Identification of Shift in Sowing and Harvesting Dates of Rice Crop (<i>L.</i> <i>Oryza sativa</i>) through Remote Sensing Techniques: A Case Study of Larkana District

The present study aimed to determine the impact of climate variability on rice crops in terms of sowing and harvesting dates and crop period. The identification of sowing and harvesting dates were spotted by mask identification, variations in land surface temperature (LST) on a temporal scale in the...

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Main Authors: Vipin Kumar Oad, Xiaohua Dong, Muhammad Arfan, Vicky Kumar, Muhammad Salman Mohsin, Syed Saad, Haishen Lü, Muhammad Imran Azam, Muhammad Tayyab
Format: Article
Language:English
Published: MDPI AG 2020-04-01
Series:Sustainability
Subjects:
Online Access:https://www.mdpi.com/2071-1050/12/9/3586
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spelling doaj-24adcf436c434885bd34509a869274342020-11-25T02:30:12ZengMDPI AGSustainability2071-10502020-04-01123586358610.3390/su12093586Identification of Shift in Sowing and Harvesting Dates of Rice Crop (<i>L.</i> <i>Oryza sativa</i>) through Remote Sensing Techniques: A Case Study of Larkana DistrictVipin Kumar Oad0Xiaohua Dong1Muhammad Arfan2Vicky Kumar3Muhammad Salman Mohsin4Syed Saad5Haishen Lü6Muhammad Imran Azam7Muhammad Tayyab8Department of Civil & Environmental Engineering, University Technology Petronas, Persiaran UTP, Seri Iskandar, Perak 32610, MalaysiaCollege of Hydraulic and Environmental Engineering, China Three Gorges University, Yichang 443002, ChinaU.S.-Pakistan Center for Advanced Studies in Water (USPCAS-W), Mehran University of Engineering & Technology, Jamshoro, Sindh 76062, PakistanDepartment of Civil & Environmental Engineering, University Technology Petronas, Persiaran UTP, Seri Iskandar, Perak 32610, MalaysiaU.S.-Pakistan Center for Advanced Studies in Water (USPCAS-W), Mehran University of Engineering & Technology, Jamshoro, Sindh 76062, PakistanDepartment of Civil & Environmental Engineering, University Technology Petronas, Persiaran UTP, Seri Iskandar, Perak 32610, MalaysiaState Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering, College of Hydrology and Water Resources, Hohai University, Nanjing 210098, ChinaCollege of Hydraulic and Environmental Engineering, China Three Gorges University, Yichang 443002, ChinaCollege of Hydraulic and Environmental Engineering, China Three Gorges University, Yichang 443002, ChinaThe present study aimed to determine the impact of climate variability on rice crops in terms of sowing and harvesting dates and crop period. The identification of sowing and harvesting dates were spotted by mask identification, variations in land surface temperature (LST) on a temporal scale in the respective months, and a field-level social inquiry. The study was conducted during a time period (1994–2017), in which geo-referenced crop samples, farmer’s perception survey data, Landsat satellite images, and climate data of district Larkana were used. The analysis of satellite imageries revealed that on 20 June 1994, the rice was transplanted on 14.7% of the area of the region while it was only 7.1% of the area in 2017. Similarly, the area under rice crop in the first week of July 1994 was 18.3% compared to 8.15% during the same period in 2017. However, in the first week of October 2017, the rice crop was standing on 46.8% of the area while it was on 34.6% of the area during the year 1994 on the same date. This LST variation depicts a delay in the sowing and harvesting of the rice crop. This changing pattern is further confirmed through mean LST. Mean LST (°C) has been increasing in the sowing period of rice crop from 31.9 °C in June 1994 to 35.8 °C in June 2017, and from 32.8 °C in July 1994 to 36.8 °C in July 2017. Furthermore, the LST decreased during the harvesting period of rice crop from 31 °C in October 1994 to 28.6 °C in October 2017. The present study quantifies a delay of 15–30 days in sowing and harvesting dates of the rice crop in the district due to climate variability.https://www.mdpi.com/2071-1050/12/9/3586GIS and remote sensingclimate variabilityrice sowing and harvesting datessupervised classificationland surface temperature
