{"id":10260,"date":"2019-04-13T00:45:00","date_gmt":"2019-04-12T22:45:00","guid":{"rendered":"https:\/\/www.sonnenseite.com\/science\/agrophotovoltaics-high-harvesting-yield-in-hot-summer-of-2018.html"},"modified":"2019-04-13T00:45:00","modified_gmt":"2019-04-12T22:45:00","slug":"agrophotovoltaics-high-harvesting-yield-in-hot-summer-of-2018","status":"publish","type":"post","link":"https:\/\/www.sonnenseite.com\/en\/science\/agrophotovoltaics-high-harvesting-yield-in-hot-summer-of-2018\/","title":{"rendered":"Agrophotovoltaics: High Harvesting Yield in Hot Summer of 2018"},"content":{"rendered":"<p>The performance of the agrophotovoltaic system in the very hot summer of 2018 greatly exceeded this value. The partial shading underneath the photovoltaic modules improved the agricultural yield, and the sun-rich summer increased the solar electricity production.<\/p>\n<p> <!--more--> <\/p>\n<p>Over the past two years, the dual use  of land for the harvesting of solar electricity and agriculture has been  tested in the joint project &ldquo;Agrophotovoltaics &ndash; Resource Efficient  Land Use (APV-RESOLA).&rdquo; On one-third of a hectare arable land near Lake  Constance in Germany, photovoltaic modules with a total power output of  194 kilowatt are installed on a five meter high structure. The results  from 2017 showed a land use efficiency of 160 percent, as confirmed by  the project consortium under the direction of the Fraunhofer Institute  for Solar Energy Systems ISE. The performance of the agrophotovoltaic  system in the very hot summer of 2018 greatly exceeded this value. The  partial shading underneath the photovoltaic modules improved the  agricultural yield, and the sun-rich summer increased the solar  electricity production.<\/p>\n<p>In 2018, the farmers of Heggelbach, a Demeter farm  community, successfully brought in their second annual harvest from the  agrophotovoltaic system. Four types of crops were grown: winter wheat,  potatoes, clover and celery. In 2018, the yields from three of the four  crops grown under the agrophotovoltaic system were greater than the  reference yield. The crop yields for celery profited the most by the  system, with a gain of 12 percent compared to the reference. Winter  wheat produced a gain of plus 3 percent and clover a minus of 8 percent.  &ldquo;Based on the 2018 potato yield, the land use efficiency rose to 186  percent per hectare with the agrophotovoltaic system,&rdquo; says Stephan  Schindele of Fraunhofer ISE.<\/p>\n<p><img loading=\"lazy\" decoding=\"async\" src=\"upload\/Medien\/Pressebilder_2019\/FraunhoferISE_kartoffeln_dt01.jpg\" width=\"800\" height=\"248\" \/><\/p>\n<p><img loading=\"lazy\" decoding=\"async\" src=\"upload\/Medien\/Pressebilder_2019\/FraunhoferISE_kartoffeln_dt02.jpg\" width=\"800\" height=\"301\" \/><br \/>&copy; ise.fraunhofer.de \/ HappyPictures\/shutterstock.com \/&nbsp;Through the combined land use, the land use efficiency with the APV system is 186 percent.<\/p>\n<p>Aside from the portfolio development, crop yield and quality,  scientists of the University of Hohenheim collected data on the climatic  conditions underneath the APV system and also from the neighboring  reference field. The solar irradiation underneath the APV system was  about 30 percent less than the reference field. In addition to the  amount of solar irradiation, the APV system affects the distribution of  precipitation and the soil temperature. In spring and summer, the soil  temperature under the APV system was less than on the reference field;  the air temperature was identical. In the hot, dry summer of 2018, the  soil moisture in the wheat crop was higher than the reference field,  while in the winter months, it was less, as for the other crops. &ldquo;We can  assume that the shade under the semi-transparent solar modules enabled  the plants to better endure the hot and dry conditions of 2018,&rdquo; says  the agricultural scientist Andrea Ehmann. &ldquo;This result shows the  potential for APV in arid regions, but also the necessity to carry out  further trials in other climate regions and with other types of crops,&rdquo;  adds her colleague Axel Weselek.<\/p>\n<p><strong>Synergy Effect for Agriculture<\/strong><\/p>\n<p>In 2018, the solar irradiation totaled 1319.7 kilowatt hours per  square meter, an increase of 8.4 percent compared to the previous year.  