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Keywords = frost-free season

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18 pages, 5151 KB  
Article
Spatial–Temporal Variations in Frost-Free Days During 1961–2023 in Qinghai Province, China
by Fan Li, Guoqian Chen, Mengfan Zhao, Fei Li, Yingcun Yan and Liangdong Yan
Atmosphere 2026, 17(8), 741; https://doi.org/10.3390/atmos17080741 - 30 Jul 2026
Viewed by 215
Abstract
Rational development and utilization of cli mate resources are essential for mitigating frost disasters, particularly in high-altitude regions. This study investigates the spatiotemporal characteristics of frost events in Qinghai Province to improve understanding of frost evolution under climate change. Daily minimum temperature data [...] Read more.
Rational development and utilization of cli mate resources are essential for mitigating frost disasters, particularly in high-altitude regions. This study investigates the spatiotemporal characteristics of frost events in Qinghai Province to improve understanding of frost evolution under climate change. Daily minimum temperature data from 51 meteorological stations from 1961 to 2023 were analyzed to determine the first frost date (FFD), last frost date (LFD), and frost-free period (FFP), along with their trends and influencing factors. Results show that the mean FFD, LFD, and FFP were 5 October, 14 May, and 144 days, respectively. Over the past six decades, LFD advanced, whereas FFD was delayed, leading to a marked extension of FFP, with trends of 2.08, 2.87, and 4.68 days per decade, respectively. These changes became more pronounced after the 1990s. Spatially, lower-altitude regions exhibited later FFD, earlier LFD, and longer FFP, whereas higher-altitude regions showed the opposite pattern. Correlation analysis indicates that frost characteristics are most strongly influenced by altitude, followed by latitude and longitude. Overall, climate warming has shortened the frost season and extended the growing period in Qinghai Province. These findings provide a scientific basis for optimizing agricultural zoning, adjusting cropping systems, and improving climate resilience in cold, high-altitude regions. Full article
(This article belongs to the Section Climatology)
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17 pages, 1394 KB  
Article
Evaluation and Selection of Spring Wheat Cultivars for Adaptation to the Wheat–Soybean Double-Cropping System
by Dong Deng, Yuning Huang, Weide Ge, Yingjie Wang, Yan Zhuang, Tao Li, Renfeng Xue and Ming Feng
Agronomy 2026, 16(9), 920; https://doi.org/10.3390/agronomy16090920 - 30 Apr 2026
Cited by 1 | Viewed by 583
Abstract
The wheat–soybean double-cropping system enables the continuous production of preceding and succeeding crops within the same growing season, providing an important approach for improving arable land-use efficiency, increasing output per unit area, and optimizing cropping structure. In Liaoning Province, where thermal resources and [...] Read more.
The wheat–soybean double-cropping system enables the continuous production of preceding and succeeding crops within the same growing season, providing an important approach for improving arable land-use efficiency, increasing output per unit area, and optimizing cropping structure. In Liaoning Province, where thermal resources and the frost-free period are relatively limited, this system places high requirements on the growth duration, yield stability, and succession compatibility of the preceding wheat crop with the succeeding soybean crop. To identify spring wheat cultivars suitable for this system, field trials were conducted from 2021 to 2023, using three representative ecological regions of Liaoning Province. Ten widely grown spring wheat cultivars were evaluated for major agronomic traits, grain quality, and disease resistance, and their stability and system adaptability were analyzed using a mixed linear model, GGE biplot analysis, and TOPSIS. The results showed clear differences among cultivars in growth duration, wheat yield, and succeeding soybean yield. Liaochun 33 and Liaochun 18 had relatively short growth durations of 78–84 days and 79–83 days, respectively, and showed favorable performance in wheat yield, succeeding soybean yield, and stability. Combined with grain quality, disease resistance, and TOPSIS-based comprehensive evaluation, Liaochun 33 showed the best overall performance, while Liaochun 18 also exhibited strong system adaptability. Overall, cultivar selection for the wheat–soybean double-cropping system in Liaoning Province should shift from single wheat-yield evaluation to overall system-benefit evaluation. Liaochun 33 and Liaochun 18 can be recommended as preferred spring wheat cultivars for this cropping system. Full article
(This article belongs to the Section Innovative Cropping Systems)
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16 pages, 2097 KB  
Article
Cold Climate Field Study of the Effect of Defrost Controls on the Integrated Performance of a Ductless Air-Source Heat Pump
by Jeffrey Munk, Tom Marsik, Dana Truffer-Moudra, Vanessa Stevens, Conor Dennehy, Jon Winkler and Robby Strunk
Energies 2026, 19(3), 733; https://doi.org/10.3390/en19030733 - 30 Jan 2026
Cited by 1 | Viewed by 894
Abstract
Residential heat pumps have advanced over the past decade to allow for operation at colder temperatures. However, the challenges of frost accumulation and defrosting the outdoor coil remain. The goal of this study was to evaluate the impact of the control algorithms that [...] Read more.
