Ramat HaKovesh, Central District, Israel presents a very good location for year-round solar energy generation, though with notable seasonal variations that are typical for its Northern Sub-Tropical climate zone.
Seasonal Solar Performance
The solar energy output at this location shows strong seasonal patterns. Summer delivers the highest production at 8.47kWh per day per kW of installed solar capacity, making it the peak generation season. Spring follows as the second-best period with 7.18kWh per day per kW, offering excellent solar conditions as daylight hours increase and temperatures remain moderate. Autumn production drops to 5.25kWh per day per kW as the sun angle decreases and weather patterns begin to shift. Winter represents the lowest production period at 3.46kWh per day per kW, though this is still a respectable output for the season and demonstrates that solar remains viable year-round.Optimal Panel Configuration
For fixed panel installations at Ramat HaKovesh, Central District, the ideal tilt angle is 27 degrees facing South to maximize total annual energy production. This angle is calculated by analyzing daily solar elevation angles throughout the year and weighting them according to solar irradiance potential, accounting for Earth's elliptical orbit around the sun.Environmental and Weather Challenges
Several local factors could potentially impact solar energy production at this Israeli location:- Desert dust and sand accumulation on panels, particularly during dry periods and sandstorms from nearby arid regions
- High summer temperatures that can reduce panel efficiency despite abundant sunlight
- Occasional heavy rainfall during winter months that, while beneficial for cleaning panels, may temporarily reduce output
- Potential for haze or atmospheric particles that can scatter sunlight
Preventative Measures for Maximum Production
To combat these challenges and ensure optimal energy generation, several installation strategies are recommended: Regular cleaning schedules become essential, particularly during dusty periods. Installing automated cleaning systems or planning for frequent manual cleaning can maintain panel efficiency. Choosing panels with anti-soiling coatings can help reduce dust accumulation between cleanings. Proper ventilation around panels helps combat the efficiency losses from high temperatures. Mounting systems that allow air circulation beneath panels can keep operating temperatures lower during intense summer heat. Quality inverters with temperature compensation and monitoring systems help maintain performance across varying weather conditions. Installing monitoring equipment allows for quick identification of any weather-related performance issues. Overall, despite these environmental considerations, Ramat HaKovesh offers excellent solar potential with strong summer and spring production that more than compensates for lower winter output, making it a highly suitable location for solar PV installations with proper maintenance protocols.Note: The Northern Sub Tropics extend from 23.5° latitude North up to 35° latitude.
So far, we have conducted calculations to evaluate the solar photovoltaic (PV) potential in 100 locations across Israel. This analysis provides insights into each city/location's potential for harnessing solar energy through PV installations.
Link: Solar PV potential in Israel by location
Solar output per kW of installed solar PV by season in Ramat HaKovesh
Seasonal solar PV output for Latitude: 32.2136, Longitude: 34.938 (Ramat HaKovesh, Israel), based on our analysis of 8760 hourly intervals of solar and meteorological data (one whole year) retrieved for that set of coordinates/location from NASA POWER (The Prediction of Worldwide Energy Resources) API:
 
Ideally tilt fixed solar panels 27° South in Ramat HaKovesh, Israel
To maximize your solar PV system's energy output in Ramat HaKovesh, Israel (Lat/Long 32.2136, 34.938) throughout the year, you should tilt your panels at an angle of 27° South for fixed panel installations.
As the Earth revolves around the Sun each year, the maximum angle of elevation of the Sun varies by +/- 23.45 degrees from its equinox elevation angle for a particular latitude. Finding the exact optimal angle to maximise solar PV production throughout the year can be challenging, but with careful consideration of historical solar energy and meteorological data for a certain location, it can be done precisely.
We use our own calculation, which incorporates NASA solar and meteorological data for the exact Lat/Long coordinates, to determine the ideal tilt angle of a solar panel that will yield maximum annual solar output. We calculate the optimal angle for each day of the year, taking into account its contribution to the yearly total PV potential at that specific location.
Seasonally adjusted solar panel tilt angles for Ramat HaKovesh, Israel
If you can adjust the tilt angle of your solar PV panels, please refer to the seasonal tilt angles below for optimal solar energy production in Ramat HaKovesh, Israel. As mentioned earlier, for fixed-panel solar PV installations, it is optimal to maintain a 27° South tilt angle throughout the year.
| Overall Best Summer Angle | Overall Best Autumn Angle | Overall Best Winter Angle | Overall Best Spring Angle |
|---|---|---|---|
| 16° South in Summer | 37° South in Autumn | 47° South in Winter | 24° South in Spring |
Our recommendations take into account more than just latitude and Earth's position in its elliptical orbit around the Sun. We also incorporate historical solar and meteorological data from NASA's Prediction of Worldwide Energy Resources (POWER) API to assign a weight to each ideal angle for each day based on its historical contribution to overall solar PV potential during a specific season.
This approach allows us to provide much more accurate recommendations than relying solely on latitude, as it considers unique weather conditions in different locations sharing the same latitude worldwide.
Calculate solar panel row spacing in Ramat HaKovesh, Israel
We've added a feature to calculate minimum solar panel row spacing by location. Enter your panel size and orientation below to get the minimum spacing in Ramat HaKovesh, Israel.
