Translation components API.

See the Weblate's Web API documentation for detailed description of the API.

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            "target": "<h1>Conceptos y definiciones</h1>\n<h2>Definición:</h2>\n<p>La cuota de energía renovable en el consumo final total es el porcentaje del consumo final de energía que procede de recursos renovables.</p>\n<h2>Conceptos:</h2>\n<p>El consumo de energía renovable incluye el consumo de energía derivada de: biocombustibles sólidos, hidroeléctrica, eólica, solar, biocombustibles líquidos, biogás, geotérmica, marina y residuos. El consumo total de energía final se calcula a partir de los balances y estadísticas nacionales como el consumo final total menos el uso no energético. </p>\n<p>Comentarios sobre recursos energéticos renovables específicos: </p>\n<ul>\n  <li>El consumo de energía solar incluye la energía solar fotovoltaica y la energía solar térmica. </li>\n  <li>El consumo de energía de los biocombustibles líquidos incluye la biogasolina, los biodiésel y otros biocombustibles líquidos. </li>\n  <li>El consumo de biocombustibles sólidos incluye la leña, los residuos animales, los residuos vegetales, el licor negro, el bagazo y el carbón vegetal.</li>\n  <li>La energía de los residuos abarca la energía procedente de los residuos municipales renovables.</li>\n</ul>",
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            "target": "<p><strong>URL: </strong></p>\n<p>iea.org; <a href=\"https://unstats.un.org/unsd/energystats/\">unstats.un.org/unsd/energystats</a></p>\n<p><strong>References: </strong></p>\n<p>IEA Energy Balances and Statistics </p>\n<p><a href=\"http://www.iea.org/statistics/\">http://www.iea.org/statistics/ </a></p>\n<p>UN Energy Statistics Database <a id=\"OLE_LINK2\"></a><a id=\"OLE_LINK1\"></a></p>\n<p> <a href=\"https://unstats.un.org/unsd/energystats/data/\">unstats.un.org/unsd/energystats/data</a> (description) and <a href=\"http://data.un.org/Explorer.aspx?d=EDATA\">data.un.org/Explorer.aspx?d=EDATA</a> (data)</p>\n<p>IEA SDG 7 webpage: <a href=\"file:///C:\\Users\\leonardo.souza\\Documents\\Leo\\Energy\\Sustainable%20Development\\SDG%20Indicators\\IEA%20coordination\\iea.org\\reports\\sdg7-data-and-projections\">iea.org/reports/sdg7-data-and-projections</a></p>\n<p>United Nations. 2018. &#x201C;International Recommendations for Energy Statistics&#x201D;. <a href=\"https://unstats.un.org/unsd/energystats/methodology/ires\">unstats.un.org/unsd/energystats/methodology/ires</a></p>\n<p>International Energy Agency (IEA), International Renewable Energy Agency (IRENA), United Nations Statistics Division (UNSD), the World Bank, World Health Organization (WHO). 2019. &#x201C;Tracking SDG7: The Energy Progress Report 2019&#x201D;. <a href=\"https://trackingsdg7.esmap.org/\">trackingsdg7.esmap.org/</a> </p>\n<p>International Energy Agency (IEA), International Renewable Energy Agency (IRENA), United Nations Statistics Division (UNSD), the World Bank, World Health Organization (WHO). 2018. &#x201C;Tracking SDG7: The Energy Progress Report 2018&#x201D;. <a href=\"https://trackingsdg7.esmap.org/\">trackingsdg7.esmap.org/</a></p>\n<p>International Energy Agency (IEA) and the World Bank. 2017. &#x201C;Global Tracking Framework 2017&#x2014;Progress toward Sustainable Energy&#x201D;. World Bank, Washington, DC. License: Creative Commons Attribution CC BY 3.0 IGO. <a href=\"https://www.seforall.org/sites/default/files/eegp17-01_gtf_full_report_final_for_web_posting_0402.pdf\">seforall.org/sites/default/files/eegp17-01_gtf_full_report_final_for_web_posting_0402.pdf</a></p>\n<p>International Energy Agency (IEA) and the World Bank. 2015. &#x201C;Global Tracking Framework 2015&#x2014;Progress Toward Sustainable Energy&#x201D;, World Bank, Washington, DC. Doi: 10.1596/978-1-4648 -0690-2 License: Creative Commons Attribution CC BY 3.0 IGO. <a href=\"http://seforall.org/sites/default/files/GTF-2105-Full-Report.pdf\">seforall.org/sites/default/files/GTF-2105-Full-Report.pdf</a></p>\n<p>International Energy Agency (IEA) and the World Bank. 2013. &#x201C;Global Tracking Framework 2013&#x201D;. <a href=\"https://webstore.iea.org/global-tracking-framework-2013\">webstore.iea.org/global-tracking-framework-2013</a></p>\n<p>IRENA Renewable Energy Database </p>\n<p><a href=\"https://www.irena.org/statistics\">https://www.irena.org/statistics</a>.</p>\n<p>United Nations. 2016. &#x201C;Energy Statistics Compilers Manual&#x201D; (whitecover)</p>\n<p>unstats.un.org/unsd/energystats/methodology/escm/</p>",