Residential heat pumps have advanced over the past decade to allow for operation at colder temperatures. However, the challenges of frost accumulation and defrosting the outdoor coil remain. The goal of this study was to evaluate the impact of the control algorithms that determine when a heat pump needs to defrost and when the base pan heater runs on the overall heating efficiency of the heat pump. In this study, which occurred during the 2023–2024 heating season, we measured the performance of a ductless air-source heat pump installed in Fairbanks, Alaska, USA. The heat pump was instrumented to measure the electrical input and the thermal output, as well as selected internal variables and indoor and outdoor environmental conditions. The heat pump was first operated with factory default control algorithms associated with the initiation of defrost and control of the base pan heater. These factory default algorithms focused on aggressively defrosting the outdoor coil and keeping the base pan ice-free. In the middle of the winter, these algorithms were changed to focus on reducing defrost cycles and increasing efficiency, while the heat pump continued to be operated and monitored. The results showed that significant increases in efficiency are possible by improving the defrost and base pan heater control algorithms. Full article
(This article belongs to the Section J: Thermal Management)
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28 pages, 14858 KB  
Article
Effects of Intercropping Long- and Short-Season Varieties on the Photosynthetic Characteristics and Yield Formation of Maize in High-Latitude Cold Regions
by Shanshan Xiao, Liwei Ming, Yifei Zhang, Zhongye Wang, Fengming Li, Tonghao Wang, Chunyu Zhang, Kejun Yang, Song Yu, Mukai Li, Shiqiang Yu, Junjun Hou, Jinyu An, Mingjia Guo, Xinjie Tian and Junhao Liu
Agronomy 2025, 15(11), 2505; https://doi.org/10.3390/agronomy15112505 - 28 Oct 2025
Cited by 1 | Viewed by 1015
Abstract
The high-latitude cold regions of northeastern China present scarce thermal resources, exhibit a short frost-free period, and lack high-yielding maize (Zea mays L.) varieties suitable for dense planting. These factors have long constrained the realization of maize yield potential under dense planting [...] Read more.
The high-latitude cold regions of northeastern China present scarce thermal resources, exhibit a short frost-free period, and lack high-yielding maize (Zea mays L.) varieties suitable for dense planting. These factors have long constrained the realization of maize yield potential under dense planting conditions. This study investigated the effects of intercropping maize varieties with different growth periods on the photosynthetic performance, yield formation, and interspecific competition. The long-season varieties Zhengdan958 (ZD958) and Xianyu335 (XY335), which are representative of the region, were intercropped with the shorter-season variety Yinongyu10 (YNY10), six intercropping row ratios (6:6, 4:4, 2:2, 1:1, 0:1, and 1:0) were set, and monoculture plots (0:1 and 1:0) were used as the controls. The results indicated that as the row ratio decreased in the intercropped plots, the leaf area index, relative leaf chlorophyll content, photosynthetic rate, stomatal conductance, and transpiration rate increased while the intercellular CO2 concentration gradually decreased compared with those in the monoculture plots. Simultaneously, dry matter accumulation, allocation, transport efficiency, 100-kernel weight, number of kernels per ear, and grain yield progressively increased, reaching maximum values at a 1:1 intercropping row ratio. Conversely, YNY10 in the intercropped plots exhibited opposite trends in these parameters. The land equivalent ratios for all intercropped row ratios exceeded 1. During the 2023–2024 growing season, the composite population grain yield was significantly higher (p < 0.05) at an intercropping row ratio of 1:1 for ZD958 (4.11–4.26%) and XY335 (3.54–3.65%) compared with the monoculture treatments, demonstrating the strong yield advantage of intercropping. Furthermore, in the intercropping systems, ZD958 and XY335 exhibited positive aggressivity and a competitive ratio greater than 1, thus showing stronger competitive ability than YNY10. Moreover, the increased grain yield of ZD958 and XY335 effectively compensated for the ecological disadvantages of YNY10, thereby leveraging the synergistic effects of close planting and intercropping patterns to promote improvements in maize composite population productivity. Full article
