组保留的标签 余下为需要删除的标签
unset($oldtag[$key]);
}
}
}
if (!empty($oldtag)) {
$tagids = array();
foreach ($oldtag as $tagid => $tagname) {
$tagids[] = $tagid;
}
well_oldtag_delete($tagids, $tid);
}
$r = well_tag_process($tid, $fid, $create_tag, $tagarr);
return $r;
}
// 删除标签和绑定的主题
function well_oldtag_delete($tagids, $tid)
{
$pagesize = count($tagids);
$arrlist = well_tag_find_by_tagids($tagids, 1, $pagesize);
$delete_tagids = array(); // 删除
$tagids = array();
$n = 0;
foreach ($arrlist as $val) {
++$n;
if (1 == $val['count']) {
// 只有一个主题
$delete_tagids[] = $val['tagid'];
} else {
$tagids[] = $val['tagid'];
}
}
!empty($delete_tagids) and well_tag_delete($delete_tagids);
$arlist = well_tag_thread_find_by_tid($tid, 1, $n);
if ($arlist) {
$ids = array();
foreach ($arlist as $val) $ids[] = $val['id'];
well_tag_thread_delete($ids);
}
!empty($tagids) and well_tag_update($tagids, array('count-' => 1));
}
// 标签数据处理 $arr=新提交的数组 $tagarr=保留的旧标签
function well_tag_process($tid, $fid, $new_tags = array(), $tagarr = array())
{
if (empty($tid)) return '';
// 新标签处理入库
if ($new_tags) {
$threadarr = array();
$tagids = array();
$i = 0;
$size = 5;
$n = count($tagarr);
$n = $n > $size ? $size : $size - $n;
foreach ($new_tags as $name) {
++$i;
$name = trim($name);
$name = stripslashes($name);
$name = strip_tags($name);
$name = str_replace(array(' ', '#', "@", "$", "%", "^", '&', '·', '<', '>', ';', '`', '~', '!', '¥', '……', ';', '?', '?', '-', '—', '_', '=', '+', '.', '{', '}', '|', ':', ':', '、', '/', '。', '[', ']', '【', '】', '‘', ' ', ' ', ' ', ' ', ' '), '', $name);
$name = htmlspecialchars($name, ENT_QUOTES);
if ($name && $i <= $n) {
// 查询标签
$read = well_tag_read_name($name);
if ($read) {
// 存在 count+1
$tagids[] = $read['tagid'];
} else {
// 入库
$arr = array('name' => $name, 'count' => 1);
$tagid = well_tag_create($arr);
FALSE === $tagid and message(-1, lang('create_failed'));
$read = array('tagid' => $tagid, 'name' => $name);
}
$tag_thread = array('tagid' => $read['tagid'], 'tid' => $tid);
$threadarr[] = $tag_thread;
$tagarr[$read['tagid']] = $read['name'];
}
}
!empty($threadarr) and tag_thread_big_insert($threadarr);
!empty($tagids) and well_tag_update($tagids, array('count+' => 1));
}
$json = empty($tagarr) ? '' : xn_json_encode($tagarr);
return $json;
}
?> $v = implode(",", $v);
$temp[] = $v;
}
// 去掉重复的字符串,也就是重复的一维数组
$temp = array_unique($temp);
// 再将拆开的数组重新组装
$output = array();
foreach ($temp as $k => $v) {
if ($stkeep) $k = $starr[$k];
if ($ndformat) {
$temparr = explode(",", $v);
foreach ($temparr as $ndkey => $ndval) $output[$k][$ndarr[$ndkey]] = $ndval;
} else $output[$k] = explode(",", $v);
}
return $output;
}
// 合并二维数组 如重复 值以第一个数组值为准
function array2_merge($array1, $array2, $key = '')
{
if (empty($array1) || empty($array2)) return NULL;
$arr = array();
foreach ($array1 as $k => $v) {
isset($v[$key]) ? $arr[$v[$key]] = array_merge($v, $array2[$k]) : $arr[] = array_merge($v, $array2[$k]);
}
return $arr;
}
/*
* 对二维数组排序 两个数组必须有一个相同的键值
* $array1 需要排序数组
* $array2 按照该数组key排序
* */
function array2_sort_key($array1, $array2, $key = '')
{
if (empty($array1) || empty($array2)) return NULL;
$arr = array();
foreach ($array2 as $k => $v) {
if (isset($v[$key]) && $v[$key] == $array1[$v[$key]][$key]) {
$arr[$v[$key]] = $array1[$v[$key]];
} else {
$arr[] = $v;
}
}
return $arr;
}
?>
matlab液体湿润模拟,matlab用势流法模拟物体周围的液体运动编程频道|福州电脑网
matlab液体湿润模拟,matlab用势流法模拟物体周围的液体运动 编程之家 70 0
更新时间:2026-04-03 20:25:12 potential flow
http://simulations.narod.ru/
This is simulation of liquid motion around object using potential flow method.
The velocity field is represented as external velocity plus influence from object that considered as electric field in some electrostatic task. potential flow means Laplace operator of potential is 0 that is electrostatic task. The electrostatic task is solved as set of point charge that charges need to find from condition for velocity to be tangent on object surface. All charges is on object surface or inside.
It is possible to draw object. Spline interpolation used.
Run main.m
See how it works in video:
http://www.youtube/watch?v=VGngHjK_fm0
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本文标签: 液体 物体 湿润 matlab 用势流法
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