collection DOAJ
language English
format Article
sources DOAJ
author Vipin Kumar Oad
Xiaohua Dong
Muhammad Arfan
Vicky Kumar
Muhammad Salman Mohsin
Syed Saad
Haishen Lü
Muhammad Imran Azam
Muhammad Tayyab
spellingShingle Vipin Kumar Oad
Xiaohua Dong
Muhammad Arfan
Vicky Kumar
Muhammad Salman Mohsin
Syed Saad
Haishen Lü
Muhammad Imran Azam
Muhammad Tayyab
Identification of Shift in Sowing and Harvesting Dates of Rice Crop (<i>L.</i> <i>Oryza sativa</i>) through Remote Sensing Techniques: A Case Study of Larkana District
Sustainability
GIS and remote sensing
climate variability
rice sowing and harvesting dates
supervised classification
land surface temperature
author_facet Vipin Kumar Oad
Xiaohua Dong
Muhammad Arfan
Vicky Kumar
Muhammad Salman Mohsin
Syed Saad
Haishen Lü
Muhammad Imran Azam
Muhammad Tayyab
author_sort Vipin Kumar Oad
title Identification of Shift in Sowing and Harvesting Dates of Rice Crop (<i>L.</i> <i>Oryza sativa</i>) through Remote Sensing Techniques: A Case Study of Larkana District
title_short Identification of Shift in Sowing and Harvesting Dates of Rice Crop (<i>L.</i> <i>Oryza sativa</i>) through Remote Sensing Techniques: A Case Study of Larkana District
title_full Identification of Shift in Sowing and Harvesting Dates of Rice Crop (<i>L.</i> <i>Oryza sativa</i>) through Remote Sensing Techniques: A Case Study of Larkana District
title_fullStr Identification of Shift in Sowing and Harvesting Dates of Rice Crop (<i>L.</i> <i>Oryza sativa</i>) through Remote Sensing Techniques: A Case Study of Larkana District
title_full_unstemmed Identification of Shift in Sowing and Harvesting Dates of Rice Crop (<i>L.</i> <i>Oryza sativa</i>) through Remote Sensing Techniques: A Case Study of Larkana District
title_sort identification of shift in sowing and harvesting dates of rice crop (<i>l.</i> <i>oryza sativa</i>) through remote sensing techniques: a case study of larkana district
publisher MDPI AG
series Sustainability
issn 2071-1050
publishDate 2020-04-01
description The present study aimed to determine the impact of climate variability on rice crops in terms of sowing and harvesting dates and crop period. The identification of sowing and harvesting dates were spotted by mask identification, variations in land surface temperature (LST) on a temporal scale in the respective months, and a field-level social inquiry. The study was conducted during a time period (1994–2017), in which geo-referenced crop samples, farmer’s perception survey data, Landsat satellite images, and climate data of district Larkana were used. The analysis of satellite imageries revealed that on 20 June 1994, the rice was transplanted on 14.7% of the area of the region while it was only 7.1% of the area in 2017. Similarly, the area under rice crop in the first week of July 1994 was 18.3% compared to 8.15% during the same period in 2017. However, in the first week of October 2017, the rice crop was standing on 46.8% of the area while it was on 34.6% of the area during the year 1994 on the same date. This LST variation depicts a delay in the sowing and harvesting of the rice crop. This changing pattern is further confirmed through mean LST. Mean LST (°C) has been increasing in the sowing period of rice crop from 31.9 °C in June 1994 to 35.8 °C in June 2017, and from 32.8 °C in July 1994 to 36.8 °C in July 2017. Furthermore, the LST decreased during the harvesting period of rice crop from 31 °C in October 1994 to 28.6 °C in October 2017. The present study quantifies a delay of 15–30 days in sowing and harvesting dates of the rice crop in the district due to climate variability.
topic GIS and remote sensing
climate variability
rice sowing and harvesting dates
supervised classification
land surface temperature
url https://www.mdpi.com/2071-1050/12/9/3586
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