(This article belongs to the Section Farming Sustainability)
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20 pages, 4828 KB  
Article
Barley, Canola and Spring Wheat Yield Throughout the Canadian Prairies Under the Effect of Climate Change
by Mohammad Zare, David Sauchyn and Zahra Noorisameleh
Climate 2025, 13(9), 179; https://doi.org/10.3390/cli13090179 - 28 Aug 2025
Cited by 4 | Viewed by 3812
Abstract
Climate change is expected to have significant effects on crop yield in the Canadian Prairies. The objective of this study was to investigate these possible effects on spring wheat, barley and canola production using the Decision Support System for Agrotechnology Transfer (DSSAT) modelling [...] Read more.
Climate change is expected to have significant effects on crop yield in the Canadian Prairies. The objective of this study was to investigate these possible effects on spring wheat, barley and canola production using the Decision Support System for Agrotechnology Transfer (DSSAT) modelling platform. We applied 21 climate change scenarios from high-resolution (0.22°) regional simulations to three modules, DSSAT-CERES-Wheat, DSSAT-CERES-Barley and CSM-CROPGRO-Canola, using a historical baseline period (1985–2014) and three future periods: near (2015–2040), middle (2041–2070), and far (2071–2100). These simulations are part of CMIP6 (Coupled Model Intercomparison Project Phase 6) and have been processed using statistical downscaling and bias correction by the NASA Earth Exchange 26 Global Daily Downscaled Projections project, referred to as NEX-GDDP-CMIP6. The calibration and validation results surpassed the thresholds for a high level of accuracy. Simulated yield changes indicate that climate change has a positive effect on spring wheat and barley yields with median model increases of 7% and 11.6% in the near future, and 5.5% and 9.2% in the middle future, respectively. However, in the far future, barley production shows a modest increase of 4.4%, while spring wheat yields decline significantly by 17%. Conversely, simulated canola yields demonstrate a substantial decrease over time, with reductions of 25.9%, 46.3%, and 62.8% from the near to the far future, respectively. Agroclimatic indices, such as Number of Frost-Free Days (NFFD), Heating Degree-Days (HDD), Length of Growing Season (GSL), Crop Heat Units (CHU), and Effective Growing Degree Days (EGDD), exhibit significant correlations with spring wheat. Conversely, precipitation indices, such as very wet days and annual 5- and 10-day maximum precipitation, have a stronger correlation with canola yield changes when compared with temperature indices. The results provide key guidance for policymakers to design adaptation strategies and sustain regional food security and economic resilience, particularly for canola production, which is at significant risk under projected climate change scenarios across the Canadian Prairies. Full article
(This article belongs to the Section Climate and Environment)
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19 pages, 4916 KB  
Article
Sylleptic over Proleptic Type of Free Growth in Young Norway Spruce Plantations: Stem Quality, Tree Height and Phenology Considerations
by Darius Danusevičius, Simonas Šilingas and Gerda Šilingienė
Forests 2024, 15(11), 1965; https://doi.org/10.3390/f15111965 - 7 Nov 2024
Cited by 3 | Viewed by 1808
Abstract
It is crucial for northerly Norway spruce to understand how seasonal warming and site conditions influence the intensity of free growth and what the effects of free growth on stem quality and adaptedness are. We studied the intensity of sylleptic and proleptic free [...] Read more.
