134 lines
3.8 KiB
C++
134 lines
3.8 KiB
C++
// MeidumBipoleUpHole.cpp: implementation of the CMeidumBipoleUpHole class.
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//
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//////////////////////////////////////////////////////////////////////
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#include "geomative.h"
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#include "MeidumBipoleUpHole.h"
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#ifdef _DEBUG
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#undef THIS_FILE
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static char THIS_FILE[]=__FILE__;
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#define new DEBUG_NEW
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#endif
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extern int g_iUILanguage;
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//////////////////////////////////////////////////////////////////////
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// Construction/Destruction
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//////////////////////////////////////////////////////////////////////
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CMediumBipoleUpHole::CMediumBipoleUpHole(int iAR): CMedium(iAR)
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{
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m_iSurfaceElecNum = 0;
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}
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CMediumBipoleUpHole::~CMediumBipoleUpHole()
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{
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}
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void CMediumBipoleUpHole::SetParamVal(const void* pVal)
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{
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m_iSurfaceElecNum = *((int*)pVal);
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}
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bool CMediumBipoleUpHole::GenerateSptRecElecVal(int iEAmount, int* pMaxLevel, int* pPtAmount, CPtrArray* pSptRecArray)
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{
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if (iEAmount < 4)
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{
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if (LANG_ZHCN == g_iUILanguage)
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AfxMessageBox(_T("双极电极的数目是误差的。"));
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else
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MessageBoxEx(NULL, _T("The number of electrode in BipoleUpHole is error."), STRING_MESSAGEBOXEX_TITLE, MB_OK, MAKELANGID(LANG_ENGLISH, SUBLANG_ENGLISH_US));
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return false;
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}
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if (m_iSurfaceElecNum < 2)
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{
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if (LANG_ZHCN == g_iUILanguage)
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AfxMessageBox(_T("地表电极数错误!"));
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else
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MessageBoxEx(NULL, _T("The number of surface electrode is error."), STRING_MESSAGEBOXEX_TITLE, MB_OK, MAKELANGID(LANG_ENGLISH, SUBLANG_ENGLISH_US));
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return false;
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}
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int iHoleElectNum = iEAmount - m_iSurfaceElecNum;
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if (iHoleElectNum < 2)
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{
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if (LANG_ZHCN == g_iUILanguage)
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AfxMessageBox(_T("井内电极数错误!"));
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else
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MessageBoxEx(NULL, _T("The number of hole electrode is error."), STRING_MESSAGEBOXEX_TITLE, MB_OK, MAKELANGID(LANG_ENGLISH, SUBLANG_ENGLISH_US));
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return false;
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}
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if (NULL == pSptRecArray)
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{
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if (LANG_ZHCN == g_iUILanguage)
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AfxMessageBox(_T("pSptRecArray不能为空!"));
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else
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MessageBoxEx(NULL, _T("pSptRecArray can't be NULL!"), STRING_MESSAGEBOXEX_TITLE, MB_OK, MAKELANGID(LANG_ENGLISH, SUBLANG_ENGLISH_US));
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return false;
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}
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pSptRecArray->RemoveAll();
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//装置的位置顺序为AMNB
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int iC1Pos = 0, iC2Pos = 1,iP1Pos = 0,iP2Pos = 2;
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int iTsn = 0, iElecSpace = 1;
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CSptRecord *pSptRec = NULL;
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//此时固定A的位置不动,B点向右移动,然后M从2开始往右移动,MN的间距始终为1
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while((1 + iElecSpace) <= m_iSurfaceElecNum)
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{
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iC2Pos = 1;
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iP2Pos = iC2Pos + iElecSpace;
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while(true)
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{
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if (iP2Pos > m_iSurfaceElecNum)
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{
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break;
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}
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iC1Pos = m_iSurfaceElecNum+1;
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iP1Pos = iC1Pos + iElecSpace;
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for(; iP1Pos <= iEAmount; iP1Pos+=2)
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{
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iC1Pos = iP1Pos - iElecSpace;
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pSptRec = new CSptRecord();
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pSptRec->m_iC1 = iC1Pos;
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pSptRec->m_iC2 = iC2Pos;
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pSptRec->m_iP1 = iP1Pos;
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pSptRec->m_iP2 = iP2Pos;
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pSptRec->m_fK = CalculateCESptKVal(iC1Pos, iC2Pos, iP1Pos, iP2Pos);
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//由于不需要画剖面图,所以这里暂时对m_iPtNum赋值为0
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pSptRec->m_iPtNum = 0;
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// pSptRec->m_iPtNum = iC1Pos;
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pSptRec->m_iLevel = GenSptRecLevel(iC1Pos, iC2Pos, iP1Pos, iP2Pos);
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pSptRec->m_colorREF = RGB(0, 255, 0);
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pSptRec->m_iN = 1;
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pSptRec->m_bIsSel = TRUE;
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pSptRec->m_iTsn = ++iTsn;
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pSptRecArray->Add(pSptRec);
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}
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iC2Pos += 2;
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iP2Pos += 2;
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}
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iElecSpace++;
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}
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*pPtAmount = pSptRecArray->GetSize();
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*pMaxLevel = 0;
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return true;
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}
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float CMediumBipoleUpHole::CalculateCESptKVal(float fA, float fB, float fX, float fY)
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{
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float fAM = fabs(fX - fA);
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float fAN = sqrt(pow(fA-m_iSurfaceElecNum, 2) + pow(m_iSurfaceElecNum-fY, 2));
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float fBM = sqrt(pow(fX-m_iSurfaceElecNum, 2) + pow(m_iSurfaceElecNum-fB, 2));
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float fBN = fabs(fY - fB);
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if (0 == fAM || 0 ==fAN || 0 == fBM || 0 == fBN)
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{
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return 0;
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// AfxMessageBox(_T("Calcualte K value error.value = "))
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}
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return fabs(2*VAL_PI/(1.0/fAM - 1.0/fAN - 1.0/fBM + 1.0/fBN));
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}
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