From 748c50fb44493f7b134213ea24d714c58625a243 Mon Sep 17 00:00:00 2001 From: xinxiao Date: Fri, 13 Mar 2026 13:11:09 +0800 Subject: [PATCH] =?UTF-8?q?=E9=99=8D=E4=BD=8E=E9=BB=98=E8=AE=A4=E7=BD=91?= =?UTF-8?q?=E6=A0=BC=E6=95=B0=E9=87=8F=EF=BC=8C=E5=87=8F=E8=BD=BB=E6=B5=8B?= =?UTF-8?q?=E8=AF=95=E8=B4=9F=E6=8B=85=E3=80=82?= MIME-Version: 1.0 Content-Type: text/plain; charset=UTF-8 Content-Transfer-Encoding: 8bit --- 算例1-组分流-不规则非均质计算域/main1.m | 4 ++-- 算例2-组分流-无效网格/main1.m | 4 ++-- 算例3-单重双重离散裂缝混合模型/main1.m | 4 ++-- 算例4-气水两相流-压力导数曲线/main1.m | 4 ++-- 算例5-油水两相流-注焖采/main1.m | 4 ++-- 算例6-油水两相流-直井注压裂水平井采/main1.m | 4 ++-- 算例7-油水两相流-不同裂缝制度不同/main1.m | 4 ++-- 7 files changed, 14 insertions(+), 14 deletions(-) diff --git a/算例1-组分流-不规则非均质计算域/main1.m b/算例1-组分流-不规则非均质计算域/main1.m index e6cd6e4..402a502 100644 --- a/算例1-组分流-不规则非均质计算域/main1.m +++ b/算例1-组分流-不规则非均质计算域/main1.m @@ -3,8 +3,8 @@ function [ r, Times, OutputRs, Wellpara, trun ] = main1() % 1-- classical EDFM modelflag = 1;% 此处固定为1即可 %% ==================================PART 2: 基质网格定义===================================== -dx=[10*ones(1,100) ];nx=size(dx,2); -dy=[10*ones(1,50) ];ny=size(dy,2); +dx=[50*ones(1,20) ];nx=size(dx,2); +dy=[50*ones(1,10) ];ny=size(dy,2); dz=[10*ones(1,1)];nz=size(dz,2); NTG= 1*ones(nx*ny*nz,1); r = GridProp_pre(dx, dy,dz,nx,ny,nz,NTG); diff --git a/算例2-组分流-无效网格/main1.m b/算例2-组分流-无效网格/main1.m index 1759026..ece2201 100644 --- a/算例2-组分流-无效网格/main1.m +++ b/算例2-组分流-无效网格/main1.m @@ -3,8 +3,8 @@ function [ r, Times, OutputRs, Wellpara, trun ] = main1() % 1-- classical EDFM modelflag = 1;% 此处固定为1即可 %% ==================================PART 2: 基质网格定义===================================== -dx=[10*ones(1,100) ];nx=size(dx,2); -dy=[10*ones(1,50) ];ny=size(dy,2); +dx=[50*ones(1,20) ];nx=size(dx,2); +dy=[50*ones(1,20) ];ny=size(dy,2); dz=[10*ones(1,3)];nz=size(dz,2); NTG= 1*ones(nx*ny*nz,1); r = GridProp_pre(dx,dy,dz,nx,ny,nz,NTG); diff --git a/算例3-单重双重离散裂缝混合模型/main1.m b/算例3-单重双重离散裂缝混合模型/main1.m index e6d8bc2..57a3601 100644 --- a/算例3-单重双重离散裂缝混合模型/main1.m +++ b/算例3-单重双重离散裂缝混合模型/main1.m @@ -3,8 +3,8 @@ function [ r, Times, OutputRs, Wellpara, trun ] = main1() % 1-- classical EDFM modelflag = 1;% 此处固定为1即可 %% ==================================PART 2: 基质网格定义===================================== -dx=[10*ones(1,100) ];nx=size(dx,2); -dy=[10*ones(1,50) ];ny=size(dy,2); +dx=[50*ones(1,20) ];nx=size(dx,2); +dy=[50*ones(1,10) ];ny=size(dy,2); dz=[10*ones(1,1)];nz=size(dz,2); NTG= 1*ones(nx*ny*nz,1); r = GridProp_pre(dx,dy,dz,nx,ny,nz,NTG); diff --git a/算例4-气水两相流-压力导数曲线/main1.m b/算例4-气水两相流-压力导数曲线/main1.m index ca69cef..4c2b4cb 100644 --- a/算例4-气水两相流-压力导数曲线/main1.m +++ b/算例4-气水两相流-压力导数曲线/main1.m @@ -3,8 +3,8 @@ function [ r, Times, OutputRs, Wellpara, trun ] = main1() % 1-- classical EDFM modelflag = 1;% 此处固定为1即可 %% ==================================PART 2: 基质网格定义===================================== -dx=[10*ones(1,100) ];nx=size(dx,2); -dy=[10*ones(1,50) ];ny=size(dy,2); +dx=[50*ones(1,20) ];nx=size(dx,2); +dy=[50*ones(1,10) ];ny=size(dy,2); dz=[10*ones(1,1)];nz=size(dz,2); NTG= 1*ones(nx*ny*nz,1); r = GridProp_pre(dx, dy,dz,nx,ny,nz,NTG); diff --git a/算例5-油水两相流-注焖采/main1.m b/算例5-油水两相流-注焖采/main1.m index 472478f..3e7d182 100644 --- a/算例5-油水两相流-注焖采/main1.m +++ b/算例5-油水两相流-注焖采/main1.m @@ -3,8 +3,8 @@ function [ r, Times, OutputRs, Wellpara, trun ] = main1() % 1-- classical EDFM modelflag = 1;% 此处固定为1即可 %% ==================================PART 2: 基质网格定义===================================== -dx=[10*ones(1,100) ];nx=size(dx,2); -dy=[10*ones(1,50) ];ny=size(dy,2); +dx=[50*ones(1,20) ];nx=size(dx,2); +dy=[50*ones(1,10) ];ny=size(dy,2); dz=[10*ones(1,1)];nz=size(dz,2); NTG= 1*ones(nx*ny*nz,1); r = GridProp_pre(dx,dy,dz,nx,ny,nz,NTG); diff --git a/算例6-油水两相流-直井注压裂水平井采/main1.m b/算例6-油水两相流-直井注压裂水平井采/main1.m index 99df1fa..f4b7afd 100644 --- a/算例6-油水两相流-直井注压裂水平井采/main1.m +++ b/算例6-油水两相流-直井注压裂水平井采/main1.m @@ -3,8 +3,8 @@ function [ r, Times, OutputRs, Wellpara, trun ] = main1() % 1-- classical EDFM modelflag = 1;% 此处固定为1即可 %% ==================================PART 2: 基质网格定义===================================== -dx=[10*ones(1,100) ];nx=size(dx,2); -dy=[10*ones(1,50) ];ny=size(dy,2); +dx=[50*ones(1,20) ];nx=size(dx,2); +dy=[50*ones(1,10) ];ny=size(dy,2); dz=[10*ones(1,2)];nz=size(dz,2); NTG= 1*ones(nx*ny*nz,1); r = GridProp_pre(dx, dy,dz,nx,ny,nz,NTG); diff --git a/算例7-油水两相流-不同裂缝制度不同/main1.m b/算例7-油水两相流-不同裂缝制度不同/main1.m index e13eafe..db459c3 100644 --- a/算例7-油水两相流-不同裂缝制度不同/main1.m +++ b/算例7-油水两相流-不同裂缝制度不同/main1.m @@ -3,8 +3,8 @@ function [ r, Times, OutputRs, Wellpara, trun ] = main1() % 1-- classical EDFM modelflag = 1;% 此处固定为1即可 %% ==================================PART 2: 基质网格定义===================================== -dx=[10*ones(1,100) ];nx=size(dx,2); -dy=[10*ones(1,50) ];ny=size(dy,2); +dx=[50*ones(1,20) ];nx=size(dx,2); +dy=[50*ones(1,10) ];ny=size(dy,2); dz=[10*ones(1,1)];nz=size(dz,2); NTG= 1*ones(nx*ny*nz,1); r = GridProp_pre(dx,dy,dz,nx,ny,nz,NTG);