            "old": "<h1>References</h1>\n<h2>URL: </h2>\n<p><a href=\"http://www.iea.org\">www.iea.org</a></p>\n<p><a href=\"https://unstats.un.org/unsd/energystats/\">unstats.un.org/unsd/energystats</a></p>\n<h2>References: </h2>\n<p>IEA Energy Balances and Statistics </p>\n<p><a href=\"file:///C:\\Users\\leonardo.souza\\AppData\\Local\\Microsoft\\Windows\\INetCache\\Content.Outlook\\6GFD9MJP\\www.iea.org\\statistics\\\">http://www.iea.org/statistics/ </a></p>\n<p>UN Energy Statistics Database <a id=\"OLE_LINK1\"></a><a id=\"OLE_LINK2\"></a></p>\n<p><a href=\"https://unstats.un.org/unsd/energystats/data/\">unstats.un.org/unsd/energystats/data</a> (description) and <a href=\"file:///C:\\Users\\leonardo.souza\\AppData\\Local\\Microsoft\\Windows\\INetCache\\Content.Outlook\\6GFD9MJP\\data.un.org\\Explorer.aspx%3fd=EDATA\">data.un.org/Explorer.aspx?d=EDATA</a> (data)</p>\n<p>IEA SDG 7 webpage: <a href=\"http://www.iea.org/sdg\">http://www.iea.org/sdg</a></p>\n<p>International Recommendations for Energy Statistics (IRES) <a href=\"https://unstats.un.org/unsd/energystats/methodology/ires\">unstats.un.org/unsd/energystats/methodology/ires</a></p>\n<p>International Energy Agency (IEA), International Renewable Energy Agency (IRENA), United Nations Statistics Division (UNSD), the World Bank, World Health Organization (WHO). 2019. &#x201C;Tracking SDG7: The Energy Progress Report 2019&#x201D;. <a href=\"file:///C:\\Users\\leonardo.souza\\AppData\\Local\\Microsoft\\Windows\\INetCache\\Content.Outlook\\6GFD9MJP\\trackingsdg7.esmap.org\\\">trackingsdg7.esmap.org/</a> </p>\n<p>International Energy Agency (IEA), International Renewable Energy Agency (IRENA), United Nations Statistics Division (UNSD), the World Bank, World Health Organization (WHO). 2018. &#x201C;Tracking SDG7: The Energy Progress Report 2018&#x201D;. <a href=\"file:///C:\\Users\\leonardo.souza\\AppData\\Local\\Microsoft\\Windows\\INetCache\\Content.Outlook\\6GFD9MJP\\trackingsdg7.esmap.org\\\">trackingsdg7.esmap.org/</a> </p>\n<p>International Energy Agency (IEA) and the World Bank. 2017. &#x201C;Global Tracking Framework 2017&#x2014;Progress toward Sustainable Energy&#x201D;. World Bank, Washington, DC. License: Creative Commons Attribution CC BY 3.0 IGO</p>\n<p>International Energy Agency (IEA) and the World Bank. 2015. &#x201C;Global Tracking Framework 2015&#x2014;Progress Toward Sustainable Energy&#x201D;, World Bank, Washington, DC. Doi: 10.1596/978-1-4648 -0690-2 License: Creative Commons Attribution CC BY 3.0 IGO</p>\n<p>International Energy Agency (IEA) and the World Bank. 2013. &#x201C;Global Tracking Framework 2013&#x201D;</p>\n<p>IRENA Renewable Energy Database <a href=\"http://resourceirena.irena.org/gateway/dashboard\">http://resourceirena.irena.org/gateway/dashboard</a></p>",
            "details": {},
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            "user": null,
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            "timestamp": "2021-09-24T22:59:09.141766+02:00",
            "action": 30,
            "target": "<p>Data availability:</p>\n<p>Between the various existing data sources, primarily the IEA World Energy Balances and the UN Energy Statistics Database, annual total and renewable energy consumption for every country and area can be collected. The Tracking SDG7: The Energy Progress Report (formerly <em>Sustainable Energy for All Global Tracking Framework</em>) is reporting this indicator at a global level between 1990 and 2030. </p>\n<p>Time series:</p>\n<p>2000 &#x2013; present</p>\n<p>Disaggregation:</p>\n<p>Disaggregation of the data on consumption of renewable energy, e.g. by resource and end-use sector, could provide insights into other dimensions of the goal, such as affordability and reliability. For solar energy, it may also be of interest to disaggregate between on grid and off-grid capacity.</p>",
            "old": "<h1>Data availability</h1>\n<h2>Description:</h2>\n<p>Between the various existing data sources, primarily the IEA Energy Balances and the UN Energy Statistics Database, annual total and renewable energy consumption for every country and area can be collected. The <em>Tracking SDG7: The Energy Progress Report</em> (formerly <em>Sustainable Energy for All Global Tracking Framework</em>) is reporting this indicator at a global level between 2010 and 2030. </p>\n<h2>Time series:</h2>\n<p>2000 &#x2013; present </p>\n<h2>Disaggregation:</h2>\n<p>Disaggregation of the data on consumption of renewable energy, e.g. by resource and end-use sector, could provide insights into other dimensions of the goal, such as affordability and reliability. For solar energy, it may also be of interest to disaggregate between on grid and off-grid capacity. </p>",