Our calculation method
- Solar Position:
We determine the Sun's position on the Winter solstice using the location's latitude and solar declination. - Shadow Projection:
We calculate the shadow length cast by panels using trigonometry, considering panel tilt and the Sun's elevation angle. - Minimum Spacing:
We add the shadow length to the horizontal space occupied by tilted panels.
This approach ensures maximum space efficiency while avoiding shading during critical times, as the Winter solstice represents the worst-case scenario for shadow length.
Topography for solar PV around Ramat HaKovesh, Israel
Topographical Features of Ramat HaKovesh
Ramat HaKovesh sits in the central coastal plain of Israel, positioned between the Mediterranean Sea to the west and the foothills of the Samarian mountains to the east. This region is characterized by relatively flat to gently rolling terrain, with elevations typically ranging from 50 to 150 meters above sea level. The landscape consists primarily of fertile agricultural land that has been cultivated for decades, creating an organized patchwork of fields and farming communities. The area experiences a Mediterranean climate with distinct wet and dry seasons. The topography includes numerous small wadis and seasonal drainage channels that flow westward toward the Mediterranean during the rainy winter months. These natural features create subtle undulations in an otherwise predominantly flat landscape, with gentle slopes that rarely exceed 5-10 degrees.Geological and Soil Characteristics
The underlying geology consists mainly of sedimentary formations typical of Israel's coastal plain, including sandstone, limestone, and alluvial deposits. The soils are generally well-drained and range from sandy loam to clay, having been shaped by centuries of agricultural use. This stable geological foundation provides excellent conditions for infrastructure development, with minimal concerns about ground subsidence or geological instability. The region features scattered groves of citrus trees, olive orchards, and various field crops, interspersed with small rural communities and agricultural support facilities. The existing agricultural infrastructure includes irrigation systems, farm roads, and electrical connections that could potentially support alternative land uses.Optimal Areas for Large-Scale Solar Development
The flat to gently sloping terrain throughout the Ramat HaKovesh area makes most of the surrounding region well-suited for large-scale solar photovoltaic installations. The most favorable locations would be the open agricultural fields that stretch to the south and east of the settlement, where large contiguous areas of relatively level ground are available. Areas with southern-facing slopes would be particularly advantageous, as they naturally optimize panel orientation for maximum solar exposure throughout the day. The gentle topography eliminates the need for extensive land grading or terracing, significantly reducing site preparation costs and environmental impact. The proximity to existing electrical infrastructure and road networks makes the surrounding agricultural areas highly accessible for solar development. Many of these fields are already connected to the regional power grid through agricultural connections, providing potential tie-in points for solar installations.Infrastructure and Access Considerations
The region benefits from well-developed transportation networks, with several major roads providing access to potential solar sites. The flat terrain allows for easy movement of construction equipment and materials, while the stable soil conditions support heavy machinery operations without significant ground preparation. Water availability for panel cleaning and maintenance operations is supported by the existing agricultural irrigation infrastructure, though the relatively low rainfall during summer months means that dust accumulation could be a consideration for solar panel maintenance. The surrounding areas to the west and southwest offer particularly promising opportunities, as these locations combine optimal topographical conditions with good access to transmission infrastructure and minimal conflicts with existing development patterns.Israel solar PV Stats as a country
Israel ranks 29th in the world for cumulative solar PV capacity, with 2,555 total MW's of solar PV installed. This means that 4.70% of Israel's total energy as a country comes from solar PV (that's 17th in the world). Each year Israel is generating 277 Watts from solar PV per capita (Israel ranks 16th in the world for solar PV Watts generated per capita). [source]
Are there incentives for businesses to install solar in Israel?
Yes, there are several incentives for businesses wanting to install solar energy in Israel. The Israeli government offers a variety of financial incentives and subsidies for businesses that install solar energy systems. These include grants, tax credits, and low-interest loans. Additionally, the government has implemented a feed-in tariff program which guarantees a fixed price for electricity generated from renewable sources such as solar power. This helps to ensure that businesses can recoup their investment in solar energy over time.
Do you have more up to date information than this on incentives towards solar PV projects in Israel? Please reach out to us and help us keep this information current. Thanks!
Citation Guide
Article Details for Citation
Author: Aaron Robinson
Publisher: profileSOLAR.com
First Published: Tuesday 8th of July 2025
Last Updated: Wednesday 6th of August 2025
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Compare this location to others worldwide for solar PV potential
The solar PV analyses available on our website, including this one, are offered as a free service to the global community. Our aim is to provide education and aid informed decision-making regarding solar PV installations.
However, please note that these analyses are general guidance and may not meet specific project requirements. For in-depth, tailored forecasts and analysis crucial for feasibility studies or when pursuing maximum ROI from your solar projects, feel free to contact us; we offer comprehensive consulting services expressly for this purpose.
Helping you assess viability of solar PV for your site
Calculate Your Optimal Solar Panel Tilt Angle: A Comprehensive Guide
Enhance your solar panel's performance with our in-depth guide. Determine the best tilt angle using hard data, debunk common misunderstandings, and gain insight into how your specific location affects solar energy production.