It is crucial for northerly Norway spruce to understand how seasonal warming and site conditions influence the intensity of free growth and what the effects of free growth on stem quality and adaptedness are. We studied the intensity of sylleptic and proleptic free growth in 660 6-to-9-year-old Norway spruce trees planted on normally irrigated and temporary overmoistured sites of variable fertility. We focused on the ability of individual trees to retain a type of free growth over three seasons and examined the associations between free growth, stem quality, and phenology traits. The results show that 23% to 50% of trees exhibited free growth, depending on the season. Mild and warm conditions in August and September tended to promote free growth. Among trees aged 6 to 9 years, 82% to 84% of those without free growth maintained this status over the following two seasons. While sylleptic growth decreased with age, proleptic growth increased. Over the seasons, individual trees were more consistent in maintaining proleptic growth than sylleptic growth. Trees on moist site types exhibited significantly more free growth than those in normally irrigated sites across all seasons. Trees with both sylleptic and proleptic free growth were significantly taller than those without free growth; however, sylleptic trees showed a markedly lower frequency of stem defects compared with those with proleptic growth. Free growth intensity was weakly associated with spring phenology and appeared to disrupt the well-established associations between phenology traits within the annual cycle. We conclude that selecting trees for overall height, particularly those with sylleptic free growth, may well exploit the benefits of free growth without significantly increasing the risk of autumn or winter frost damage. Full article
(This article belongs to the Section Forest Ecology and Management)
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15 pages, 2511 KB  
Article
An Interseasonal Comparison of Soil Respiration in Xeric and Mesic Pine Forest Ecosystems in Central Siberia
by Anastasia Makhnykina, Eugene Vaganov, Alexey Panov, Daria Polosukhina and Anatoly Prokushkin
Atmosphere 2024, 15(8), 988; https://doi.org/10.3390/atmos15080988 - 17 Aug 2024
Cited by 5 | Viewed by 1884
Abstract
An understanding of how boreal forest composition responds to global environmental changes is an important challenge to predicting the future global carbon balance. Boreal forests are the most significant sink for atmospheric carbon dioxide; however, their sequestration capacity is highly sensitive to ongoing [...] Read more.
An understanding of how boreal forest composition responds to global environmental changes is an important challenge to predicting the future global carbon balance. Boreal forests are the most significant sink for atmospheric carbon dioxide; however, their sequestration capacity is highly sensitive to ongoing climate changes. The combination of the hydrothermal conditions of a territory strongly regulates its biogeochemical processes. The carbon fluxes in boreal forests are strongly mediated by the ground vegetation cover, composed of mosses (mesic) and lichens (xeric). Despite the concurrence of xeric and mesic vegetation types, their responses to climate variations varies significantly. Soil emission is an informative indicator of ecosystem functioning. In this study, we focused on the soil CO2 dynamics during frost-free seasons with different precipitation regimes in the xeric and mesic boreal ecosystems of Central Siberia. Seasonal measurements of soil CO2 emissions were conducted during frost-free seasons using the dynamic chamber method. Our findings reveal that the precipitation regimes of each year may control the seasonal soil emission dynamics. The soil moisture is the most important driver of emissions growth in the water-limited lichen pine forest (R2adj. = 18%). The soil temperature plays the largest role in the feather moss pine forest during the dry (R2adj. = 31%) seasons, and in the lichen pine forest during the wet (R2adj. = 41%) seasons. The cumulative efflux for the xeric and mesic sites is mostly related to the hydrothermal conditions, and not to the differences in ground vegetation cover. During the dry seasons, on average, the soil CO2 emissions are 45% lower than during the wet seasons for both sites. These findings emphasize the need for estimating and including the hydrothermal characteristics of the growing season for detailed emission assessments. Full article
(This article belongs to the Section Biosphere/Hydrosphere/Land–Atmosphere Interactions)
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19 pages, 4139 KB  
Article
Potential Risk of Frost in the Growing Season in Poland
by Jadwiga Nidzgorska-Lencewicz, Agnieszka Mąkosza, Czesław Koźmiński and Bożena Michalska
Agriculture 2024, 14(3), 501; https://doi.org/10.3390/agriculture14030501 - 20 Mar 2024
Cited by 10 | Viewed by 5640
Abstract
Fruits, garden plants, and agricultural crops grown in Poland exhibit wide variations in their sensitivity to frost, particularly in early spring. In the case of frost, generally, the yield and quality are reduced, and sometimes, entire plants can be destroyed. This article characterizes [...] Read more.
