با سلام 
میتوانی برایش یک محیط جدید به صورت زیر تعریف کنی 
\documentclass[3p,times,procedia]{elsarticle}
\usepackage{subfigure}
\usepackage[fleqn]{amsmath}
\usepackage{amsthm , amssymb , amsfonts , mathtools}
\usepackage[pagebackref=false,colorlinks,linkcolor=blue,citecolor=magenta]{hyperref}
\usepackage{fancyref, graphicx}
\usepackage{adjustbox}
\usepackage[singlelinecheck=false]{caption}
\usepackage[labelfont={bf,small}]{caption}
\captionsetup[figure]{name=Fig.}
\captionsetup[table]{name=Table}
\usepackage[all]{hypcap}
\def\tableautorefname{Tables}
\newcommand{\Autoref}[1]{%
 \begingroup%
\def\tableautorefname{Tables}%
 \autoref{#1}%
  \endgroup%
}
\renewcommand{\tableautorefname}{Table} 
\renewcommand{\figureautorefname}{Fig.} 
\begin{document}
	\begin{table}[th]
		\captionof{table}{Numerical maximum errors obtained for example  1 at $t=1$ with $\alpha=0.6$.} \label{tab:1003}
		\centering
		\tiny
		\tabcolsep1.2\tabcolsep
		\begin{adjustbox}{width=1\textwidth}
			\begin{tabular}{l l l l l l l l l l}
				\hline
				&&&\multicolumn{1}{c}{Finite volume method} & & \multicolumn{2}{c}{method Scheme 1} & & \multicolumn{2}{c}{method Scheme 2}  \\ 
				\cline{4-4}\cline{6-7}\cline{9-10}
				$\Delta x$&$\Delta t$& &$L_{\infty}$& &$C$&$L_{\infty}$& &$C$ & $L_{\infty}$ \\ 
				\hline
				$1/10$ & $10^{-1}$& & $inf$ &&  $-$ & $inf$ & &  $0.3$ & $2.382\times 10^{-2}$ \\
				& $10^{-2}$ && $1.080\times 10^{-1}$ &&  $0.21$ & $1.674\times 10^{-1}$&&  0.54 & $3.529\times 10^{-2}$ \\
				& $10^{-3}$ & &$1.095\times 10^{-1}$ &&  $0.54$ &$5.497\times 10^{-2}$ &&  0.6 & $5.311\times 10^{-2}$ \\
				& $10^{-4}$ && $1.096\times 10^{-1}$ &&  $0.55$ & $5.319\times 10^{-2}$ && 0.6  & $5.464\times 10^{-2}$ \\ 
				\hline	
			\end{tabular}
		\end{adjustbox}
	\end{table}
		\begin{table}[th]
			\captionof{table}{Numerical maximum errors obtained for example  1 at $t=1$ with $\alpha=0.9$.} \label{tab:1004}
			\centering
			\tiny
			\tabcolsep1.2\tabcolsep
			\begin{adjustbox}{width=1\textwidth}
				\begin{tabular}{l l l l l l l l l l}
					\hline
					&&&\multicolumn{1}{c}{Finite volume method} & & \multicolumn{2}{c}{method Scheme 1} & & \multicolumn{2}{c}{method Scheme 2}  \\ 
					\cline{4-4}\cline{6-7}\cline{9-10}
					$\Delta x$&$\Delta t$& &$L_{\infty}$& &$C$&$L_{\infty}$& &$C$ & $L_{\infty}$ \\ 
					\hline
					$1/10$ & $10^{-1}$& & $inf$ &&  $-$ & $inf$ & &  $0.3$ & $2.382\times 10^{-2}$ \\
					& $10^{-2}$ && $1.080\times 10^{-1}$ &&  $0.21$ & $1.674\times 10^{-1}$&&  0.54 & $3.529\times 10^{-2}$ \\
					& $10^{-3}$ & &$1.095\times 10^{-1}$ &&  $0.54$ &$5.497\times 10^{-2}$ &&  0.6 & $5.311\times 10^{-2}$ \\
					& $10^{-4}$ && $1.096\times 10^{-1}$ &&  $0.55$ & $5.319\times 10^{-2}$ && 0.6  & $5.464\times 10^{-2}$ \\ 
					\hline	
				\end{tabular}
			\end{adjustbox}
		\end{table}
	We solve this example with two methods presented in this paper and the Finite volume method with several values of $\Delta x$, $\Delta t$ and $C$ at $T=1$. \Autoref{tab:1003} and \ref{tab:1004} show the error norms.
\end{document}
و هرکجا لازم داشتی به جای \autoref از \Autoref استفاده کنی. 
![enter image description here][1]
  [1]: http://qa.parsilatex.com/?qa=blob&qa_blobid=11247670591417693137