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67篇 您的检索式:作者名="Shivhare"
    题名 作者 年代 出处 被引量
1A Comparison of SWAT Model Calibration Techniques for Hydrological Modeling in the Ganga River Watershed显示文摘恒河是印度最长的河流,目前正遭受人类活动和气候变化的影响,其中瓦拉纳西区域所受的影响尤为严重。预计气候变化和不断扩张的人口会进一步影响水资源的有效利用。本研究利用水土评价工具(soil and water assessment tool,SWAT)模型进行水文模拟,研究区选择恒河流经的印度北方邦南部地区,覆盖面积达15 621.612 km^2。本研究主要目标如下:(1)检验SWAT模型在径流和产沙量预测方面的可行性和适用性,(2)对序贯不确定性分析(SUFI-2)、普适似然不确定性估计(GLUE)和并行求解(ParaSol)这3种常规校准算法进行对比分析,并确定出最佳校准算法。SWAT模型中输入数据的来源为航天飞机雷达地形测绘任务(SRTM)获取的数字高程模型(DEM)、Landsat-8卫星图像、土壤数据和逐日气象数据。首先,本研究将研究流域划分为46个子流域,使用土地利用/土地覆被(LULC)图和土壤图创建了水文响应单元(HRU)。然后,构建了基于SUFI-2、GLUE和ParaSol算法的模型,并基于5类标准对这些校准算法进行了比较,标准包括目标函数、使用概念、性能、P因子和R因子值。研究结果表明:(1) SUFI-2算法需要的运行时间较少,同时校准结果最好,ParaSol算法最差;(2)使用SUFI-2算法对模型进行校准后,获得对模拟结果影响最显著的5个敏感参数——主河道水力传导率(CH_K2)、USLE方程水土保持因子(USLE_P)、主河道曼宁系数值(CH_N2)、地表径流滞后时间(SURLAG)以及土壤有效含水量(SOL_AWC);(3) 40号子流域(SW#40)产生的径流量最大,土地利用类型为荒地的36号子流域(SW#36)的产沙量最大,达到50 t·a^(–1)。研究区的平均蒸散量为411.55 mm·a^(–1)。校准后的模型可以用于探究未来LULC的变化、气候变化和土壤侵蚀的影响。Nikita Shivhare Prabhat Kumar Singh Dikshir Shyam Bihari Dwivedi 2018Engineering2018,4,5:6
2Management of complicated choledochal cysts显示文摘Lal Richa Agarwal Shaleen Shivhare Rakesh 0,,06:1
3Management of complicated choledochal cysts显示文摘Lal R Agarwal S Shivhare R 2007Dig Surg2007,24,6:1
4A kinetic model for the direct methanol fuel cell anode based on surface coverage 显示文摘Shivhare M R Allen R G Scott K 2006J Electroanal Chem2006,595,:1
5Spectrophotometric method for the determination of paraquat in water, grain and plant materials显示文摘SHIVHARE P GUPTA V K 1991Analyst1991,16,4:1
6Optimization of blanching process for carrots显示文摘Shivhare US Gupta M Basu S 2009Journal of Food Process Engi- neering2009,32,4:1
7Thermal degradation kinetics of anthocyanin and visual colour of plum puree显示文摘Ahmed J Shivhare U S Raghavan G S V 2004European of Food Research and Technology2004,218,:1
8Thermal inactivation kinetics of peroxidase in mint leaves显示文摘RUDRA S G SHIVHARE U S BASU S 2008Journal of Food Engineering2008,85,:1
9Studies on frying kinetics and quality of French fries显示文摘GUPTA P SHIVHARE U S BAWA A S 2000Drying Technology2000,18,:1
10Drying kinetics of Agaricus bisporus and Pleurotus florida mush rooms显示文摘Arora S Shivhare U S Ahmed J 2003Transactions of the American Society of Agricultural Engineers2003,46,3:1
11Thermal colour degradation kinetics of mango puree显示文摘Ahmed J Shivhare U S Kaur M 2002International Journal of Food Properties2002,5,2:1
12Drying characteristics of red chilli显示文摘GUPTA P AHMED J SHIVHARE U S 2002Drying Technology2002,20,10:1
13Rheological,textural, micro-structural and sensory properties of mango jam显示文摘BASU S SHIVHARE U 2010Journal of Food Engi- neering2010,100,2:1
14Drying charactristics and product quality of okra显示文摘Shivhare US Gupta A Bawa AS et a! 2000Drying Technology2000,18,:1
15Models for Sorption Isotherms for Foods : a Review 显示文摘BASU S SHIVHARE U S MUJUMDAR A S 2006Drying Tech- nology2006,24,8:1
16Colour degra-dation and rheology of green chilli puree dur- ing thermal processing显示文摘Jasim A Shivhare U S Debnath S 2002International Jour- nal of Food Science and Technology2002,37,:1
17Drying characteristics and product quality of okra显示文摘Shivhare U S Gupta A Bawa A S 2000Drying Technology2000,18,1:1
18Type IV-A choledochal cysts:a challenge显示文摘Lal R Agarwal S Shivhare R 2005J Hepatobiliary Pancreat Surg2005,12,2:1
19Mass transfer studies onsplit-packing and single-block packing rotating packed beds显示文摘Shivhare M K Rao D P Kaistha N 2013Chemical Engineering and Processing:Process Intensification2013,71,:1
20Colour degradation and theology of green chilli puree during thermal processing 显示文摘Jasim Ahmed U S Shivhare S Debnath 2005International Joural of Food Science and Technology2005,37,:1
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