Fruits, garden plants, and agricultural crops grown in Poland exhibit wide variations in their sensitivity to frost, particularly in early spring. In the case of frost, generally, the yield and quality are reduced, and sometimes, entire plants can be destroyed. This article characterizes the occurrence of ground frosts (at 5 cm agl) and air frosts (at 200 cm agl) in Poland gathered from 52 meteorological stations affiliated with IMGW-PIB between 1971 and 2020. To assess the real risk of frost to plants, the variability of this phenomenon was analyzed per thermal growing season (defined as air temperature >5 °C), rather than in traditional calendar terms as presented in most studies. In the climatic conditions of Poland, the growing season is characterized by a reported 28 days with ground frost and 13.3 days with air frost, approximately. In spring, the last ground frost disappears, on average, on a country scale, on May 14, and air frost on April 27. In turn, in autumn, the first ground frost is recorded, on average, on 1 October and air frost on 14 October. On the basis of the selected characteristics of frost and the growing season, four areas of potential risk of ground and air frost in the growing season, as well as in spring, were determined with the use of cluster analysis. Full article
(This article belongs to the Section Crop Production)
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16 pages, 3714 KB  
Article
The Pulses of Soil CO2 Emission in Response to Rainfall Events in Central Siberia: Revisiting the Overall Frost-Free Season CO2 Flux
by Anastasia V. Makhnykina, Eugene A. Vaganov, Alexey V. Panov, Nataly N. Koshurnikova and Anatoly S. Prokushkin
Forests 2024, 15(2), 355; https://doi.org/10.3390/f15020355 - 12 Feb 2024
Cited by 8 | Viewed by 3393
Abstract
Boreal forests nowadays act as a sink for atmospheric carbon dioxide; however, their sequestration capacity is highly sensitive to weather conditions and, specifically to ongoing climate warming. Extreme weather events such as heavy rainfalls or, conversely, heat waves during the growing season might [...] Read more.
Boreal forests nowadays act as a sink for atmospheric carbon dioxide; however, their sequestration capacity is highly sensitive to weather conditions and, specifically to ongoing climate warming. Extreme weather events such as heavy rainfalls or, conversely, heat waves during the growing season might perturb the ecosystem carbon balance and convert them to an additional CO2 source. Thus, there is an urgent need to revise ecosystem carbon fluxes in vast Siberian taiga ecosystems as influenced by extreme weather events. In this study, we focused on the soil CO2 pulses appearing after the rainfall events and quantification of their input to the seasonal cumulative CO2 efflux in the boreal forests in Central Siberia. Seasonal measurements of soil CO2 fluxes (both soil respiration and net soil exchange) were conducted during three consecutive frost-free seasons using the dynamic chamber method. Seasonal dynamics of net soil exchange fluxes demonstrated positive values, reflecting that soil respiration rates exceeded CO2 uptake in the forest floor vegetation layer. Moreover, the heavy rains caused a rapid pulse of soil emissions and, as a consequence, the release of additional amounts of CO2 from the soil into the atmosphere. A single rain event may cause a 5–11-fold increase of the NSE flux compared to the pre-rainfall values. The input of CO2 pulses to the seasonal cumulative efflux varied from near zero to 39% depending on precipitation patterns of a particular season. These findings emphasize the critical need for more frequent measurements of soil CO2 fluxes throughout the growing season which capture the CO2 pulses induced by rain events. This approach has inevitable importance for the accurate assessment of seasonal CO2 soil emissions and adequate predictions of response of boreal pine forests to climatic changes. Full article
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8 pages, 1658 KB  
Data Descriptor
Testate Amoebae (Amphitremida, Arcellinida, Euglyphida) in Sphagnum Bogs: The Dataset from Eastern Fennoscandia
by Aleksandr Ivanovskii, Kirill Babeshko, Viktor Chernyshov, Anton Esaulov, Aleksandr Komarov, Elena Malysheva, Natalia Mazei, Diana Meskhadze, Damir Saldaev, Andrey N. Tsyganov and Yuri Mazei
Data 2023, 8(11), 172; https://doi.org/10.3390/data8110172 - 15 Nov 2023
Cited by 2 | Viewed by 3326
Abstract
The paper describes a dataset, comprising 236 surface moss samples and 143 testate amoeba taxa. The samples were collected in 11 Sphagnum-dominated bogs during frost-free seasons of 2004, 2007, 2009, 2017, and 2022. For the whole dataset, the sampling effort was sufficient [...] Read more.