The energy output of the APV array rose by two percent to 249,857 kWh,  corresponding to an extraordinary good specific yield value of 1285.3  kWh\/kWp. The electricity production costs of an APV system is today  competitive with a small PV rooftop system. Researchers anticipate  further cost reductions due to economies of scale and learning effects.<\/p>\n<p>If the electricity is stored and used on site, as at the farm  community Heggelbach, additional sources of income arise due to synergy  effects. &nbsp;For one, the use of electric vehicles in agriculture is a  rising. Two years ago, the agricultural machinery manufacturers Fendt  and John Deere introduced the first fully battery-electric operated  tractors. &ldquo;When politics allow, agrophotovoltaics can provide the answer  to the &ldquo;food or fuel&rdquo; debate. From the technical point of view, farmers  can harvest both. Through the dual use of arable land, the main task of  food production is met. The additional solar electricity production  contributes to the expansion of electric mobility and serves to protect  the climate,&rdquo; says Stephan Schindele of Fraunhofer ISE.<\/p>\n<p><strong>Potential for Arid Regions<\/strong><\/p>\n<p>The results from the summer of 2018 demonstrate the enormous  potential of agrophotovoltaics for arid climate zones. Crops and  livestock can benefit from the shade given by the PV modules. Fraunhofer  ISE is already working on several projects to transfer the technology  to threshold and developing countries as well as for new applications. A  pilot study that Fraunhofer ISE carried out for the Indian state of  Maharashtra showed that shading effects and less evaporation result in  up to 40 percent higher yields for tomatoes and cotton crops. &ldquo;In  certain cases, we calculate nearly double the land use efficiency for  the region,&rdquo; says Max Trommsdorff of Fraunhofer ISE, project leader of  the study. In a project within the EU Program Horizon 2020, the  Fraunhofer researchers are working together with partners from Algeria  to test the effects of APV systems on the water balance. Besides less  evaporation and lower temperatures, harvesting the rain water with PV  modules also plays a role.&nbsp;<\/p>\n<p>The APV-RESOLA project was financed by the German Federal Ministry of  Education and Research and FONA (Research for Sustainable Development).  The partners of the joint project are: Fraunhofer ISE, BayWa r.e. Solar  Projects GmbH, Electrizit&auml;tswerke Sch&ouml;nau, Demeter farm cooperative  Heggelbach, Karlsruhe Institute of Technology, Regional Association of  Bodensee-Upper Swabia, and the University of Hohenheim. Further  information can be found at the website: <a class=\" external\" href=\"http:\/\/www.agrophotovoltaik.de\/\" target=\"_blank\" rel=\"noopener noreferrer\">www.agrophotovoltaik.de<\/a><\/p>\n<p><strong>Closing Conference APV-RESOLA on May 6, 2019 in Berlin<\/strong><\/p>\n<p>The results of the APV-RESOLA project and other projects in Germany  will be presented and discussed with representatives from politics, the  ministries and organizations. The chances and problems by the local  implementation of PV and APV as well as the market entry of APV in  Germany will be addressed.&nbsp;<span class=\"linklist\"><a href=\"https:\/\/www.ise.fraunhofer.de\/de\/veranstaltungen\/apv-resola-abschlusskonferenz.html\">Mehr Infos zur Konferenz<\/a><\/span><\/p>\n<h5 class=\"green\">Source<\/h5>\n<p><a href=\"https:\/\/www.ise.fraunhofer.de\/en\/press-media\/press-releases\/2019\/agrophotovoltaics-hight-harvesting-yield-in-hot-summer-of-2018.html\" target=\"_blank\" rel=\"noopener noreferrer\">Fraunhofer ISE 2019<\/a><\/p>\n<div class=\"shariff shariff-align-flex-start shariff-widget-align-flex-start\"><div class=\"ShariffHeadline\">Diese Meldung teilen<\/div><ul class=\"shariff-buttons theme-round orientation-horizontal buttonsize-medium\"><li class=\"shariff-button facebook shariff-nocustomcolor\" style=\"background-color:#4273c8;border-radius:1%\"><a href=\"https:\/\/www.facebook.com\/sharer\/sharer.php?u=https%3A%2F%2Fwww.sonnenseite.com%2Fen%2Fscience%2Fagrophotovoltaics-high-harvesting-yield-in-hot-summer-of-2018%2F\" title=\"Bei Facebook teilen\" aria-label=\"Bei Facebook teilen\" role=\"button\" rel=\"nofollow\" class=\"shariff-link\" style=\";border-radius:1%; 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