be created by specifying data for the starting year, and a basic scenario can be developed assuming a continuation of current trends. 0000011520 00000 n It is an integrated modeling tool that can be used to track energy consumption, production and resource extraction in all sectors of an economy. 0000006758 00000 n 0000002720 00000 n •Examples: LEAP, MAED •Use …
LEAP is a transparent and user-friendly tool for energy and climate mitigation planning that has been adopted by thousands of organizations in nearly 190 countries worldwide, including government agencies, academics, nonprofits, consulting companies and energy utilities. 0000012070 00000 n Cost-benefit analysis capabilities (based on the social cost of resources) are also included, as are non-energy related effects (e.g., waste and refrigeration equipment emissions). Our model revolves around sourcing the highest quality products , keeping our technicians informed about the latest technological advances and completing jobs in a timely, cost-effective and energy-efficient manner.