The paper describes a dataset, comprising 236 surface moss samples and 143 testate amoeba taxa. The samples were collected in 11 Sphagnum-dominated bogs during frost-free seasons of 2004, 2007, 2009, 2017, and 2022. For the whole dataset, the sampling effort was sufficient in terms of observed species richness (143 species in total), though a regional species pool is deemed to be discovered incompletely (143 species is its lower 95 % confidence limit using Chao’s estimator). The local community composition demonstrated high heterogeneity in a reduced ordination space. It supports the opinion that the high versatility of bog ecosystems should be taken into account during ecological studies. Full article
(This article belongs to the Special Issue Data Science in Invertebrate)
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21 pages, 31329 KB  
Article
Frost-Heaving Behavior and Enhancement Approaches of Cement-Based Grout Materials under Freeze–Thaw Conditions
by Yongfeng Wei, Hui Dou, Jiangtao Gao, Run Su and Shengjun Ma
Coatings 2023, 13(11), 1919; https://doi.org/10.3390/coatings13111919 - 9 Nov 2023
Cited by 3 | Viewed by 2046
Abstract
In the seasonally frozen regions, during the grouting of prestressed bridge ducts in low-temperature environments, incompletely cured grout materials undergo volumetric changes due to freeze–thaw cycling, resulting in structural cracks along the prestressing ducts of the bridge, thereby diminishing the bridge’s operational lifespan. [...] Read more.
In the seasonally frozen regions, during the grouting of prestressed bridge ducts in low-temperature environments, incompletely cured grout materials undergo volumetric changes due to freeze–thaw cycling, resulting in structural cracks along the prestressing ducts of the bridge, thereby diminishing the bridge’s operational lifespan. In order to investigate the freeze–thaw characteristics of grouting materials under the influence of freeze–thaw cycles and propose improvement measures, the influence of various additives on the freeze–thaw stress characteristics of mortar under freeze–thaw cycle conditions was elucidated through freeze–thaw stress tests. The mechanisms for improving the freeze–thaw characteristics of grouting materials were explored through analyses of free water content, setting time, compressive strength, XRD, and SEM. In light of the requirements for comprehensive performance of grouting materials, composite additives are employed to enhance the freeze–thaw performance of the grout. The results indicate that reducing the water-cement ratio, incorporating calcium formate, sulfoaluminate cement, air-entraining agents, and carbamide all have a positive impact on mitigating frost-heaving stress in grout materials. However, the improvement mechanisms differ, and employing a single measure alone is insufficient to effectively reduce frost-heaving stress while meeting performance criteria such as compressive strength, setting time, and flowability. Free water content emerges as a crucial indicator determining the magnitude of frost-heaving stress in grout materials, with 11.5% of free water content representing the critical threshold for frost heaving in grout materials. Utilizing composite admixtures can simultaneously decrease free water content, lower the freezing point of free water, and alleviate frost-heaving deformation, resulting in a more efficient reduction of frost-heaving stress. When the admixture content reaches 9.9%, frost-heaving stress is eliminated, and the comprehensive performance parameters, including compressive strength, setting time, and flowability, meet the specified requirements. Overall, the conclusions of this research will offer a scientific foundation for the choice of cold-resistant grouting materials, the mitigation of grout material freeze–thaw risk, and the improvement of quality assurance levels in bridge construction within seasonally frozen areas. Full article
(This article belongs to the Special Issue Novel Cleaner Materials for Pavements)
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17 pages, 5437 KB  
Article
Air Frosts in Poland in the Thermal Growing Season (AT > 5 °C)
by Czesław Koźmiński, Agnieszka Mąkosza, Jadwiga Nidzgorska-Lencewicz and Bożena Michalska
Agriculture 2023, 13(6), 1228; https://doi.org/10.3390/agriculture13061228 - 10 Jun 2023
Cited by 11 | Viewed by 3355
Abstract
Frosts cause damage to plants in field crops and also trees, thus contributing to heavy economic losses in agriculture. One of the consequences of climate warming is the lengthening of the thermal growing season (AT > 5 °C) and acceleration of phenological phases [...] Read more.