            "details": {},
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            "translation": "https://hosted.weblate.org/api/translations/sdg-metadata/7-2-1/ru/?format=api",
            "user": null,
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            "timestamp": "2021-09-24T22:59:09.096226+02:00",
            "action": 30,
            "target": "<p>Aggregates are calculated, whether by region or global, using final energy consumption as weights.</p>",
            "old": "<h2>Regional aggregates:</h2>\n<p>Aggregates are calculated, whether by region or global, using final energy consumption as weights. </p>",
            "details": {},
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        {
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            "component": "https://hosted.weblate.org/api/components/sdg-metadata/7-2-1/?format=api",
            "translation": "https://hosted.weblate.org/api/translations/sdg-metadata/7-2-1/ru/?format=api",
            "user": null,
            "author": null,
            "timestamp": "2021-09-24T22:59:09.030132+02:00",
            "action": 30,
            "target": "<p>This indicator is based on the development of comprehensive energy statistics across supply and demand for all energy sources &#x2013; statistics used to produce the energy balance. Internationally agreed methodologies for energy statistics are described in the &#x201C;International Recommendations for Energy Statistics&#x201D; (IRES), adopted by the UN Statistical Commission, available at: <a href=\"https://unstats.un.org/unsd/energystats/methodology/ires\">unstats.un.org/unsd/energystats/methodology/ires</a>.</p>\n<p>Once an energy balance is developed, the indicator can be calculated by dividing final energy consumption from all renewable sources by total final energy consumption. Renewable energy consumption is derived as the sum of direct final consumption of renewable sources plus the components of electricity and heat consumption estimated to be derived from renewable sources based on generation shares. For instance, if total final consumption is 150 TJ for biogas energy, while total final consumption of electricity is 400 TJ and heat 100 TJ, and the share of biogas is 10 percent in electricity output and 5 percent in heat output, the total reported number for biogas consumption will be 195 TJ (150 TJ+400TJ*10%+100TJ*5%). The Global Tracking Framework Report (IEA and World Bank, 2013) provides more details on the suggested methodology for defining and measuring renewable energy (Chapter 4, Section 1, page 201-202). </p>",
            "old": "<h1>Methodology</h1>\n<h2>Computation method:</h2>\n<p>This indicator is based on the development of comprehensive energy statistics across supply and demand for all energy sources &#x2013; statistics used to produce a national energy balance. Internationally agreed methodologies for energy statistics are described in the &#x201C;International Recommendations for Energy Statistics&#x201D; (IRES), adopted by the UN Statistical Commission, available at: <a href=\"file:///C:\\Users\\leonardo.souza\\AppData\\Local\\Microsoft\\Windows\\INetCache\\Content.Outlook\\6GFD9MJP\\unstats.un.org\\unsd\\energystats\\methodology\\ires\">unstats.un.org/unsd/energystats/methodology/ires</a>.</p>\n<p>Once a national energy balance is developed, the indicator can be calculated by dividing final energy consumption from all renewable sources by total final energy consumption. Renewable energy consumption is derived from three tables of the IEA world energy statistics and balances: total final consumption, electricity output and heat output. All volumes reported in the total final consumption table are taken as reported. Since volumes for electricity and heat in the final consumption table are not broken down by technology, electricity and heat output tables are used instead to break down final consumption of electricity and heat by technology. The allocation by technology is done by deriving the share of technology in electricity and heat output tables and multiplying that share