Laserfiche WebLink
<br />0022,54 <br /> <br /> x y <br /> NO-FLOW BOUNDARY PRESSURE BOUNDARY (one node) <br /> (water table) <br /> 0 CONSTANT .FlUX <br /> BOUNDARY <br /> f- <br /> w <br /> W <br /> lL <br /> ~ <br /> !1 10 ~ <br /> CD <br /> ~ >- <br /> a: z <br /> w i:l ~ <br /> ~ lO 0 <br /> >< Z5" <br /> :;: & i:l~ <br /> :;: ID~ <br /> 0 20 ~~ <br /> --' ~ <br /> w .t- <br /> CD en (, <br /> t z <br /> 0 z <br /> 0 <br />. w <br />1,0) Cl <br />vo <br />, 30 <br /> <br /> <br /> <br />NO-FLOW BOUNDARY; CONSTANT .sOlUTE-SOURCE BOUNDARY <br />(37,500 milligrams per flter) <br /> <br />3.000 <br /> <br />I <br />2.000 1,500 1.000 <br />DISTANCE FROM HYPOTHETICAL SLURRY WALL, IN FEET <br /> <br />I <br />o <br /> <br />I <br />500 <br /> <br />2.500 <br /> <br />EXPLANATION <br /> <br />= MODEL ELEMENT - Dimensions are 164leel by O.B2100t (50 by 0,25 melers). <br />All elements have a node at each corner; thus a node may be common to as <br />many as four contiguous elements. Shaded elements represent Muddy Creek <br />Formation; all other elements represent shallow alluvial aquifer <br /> <br />\ <br /> <br />FIGURE lS.--Cross-seclional, finite-elemenl grid used for model that simulates distribulion of dissolved"soiids and <br />ground-water flow. Line of seclion and poinls X and Yare shown in figure 4. <br />