Frosts cause damage to plants in field crops and also trees, thus contributing to heavy economic losses in agriculture. One of the consequences of climate warming is the lengthening of the thermal growing season (AT > 5 °C) and acceleration of phenological phases as well as the lengthening of the frost-free period. This favourable element allows the extension of the range of cultivated plants to include plants requiring warmth and a longer development period. The present study concerns the area of Poland. The data on mean and minimum 24-h period air temperature (200 cm above ground level) were obtained from 52 meteorological stations of the Institute of Meteorology and Water Management—National Research Institute (IMGW-PIB) for the period 1971–2020. A day with air frost was identified when the recorded minimum air temperature was below 0.0 °C and the mean 24-h period air temperature was above 0.0 °C. All calculations concerning frosts were limited to the period with mean 24-h period air temperature >5 °C (the growing season) as determined with the Gumiński method. The obtained results show that in the thermal growing season (AT > 5 °C) in Poland, no statistically significant change in the average number of days with air frosts in the period 1971–2020 was found. On average, in Poland, in the years 1971–2020, a lengthening of the thermal growing season by 6.2 days over 10 years was identified. Earlier disappearance of the latest air frosts in spring was identified as 2 to 3 days over 10 years, and the later occurrence of air frosts in autumn as 1 to 4 days over 10 years. The share of severe (−4.1°C ÷ −6.0 °C) and very severe (<−6.0 °C) frosts in the total number of days with air frosts in Poland amounts to, on average, 5.8% in spring and 2.6% in autumn. Full article
(This article belongs to the Special Issue Advances in Agrometeorology and Climatology)
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13 pages, 3078 KB  
Article
Spatiotemporal Changes in Frost-Free Season and Its Influence on Spring Wheat Potential Yield on the Qinghai–Tibet Plateau from 1978 to 2017
by Zemin Zhang and Changhe Lu
Int. J. Environ. Res. Public Health 2023, 20(5), 4198; https://doi.org/10.3390/ijerph20054198 - 26 Feb 2023
Cited by 3 | Viewed by 2735
Abstract
Accurately assessing the variation in the frost-free season (FFS) can provide decision support for improving agricultural adaptability and reducing frost harm; however, related studies were inadequate in terms of the Qinghai–Tibet Plateau (QTP). This study analyzed the spatiotemporal changes in the first frost [...] Read more.
Accurately assessing the variation in the frost-free season (FFS) can provide decision support for improving agricultural adaptability and reducing frost harm; however, related studies were inadequate in terms of the Qinghai–Tibet Plateau (QTP). This study analyzed the spatiotemporal changes in the first frost day in autumn (FFA), last frost day in spring (LFS), FFS length and effective accumulated temperature (EAT) during the 1978–2017 period, and their influences on spring wheat potential yield on the QTP, based on daily climatic data and the methodology of Sen’s slope and correlation analysis. The results showed that the annual average FFA and LFS occurred later and earlier from northwest to southeast, respectively, and both the FFS length and EAT increased. From 1978 to 2017, the average regional FFA and LFS were delayed and advanced at rates of 2.2 and 3.4 days per decade, and the FFS and EAT increased by 5.6 days and 102.7 °C·d per decade, respectively. Spatially, the increase rate of FFS length ranged from 2.8 to 11.2 days per decade throughout the QTP, and it was observed to be larger in northern Qinghai, central Tibet and Yunnan, and smaller mainly in eastern Sichuan and southern Tibet. Correspondingly, the increase rate for EAT ranged from 16.2 to 173.3 °C·d per decade and generally showed a downward trend from north to south. For a one-day increase in the FFS period, the spring wheat potential yield would decrease by 17.4 and 9.0 kg/ha in altitude ranges of <2000 m and 2000–3000 m, but decrease by 24.9 and 66.5 kg/ha in the ranges of 3000–4000 m and >4000 m, respectively. Future studies should be focused on exploring the influence of multiple climatic factors on crop production using experimental field data and model technologies to provide policy suggestions. Full article
(This article belongs to the Special Issue Climate Change Impacts and Adaptation Strategies in Agriculture)
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21 pages, 9200 KB  
Article
Frost Conditions Due to Climate Change in South-Eastern Europe via a High-Spatiotemporal-Resolution Dataset
by Ioannis Charalampopoulos and Fotoula Droulia
Atmosphere 2022, 13(9), 1407; https://doi.org/10.3390/atmos13091407 - 31 Aug 2022
Cited by 21 | Viewed by 5554
Abstract
Frost incidents comprise significant extreme weather events owing to climate change, possibly endangering the agricultural sector of the already impacted south-eastern European area. Thus, the comprehensive evaluation of the frost conditions under the climate regime for eleven countries was conducted by calculating relevant [...] Read more.