by final energy consumption of electricity and heat, respectively. For instance, if total final consumption table reports 150 TJ for biogas energy, while total final consumption of electricity is 400 TJ and heat 100 TJ, and the share of biogas in total electricity output is 10 percent and 5 percent in heat, the total reported number for biogas consumption will be 195 TJ (150 TJ+400TJ*10%+100TJ*5%). The Global Tracking Framework Report (IEA and World Bank, 2013) provides more details on the suggested methodology for defining and measuring renewable energy (Chapter 4, Section 1, page 201-202). UNSD follows the same methodology to compute the indicators, though information may come from different tables.</p>",
            "details": {},
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            "translation": "https://hosted.weblate.org/api/translations/sdg-metadata/7-2-1/ru/?format=api",
            "user": null,
            "author": null,
            "timestamp": "2021-09-24T22:59:09.009519+02:00",
            "action": 30,
            "target": "<ul>\n  <li>A limitation with existing renewable energy statistics is that they are not able to distinguish whether renewable energy is being sustainably produced. For example, a substantial share of today&#x2019;s renewable energy consumption comes from the use of wood and charcoal by households in the developing world, which sometimes may be associated with unsustainable forestry practices. There are efforts underway to improve the ability to measure the sustainability of bio-energy, although this remains a significant challenge. </li>\n  <li>Off-grid renewables data are limited and not sufficiently captured in national and international energy statistics. </li>\n  <li>The method of allocation of renewable energy consumption from electricity and heat output assumes that the share of transmission and distribution losses are the same among all technologies. However, this is not always true; for example when renewables are usually located in more remote areas and may incur larger losses. </li>\n  <li>Likewise, imports and exports of electricity and heat are assumed to follow the renewable share of electricity and heat generation, respectively. This is a simplification that in many cases will not affect the indicator too much, but that might do so in some cases, for example, when a country only generates electricity from fossil fuels but imports a great share of the electricity it uses from a neighboring country&#x2019;s hydroelectric power plant. </li>\n  <li>Methodological challenges associated with defining and measuring renewable energy are more fully described in the Global Tracking Framework (IEA and World Bank, 2013) Chapter 4, Section 1, pages 194-200. Data for traditional use of solid biofuels are generally scarce globally, and developing capacity in tracking such energy use, including developing national-level surveys, is essential for sound global energy tracking.</li>\n</ul>",
            "old": "<h2>Comments and limitations:</h2>\n<ul>\n  <li>A limitation with existing renewable energy statistics is that they are not able to distinguish whether renewable energy is being sustainably produced. For example, a substantial share of today&#x2019;s renewable energy consumption comes from the use of wood and charcoal by households in the developing world, which sometimes may be associated with unsustainable forestry practices. There are efforts underway to improve the ability to measure the sustainability of bio-energy, although this remains a significant challenge. </li>\n  <li>Off-grid renewables data are limited and not sufficiently captured in the energy statistics </li>\n  <li>The method of allocation of renewable energy consumption from electricity and heat output assumes that the share of transmission and distribution losses are the same between all technologies. However, this is not always true because renewables are usually located in more remote areas from consumption centers and may incur larger losses. </li>\n  <li>Likewise, imports and exports of electricity and heat are assumed to follow the share of renewability of electricity and heat generation, respectively. This is a simplification that in many cases will not affect the indicator too much, but that might do so in some cases, for example, when a country only generates electricity from fossil fuels but imports a great share of the electricity it uses from a neighboring country&#x2019;s hydroelectric power plant. </li>\n  <li>Methodological challenges associated with defining and measuring renewable energy are more fully described in the Global Tracking Framework (IEA and World Bank, 2013) Chapter 4, Section 1, pages 194-200. Data for traditional use of solid biofuels are generally scarce globally, and developing capacity in tracking such energy use, including developing national level surveys, is essential for sound global energy tracking.</li>\n</ul>",