Frost incidents comprise significant extreme weather events owing to climate change, possibly endangering the agricultural sector of the already impacted south-eastern European area. Thus, the comprehensive evaluation of the frost conditions under the climate regime for eleven countries was conducted by calculating relevant frost agroclimatic indicators under three time horizons (1985 to 2015, 2005 to 2035 and 2015 to 2045). The Frost Days (FD), Free of Frost Days (FFD), Last Spring Frost (LSF) and First Autumn Frost (FAF) were estimated daily over a grid of 25 × 25 km. We demonstrated that the FD will be reduced according to the balanced A1B emissions scenario over the entire examined area with the mountainous and continental regions being most affected. From 2005 to 2035, a higher LSF reduction is expected over Greece and Albania and the earlier FAF in high altitude areas. All examined regions are projected to face delayed FAF, from 2015 to 2045. In general, all countries will face an increase in the growing season duration owing to the increase of the FFD. Full article
(This article belongs to the Special Issue Effects of Climate Change on Agriculture)
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28 pages, 81095 KB  
Article
Satellite-Based Flood Mapping through Bayesian Inference from a Sentinel-1 SAR Datacube
by Bernhard Bauer-Marschallinger, Senmao Cao, Mark Edwin Tupas, Florian Roth, Claudio Navacchi, Thomas Melzer, Vahid Freeman and Wolfgang Wagner
Remote Sens. 2022, 14(15), 3673; https://doi.org/10.3390/rs14153673 - 31 Jul 2022
Cited by 72 | Viewed by 9299
Abstract
Spaceborne Synthetic Aperture Radar (SAR) are well-established systems for flood mapping, thanks to their high sensitivity towards water surfaces and their independence from daylight and cloud cover. Particularly able is the 2014-launched Copernicus Sentinel-1 C-band SAR mission, with its systematic monitoring schedule featuring [...] Read more.
Spaceborne Synthetic Aperture Radar (SAR) are well-established systems for flood mapping, thanks to their high sensitivity towards water surfaces and their independence from daylight and cloud cover. Particularly able is the 2014-launched Copernicus Sentinel-1 C-band SAR mission, with its systematic monitoring schedule featuring global land coverage in a short revisit time and a 20 m ground resolution. Yet, variable environment conditions, low-contrasting land cover, and complex terrain pose major challenges to fully automated flood monitoring. To overcome these issues, and aiming for a robust classification, we formulate a datacube-based flood mapping algorithm that exploits the Sentinel-1 orbit repetition and a priori generated probability parameters for flood and non-flood conditions. A globally applicable flood signature is obtained from manually collected wind- and frost-free images. Through harmonic analysis of each pixel’s full time series, we derive a local seasonal non-flood signal comprising the expected backscatter values for each day-of-year. From those predefined probability distributions, we classify incoming Sentinel-1 images by simple Bayes inference, which is computationally slim and hence suitable for near-real-time operations, and also yields uncertainty values. The datacube-based masking of no-sensitivity resulting from impeding land cover and ill-posed SAR configuration enhances the classification robustness. We employed the algorithm on a 6-year Sentinel-1 datacube over Greece, where a major flood hit the region of Thessaly in 2018. In-depth analysis of model parameters and sensitivity, and the evaluation against microwave and optical reference flood maps, suggest excellent flood mapping skill, and very satisfying classification metrics with about 96% overall accuracy and only few false positives. The presented algorithm is part of the ensemble flood mapping product of the Global Flood Monitoring (GFM) component of the Copernicus Emergency Management Service (CEMS). Full article
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