            "details": {},
            "id": 12928262,
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            "unit": "https://hosted.weblate.org/api/units/29680846/?format=api",
            "component": "https://hosted.weblate.org/api/components/sdg-metadata/7-2-1/?format=api",
            "translation": "https://hosted.weblate.org/api/translations/sdg-metadata/7-2-1/ru/?format=api",
            "user": null,
            "author": null,
            "timestamp": "2021-09-24T22:59:08.955565+02:00",
            "action": 30,
            "target": "<p>The target &#x201C;By 2030, increase substantially the share of renewable energy in the global energy mix&#x201D; impacts all three dimensions of sustainable development. Renewable energy technologies represent a major element in strategies for greening economies everywhere in the world and for tackling the critical global problem of climate change. A number of definitions of renewable energy exist; what they have in common is highlighting as renewable all forms of energy that their consumption does not deplete their availability in the future. These include solar, wind, ocean, hydropower, geothermal sources, and bioenergy (in the case of bioenergy, which can be depleted, sources of bioenergy can be replaced within a short to medium-term frame). Importantly, this indicator focuses on the amount of renewable energy actually consumed rather than the capacity for renewable energy production, which cannot always be fully utilized. By focusing on consumption by the end user, it avoids the distortions caused by the fact that conventional energy sources are subject to significant energy losses along the production chain.</p>",
            "old": "<h2>Rationale:</h2>\n<p>The target &#x201C;By 2030, increase substantially the share of renewable energy in the global energy mix&#x201D; impacts all three dimensions of sustainable development. Renewable energy technologies represent a major element in strategies for greening economies everywhere in the world and for tackling the critical global problem of climate change. A number of definitions of renewable energy exist; what they have in common is highlighting as renewable all forms of energy that their consumption does not deplete their availability in the future. These include solar, wind, ocean, hydropower, geothermal resources, and bioenergy (in the case of bioenergy, which can be depleted, sources of bioenergy can be replaced within a short to medium-term frame). Importantly, this indicator focuses on the amount of renewable energy actually consumed rather than the capacity for renewable energy production, which cannot always be fully utilized. By focusing on consumption by the end user, it avoids the distortions caused by the fact that conventional energy sources are subject to significant energy losses along the production chain.</p>",
            "details": {},
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            "user": null,
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            "timestamp": "2021-09-24T22:59:08.918816+02:00",
            "action": 30,
            "target": "<p>The International Energy Agency (IEA) and the United Nations Statistics Division (UNSD) </p>\n<p>The IEA and UNSD are the primary compilers of energy statistics across countries and develop internationally comparable energy balances based on internationally agreed methodologies. Aggregates are based on analysis merging of IEA and UNSD data.</p>",
            "old": "<h1>Data compilers</h1>\n<h2>Name:</h2>\n<p>The International Energy Agency (IEA) and the United Nations Statistics Division (UNSD) </p>\n<h2>Description:</h2>\n<p>The IEA and UNSD are the primary compilers of national energy statistics and develop internationally comparable energy balances based on internationally agreed methodologies. Aggregates are based on analysis merging of IEA and UNSD data. </p>",
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